PAPER SHEET CONVEYANCE DEVICE AND SEPARATION/COLLECTION DEVICE
20170260014 · 2017-09-14
Assignee
Inventors
- Eiji Ogura (Tokyo, JP)
- Hisashi Takahashi (Tokyo, JP)
- Tomiyasu Sasaki (Iwate, JP)
- Yoshiharu Abe (Iwate, JP)
- Jun Furudate (Iwate, JP)
Cpc classification
B65H7/20
PERFORMING OPERATIONS; TRANSPORTING
B65H2701/1912
PERFORMING OPERATIONS; TRANSPORTING
B65H29/52
PERFORMING OPERATIONS; TRANSPORTING
B65H31/10
PERFORMING OPERATIONS; TRANSPORTING
B65H7/16
PERFORMING OPERATIONS; TRANSPORTING
B65H43/00
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/33212
PERFORMING OPERATIONS; TRANSPORTING
B65H5/26
PERFORMING OPERATIONS; TRANSPORTING
B65H29/12
PERFORMING OPERATIONS; TRANSPORTING
B65H29/24
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/73
PERFORMING OPERATIONS; TRANSPORTING
G07F17/3297
PHYSICS
B65H2801/27
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/144
PERFORMING OPERATIONS; TRANSPORTING
G07F17/3216
PHYSICS
International classification
B65H29/52
PERFORMING OPERATIONS; TRANSPORTING
B65H7/16
PERFORMING OPERATIONS; TRANSPORTING
B65H29/12
PERFORMING OPERATIONS; TRANSPORTING
B65H5/26
PERFORMING OPERATIONS; TRANSPORTING
B65H43/00
PERFORMING OPERATIONS; TRANSPORTING
B65H29/24
PERFORMING OPERATIONS; TRANSPORTING
B65H5/02
PERFORMING OPERATIONS; TRANSPORTING
B65H31/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A paper sheet conveyance device for generating an airstream in a conveyance duct and for conveying a paper sheet inserted into the conveyance duct by being pushed from behind by a conveyance subsidiary body moving in the conveyance duct by receiving the airstream. The paper sheet conveyance device includes an air volume adjustment unit that adjusts a strength of the airstream according to a position of the conveyance subsidiary body moving in the conveyance path.
Claims
1. A paper sheet conveyance device comprising: a conveyance duct in which an airstream is generated; a conveyance subsidiary body that moves in the conveyance duct by receiving the airstream, and pushes a paper sheet inserted into the conveyance duct from behind; and an air volume adjustment unit that adjusts a strength of the airstream according to a position of the conveyance subsidiary body moving in the conveyance duct.
2. The paper sheet conveyance device of claim 1, wherein the air volume adjustment unit controls the airstream to be weaker when the conveyance subsidiary body pushes and moves the paper sheet from behind than when the conveyance subsidiary body moves toward the paper sheet in the conveyance duct.
3. The paper sheet conveyance device of claim 1, further comprising a separation/collection device for separating and collecting the conveyance subsidiary body and the paper sheet at an ending portion of the conveyance duct, wherein after the conveyance subsidiary body arrives at a position before the separation/collection device by a predetermined distance, the air volume adjustment unit controls the airstream to be weaker than before.
4. The paper sheet conveyance device of claim 3, wherein the separation/collection device comprises: a separation unit that passes the paper sheet pushed and conveyed by the conveyance subsidiary body, in a downstream direction, and that stops the conveyance subsidiary body by contacting the conveyance subsidiary body with the separation unit; a tubular path part that receives the paper sheet output from the separation unit; a circular conveyance belt bridged in an extending direction of the path part along an inner wall of the path part and that faces one surface of the paper sheet received from the separation unit; an actuating unit that rotatably actuates the conveyance belt and moves a first half of the conveyance belt in the downstream direction, the first half facing the surface of the paper sheet; and a sucking port that opens behind the first half of the conveyance belt and sucks air in the path part from outside, wherein the paper sheet received from the separation unit is conveyed while the paper sheet clings to the conveyance belt by sucking the air, and is discharged from an ending portion of the path part, an air blower for generating the airstream sucks the air fed into an upstream side of the conveyance duct, via the sucking port, wherein, after the conveyance subsidiary body arrives at the separation unit, the air volume adjustment unit controls the airstream to be weaker than before, and wherein the separation/collection device actuates the conveyance belt after a predetermined time elapses since the conveyance subsidiary body arrives at the separation unit.
5. The paper sheet conveyance device of claim 4, further comprising: a conveyance subsidiary body insertion device that sends out the conveyance subsidiary body that stands by in a standby unit into the conveyance duct, wherein the separation/collection device is arranged above the conveyance subsidiary body insertion device and transfers the conveyance subsidiary body collected by the separation unit to the standby unit of the conveyance subsidiary body insertion device by dropping the conveyance subsidiary body downwardly after the conveyance subsidiary body is withdrawn toward a side of the conveyance duct, and wherein the separation/collection device carries out an operation for transferring the conveyance subsidiary body collected by the separation unit, to the standby unit after the air volume adjustment unit stops the airstream.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
[0151] Hereinafter, embodiments of the present invention will be explained with reference to the accompanying drawings.
[0152]
[0153] The paper sheet conveyance device 10 comprises a conveyance duct 12 which functions as the conveyance path for the bill (paper sheet), and an airstream generation device (blower) 14 for generating the airstream which flows in the conveyance duct 12 in the extending direction thereof. In the paper sheet conveyance device 10, the conveyance subsidiary body 16 which can move in the conveyance duct 12 by receiving the airstream, is inserted into the conveyance duct 12 on the upstream side of the bill 6 to be conveyed, and the bill 6 is conveyed to the downstream side by being pushed from behind by the conveyance subsidiary body 16 in the conveyance duct 12.
[0154] In one or more embodiments, as shown in
[0155] The air blowing side (the air blowing path 14a) of the airstream generation device 14 is connected with the airstream inlet side (the blowing path connection port 46) of the conveyance subsidiary body insertion device 40. The airstream outlet side (the conveyance duct connection port 45) of the conveyance subsidiary body insertion device 40 is connected with the starting portion of the conveyance duct 12. The conveyance duct 12 comprises a first half path 12a extending from the airstream outlet side of the conveyance subsidiary body insertion device 40 to the other edge part of the gaming machine unit facility 2, a turning portion 12b which turns in a U-shaped form at the other edge part, and a second half path 12c extending along the first half path 12a above the first half path 12a so as to return to the bill housing stacker 5 after turning at the turning portion 12a. The ending portion of the second half path 12c is connected with the airstream inlet side (the conveyance duct connection port 72) of the separation/collection device 70. The air sucking side (the air sucking path 14d) of the airstream generation device 14 is connected with the airstream outlet side (the air sucking path connection portion 76) of the separation/collection device 70.
[0156] The airstream generation device 14 generates the airstream by rotating the fan with a motor. The airstream generated by the airstream generation device 14 flows in the starting portion of the conveyance duct 12 from the air blowing path 14a via the conveyance subsidiary body insertion device 40. After the airstream passes through the first half path 12a, the turning portion 12b and the second half path 12c, the airstream flows so as to be sucked to the sucking side of the airstream generation device 14 via the air sucking path 14b.
[0157] Each of the first half path 12a and the second half path 12c of the conveyance duct 12 is divided into a plurality of conveyance ducts, each of which has the predetermined length, for example, the length corresponding to the width of one set of the gaming machine 4 and the play ball lending device 3, which is provided in the gaming machine unit facility 2. By connecting the required number of the above conveyance ducts using the connection units 18, the path length can be adjusted according to the longitudinal length of the gaming machine unit facility 2. Further, in the construction process, the conveyance duct 12 is used by cutting it to the necessary length.
[0158] In the second half path 12c of the conveyance duct 12, the bill capturing devices 140 are provided on the positions corresponding to the play ball lending devices 3 as the paper sheet capturing device for capturing the bill 6 discharged from the rear surface of each game ball lending device 3 into the conveyance duct 12. The bill capturing devices 140 are provided so as to pair the bill capturing device 140 for capturing the bill 6 from the play ball lending device 3 arranged on the front face of the gaming machine unit facility 2 with the bill capturing device 140 for capturing the bill 6 from the play ball lending device 3 arranged on the rear face of the gaming machine unit facility 2. The bill capturing device 140 has the function for connecting the conveyance ducts 12 which constitute the second half path 12c, by being interpolated between the conveyance ducts.
[0159] In the gaming machine unit facility 2, the auxiliary frame (frame member) 160 for supporting the conveyance path 12 along the longitudinal direction of the gaming machine unit facility 2 is bridged. The auxiliary frame 160 is bridged along the second half path 12c below the second half path 12c (between the first half path 12a and the second half path 12c which are arranged one above the other). The edge portion of the auxiliary frame 160 in the longitudinal direction is fixed to the end plate of the gaming machine unit facility 2 by the attachment clasp 66 (See
[0160] In the paper sheet conveyance device 10, the bill 6 which is captured into the second half path 12c of the conveyance duct 12 from the bill capturing device 140 stays on the predetermined capturing finish position in a posture along the extending direction of the conveyance duct 12. In order to convey the bill 6 which is captured into the conveyance duct 12 and stays, to the bill housing stacker 5 and to collect the conveyed bill, the conveyance subsidiary body 16 is inserted into the conveyance duct 12 by the conveyance subsidiary body insertion device 40 of the bill separation/conveyance subsidiary body circulation device 11. The conveyance subsidiary body 16 inserted into the conveyance duct 12 moves in the first half path 12a toward the turning portion 12b by receiving the airstream generated by the airstream generation device 14. Further, after the conveyance subsidiary body 16 is turned at the turning portion 12b, the conveyance subsidiary body 16 moves in the second half path 12c toward the ending portion of the conveyance duct 12. At this time, as shown in
[0161] The bill separation/conveyance subsidiary body circulation device 11 and the bill capturing devices 140 are controlled and operated by the control unit 23 (See
[0162] The airstream generation device 14 may be controlled so as to operate only as needed (for example, since the bill capturing devices 140 detects the bill from the game ball lending device 3 until the bill is collected in the bill housing stacker 5).
[0163] As described above, because the conveyance subsidiary body 16 moves by receiving the airstream and the bill 6 is conveyed by being pushed from the rear edge side thereof by the conveyance subsidiary body 16, it is not required that the bill 6 itself obtains the propulsive force by receiving the airstream. Therefore, without taking the action, for example, for folding the bill 6 in order to receive the airstream, or the like, it is possible to convey the bill 6 by using the airstream. Further, because the conveyance subsidiary body 16 can effectively obtain the propulsive force from the airstream as compared with the bill 6, it is possible to effectively convey the bill 6.
[0164] Next, each shape of the conveyance duct 12 and the conveyance subsidiary body 16 will be explained.
[0165]
[0166] The cross section of the straight portion of the conveyance duct 12, which is perpendicular to the extending direction F, is formed so as to have the shape in which each middle portion of the right and left side walls of the vertically long rectangle is squarely expanded outwardly. In detail, the conveyance duct 12 comprises upper and lower wall portions 31, right and left side wall portions 32 and expanding portions 33 which are squarely expanded outwardly on each middle portion of the right and left side wall portions 32 in the up and down direction. The short side direction in the cross section having the substantially rectangle, which is perpendicular to the extending direction of the conveyance duct 12 (conveyance direction F), is referred to as X direction (width direction or right and left direction). The long side direction is referred to as Y direction (height direction or up and down direction). With respect to each of X direction and Y direction, the direction toward the center of the conveyance duct 12 is referred to as the inside direction and the direction toward the inner wall from the center is referred to as the outside direction.
[0167] Each expanding portion 33 is separated into two sections which are an upper section and a lower section by the separation wall 34 which is erected in the inside direction of the conveyance duct 12. Each separation wall 34 is formed by fixing the T-shaped member to the inner wall of the expanding portion 33.
[0168] In each side wall portion 32, a plurality of ribs 35 which project toward the inside direction of the conveyance duct 12 are formed along the conveyance direction. In one or more embodiments, the ribs 35 which project toward the inside of the conveyance duct 12 are formed along the conveyance direction at each boundary position between the side wall portion 32 and the expanding portion 33. The separation wall 34 and the rib 35 have the same height, and the edge portion of the separation wall 34 functions as the rib.
[0169] The side wall portions 32 are a pair of inner walls which face to the surface of the conveyed bill 6. The bill 6 has a rectangular shape. In the conveyance duct 12, the bill 6 is conveyed so as to set the long side thereof to the conveyance direction F. In other words, the bill 6 is conveyed as follows. The surface of the bill 6 faces to the side wall portion 32 of the conveyance duct 12. Further, one short side of the bill 6 is the front edge portion in the conveyance direction and the other short side is the rear edge portion.
[0170] The interval Dy between the upper and the lower wall portions 31 of the conveyance duct 12 is slightly longer than the short side of the bill 6. Further, the interval Dx between the right and the left side wall portions 32 (the part in which the ribs 35, the expanding portions 33 and the separation walls 34 are not formed (which is referred to as the reference plane part)) is set to about 21 mm. The expanding portions 33 which are provided on the right and the left side wall portions 32, are expanded about 6 mm from the side wall portions 32 (the reference plane part) in the outside direction, respectively. Each rib 35 and the edge portion of each separation wall 34 project about 2 mm from each side wall portion 32 (the reference plane part) in the inside direction. The height of the rib 35 may be optionally set.
[0171]
[0172]
[0173] As described above, because the conveyance subsidiary body 16 closes almost the whole of the cross section of the conveyance duct 12 by having the shape corresponding to the inner edge shape of the conveyance duct 12 (almost the same shape in which the slight clearance is provided), it is possible to move the conveyance subsidiary body 16 by effectively receiving the airstream. Further, the conveyance subsidiary body 16 has the function for preventing the airstream from flowing from the upstream side to the downstream side of the conveyance subsidiary body 16 and for avoiding the air turbulence on the downstream side.
[0174] The bill 6 tends to cling to the side wall portions 32 by receiving the airstream in the conveyance duct 12. That is, there is few possibility that the interval between one surface of the bill 6 and the side wall portion 32 which faces to the one surface is equal to the interval between the other surface and the side wall portion 32 which faces to the other surface. When one interval becomes narrower than the other, the flow velocity of the airstream becomes large in the narrower interval as compared with the wider interval. Therefore, the pressure in the narrower interval is lower than the pressure in the wider interval. By the pressure difference, the bill 6 clings to and is pressed to the side wall portion 32 on the narrower interval side. Then, the interval becomes narrower on the narrower interval side, and the phenomenon that the bill 6 clings to the side wall portion 32 is caused.
[0175] When the bill 6 strongly clings to side wall portion 32, it is difficult to convey the bill 6 by being pushed by the conveyance subsidiary body 16. However, as described above, the conveyance subsidiary body 16 has the function for blocking (weakening) the airstream which flows to the downstream side thereof. Therefore, the clinging force for the bill 6 is weakened and the smooth conveyance can be realized.
[0176] Two large-diameter portions 16c of the conveyance subsidiary body 16 are engaged with two expanding portions 33 each of which is separated by the separation wall 34 of the conveyance duct 12. In one or more embodiments, each expanding portion 33 is separated into two sections by the separation wall 34 and the expanding portions 33 are provided in the middle of the conveyance duct 12 in Y direction. Therefore, the conveyance subsidiary body 16 can be moved so as to maintain a stable posture. Further, because the posture of the conveyance subsidiary body 16 becomes stable, the large-diameter portions 16c of the conveyance subsidiary body 16 suitably contact with the rear edge of the bill 6 and can give the stable conveyance force to the bill 6. Further, it is hard to involve the bill 6 between the conveyance duct 12 and the conveyance subsidiary body 16.
[0177] In the conveyance subsidiary body 16, by providing the large-diameter portions 16c, the area for receiving the airstream is spread. Therefore, it is possible to effectively receive the force for moving the conveyance subsidiary body 16. Further, because the airstream is effectively received by providing the large-diameter portions 16c, the diameter of each head portion 16a can be small. By reducing the size of each head portion 16a, the interval between a pair of the side wall portions 32 which face to each other in the conveyance duct 12 (width (Dx)) can become narrower, and it is possible to prevent the bill 6 from being laid.
[0178] Further, by a plurality of ribs 35 provided on each side wall portion 32, it is possible to prevent the bill 6 from clinging to side wall portions 32. That is, by reducing the contact area between the bill 6 and the side wall portion 32, the friction force is reduced. It is possible to prevent the static electricity from being caused. Further, even in case that the bill 6 clings to the side wall portion 32, the bill 6 is supported by the edge portion of the rib 35. Therefore, around the rib 35, the space between the side wall portion 32 and the bill 6 is secured, and the clinging force is weakly suppressed. Further, because the bill 6 is supported by the separation wall 34, the bill 6 is prevented from being fit into the concave of the expanding portion 33.
[0179] A plurality of the ribs 35 and the edge portion of the separation wall 34, which project toward the inner side from each side wall portion 32, have the function for narrowing the substantial path width W for the bill 6 in the width direction (X direction) of the conveyance duct 12 as compared with the interval Dx between the reference plane parts. Thereby, it is difficult to lay the bill 6 in the conveyance duct 12, and the posture of the bill 6 is maintained along the Y direction. In particular, by providing a plurality of ribs 35, the bill 6 is suitably prevented from being laid. Further, the bill 6 is effectively prevented from clinging to the side wall portion 32. It is possible to widen the Dx by providing the ribs 35. Thereby, the sectional area of the conveyance duct 12 can be spread and the conveyance subsidiary body 16 can easily receive the airstream.
[0180] In case of the conveyance subsidiary body 16 according to one or more embodiments, because the diameter of the large-diameter portion 16c is the largest, as shown in
[0181]
[0182] Next, the bill separation/conveyance subsidiary body circulation device 11 will be explained.
[0183]
[0184] The bill housing stacker 5 has a vertically long rectangular parallelepiped shape. In the lower portion of the inside thereof, the airstream generation device 14 and the motor 14c thereof are arranged. In the upper portion thereof, the bill separation/conveyance subsidiary body circulation device 11 is attached. The air blowing path 14a of the airstream generation device 14 extends upwardly and is connected with the conveyance subsidiary body insertion device 40. The air sucking path 14b extends further upwardly and is connected with the separation/collection device 70.
[0185] In addition, in the bill housing stacker 5, the bill containing unit 21 for containing the bills 6, the bill conveyance unit 22 for conveying the bill 6 separated and collected by the separation/collection device 70 to the bill containing unit 21, the control unit 23 for controlling the operation of each type of equipment in the paper sheet conveyance device 10 and the gaming machine unit facility 2, the power supply unit 24 for supplying the power to each equipment of the gaming machine unit facility 2, and the like are included and arranged. The bill 6 discharged from the bill discharging port provided on the rear end of the separation/collection device 70, passes along the route shown by the arrow B of
[0186]
[0187] The conveyance subsidiary body 16 separated and collected by the separation/collection device 70 is dropped via the guide path 61 for connecting the expanding chamber 73 of the separation/collection device 70 with the standby unit 42 of the conveyance subsidiary body insertion device 40, to transfer the conveyance subsidiary body 16 from the separation/collection device 70 to the conveyance subsidiary body insertion device 40.
[0188] Firstly, the detail of the separation/collection device 70 will be explained.
[0189]
[0190] The separation unit 80 and the inner unit 90 are set in the outer frame unit 71 at the positional relation shown in
[0191] The separation unit 80 comprises a holding unit 81 for passing the bill 6 pushed and conveyed by the conveyance subsidiary body 16 in the downstream direction and for stopping the conveyance subsidiary body 16 by contacting therewith, and a supporting unit 82 extending from the holding unit 81. As shown in
[0192] In the inner surface of the semi-cylindrical wall portion of the holding unit 81, the guide rails 83 (See
[0193] Further, in the middle of the semi-cylindrical wall portion of the holding unit 81, the longitudinal rectangular passing port 84 for passing the bill 6 in the downstream direction is provided (See
[0194] The supporting unit 82 extends from the holding unit 81 toward the downstream side in the conveyance direction, and forms an arm portion having a C-shaped cross section and having a predetermined length. The supporting unit 82 is rotatably attached to the outer frame unit 71 so as to arrange the holding unit 81 on the upstream side (the conveyance duct connection port 72 side) by inserting the projection shaft 85 provided on the base end side of the supporting unit 82 into the shaft hole 78 (See
[0195] The outer frame unit 71 has the expanded portion (the expanding chamber 73) having a sector form in which the arc is arranged on the conveyance duct connection port 72 side, in a part of the tubular path having a rectangular cross section. The expanding chamber 73 is a space formed in order to rotate the separation unit 80 within the predetermined angular range around the projection shaft 85 inserted into the shaft hole 78.
[0196] Further, the circular dropping opening 74 is provided on the bottom portion of the expanding chamber 73. The separation unit 80 rotates around the projection shaft 85 between the collection position on which the holding unit 81 approaches to the ending portion of the conveyance duct 12 (See
[0197] In the side wall duct part 71C (See
[0198] In addition, on the upper portion of the upstream end portion of the outer frame unit 71, the conveyance subsidiary body detection sensor 63 for detecting the arrival of the conveyance subsidiary body 16 at the holding unit 81 of the separation unit 80, is provided (See
[0199] The inner unit 90 forms the tubular shape having a rectangular cross section. As shown in
[0200] As shown in
[0201] In the first side wall 94, as shown in
[0202] The inner space of the inner unit 90 is partitioned into two spaces by the partition wall 95. Between the partition wall 95 and the wall face (the opposing wall 92a) which is opposite to the partition wall 95 in the inner unit cover portion 92, the path part 96 which is a path for receiving the bill 6 output from the passing port 84 of the separation unit 80 is formed (See
[0203] On the other hand, the space between the partition wall 95 and the first wall 94 is an air path 109 for sucking the air (See
[0204] In the partition wall 95, three elongated openings 95a are provided along the longitudinal direction of the partition wall 95 in the downstream range from the substantially half point of the area between the upstream end of the partition wall 95 and the position just before the basic part 93 arranged on the downstream side, at the predetermined interval in the height direction of the partition wall 95 (See
[0205] Further, in the basic part 93, the downstream pulley 97a is provided on the position corresponding to each opening 95a near the downstream side of the downstream end of the partition wall 95 (See
[0206] Between each upstream pulley 97b and each downstream pulley 97a provided on the position corresponding to this upstream pulley 97b, the endless conveyance belt 98 is bridged so as to be wound by using the above pulleys as the both ends. Three conveyance belts 98 are bridged in parallel apart from each other in the up and down direction. The interval between two conveyance belts 98 arranged on the upper and the lower sides among the three conveyance belts 98 is slightly shorter than the length of the short side of the bill 6 (the side along the direction perpendicular to the conveyance direction). Each conveyance belt 98 is bridged so as to pass the first half of the conveyance belt 98 on the path part 96 side of the partition wall 95 and to pass the second half thereof on the first wall 94 side of the partition wall 95. Each conveyance belt 98 is actuated so as to move the first half thereof from the upstream side of the path part 96 to the downstream side thereof.
[0207] As shown in
[0208] As shown in
[0209] The downstream end of the movable frame 99 is biased by the spring 108 so as to push the discharge rollers 101 toward the opposing discharge rollers 102. By shaking the movable frame 97, the shaft interval between the rotation shaft 103 for supporting the opposing discharge rollers 102 and the downstream rotation shaft 100a for supporting the discharge rollers 101 can be changed.
[0210] The rotation shaft 103 on which the opposing discharge rollers 102 are provided, projects downwardly from the basic part 93, and has the transmission gear 104 on the lower end thereof. Further, the downstream rotation shaft 100a also projects downwardly, and has the transmission gear 105 on the lower end thereof. The transmission gear 105 is engaged with the transmission gear 104. The power generated by the separation conveyance actuating unit 64 (See
[0211] Further, the rotation shaft 103 projects upwardly from the basic part 93 of the inner unit 90. On the upper end thereof, the handle 106 for manually rotating the rotation shaft 103 is attached. In case that the bill 6 is jammed in the inner unit 90, by manually rotating the handle 106, the jammed bill 6 is discharged from the rear end of the inner unit 90. In the rear end of the inner unit 90, the bill discharge path 107 for bending the course of the discharged bill 6 laterally, is provided (See
[0212] On the face of the partition wall 95, which faces to the path part 96, the ribs 110 projecting into the path part 96 are provided (See
[0213] Further, on the opposing wall 92a of the inner unit cover portion 92, the ribs (the opposing ribs 112) extending in the extending direction of the path part 96 so as to oppose to the ribs 110 provided on the partition wall 95, are provided (See
[0214] As shown in
[0215] Next, the operation of the separation/collection device 70 will be explained.
[0216] When the airstream generation device 14 generates the airstream, the airstream flows into the separation/collection device 70 from the conveyance duct connection port 72 through the conveyance duct 12. Further, the airstream flows into the path part 96 of the inner unit 90 through the passing port 84 of the separation unit 80. The airstream generation device 14 sucks the air from the sucking port 75 of the side wall duct part 71C of the outer frame unit 71 through the air sucking path 14b. By sucking the air, the air existing in the path part 96 is discharged outside through the opening 95 provided on the partition wall 95, the air path 109, the opening 94a provided in the first side wall 94, the sucking port 75 (the side wall duct part 71C) and the air sucking path 14b.
[0217]
[0218] In this situation, when the conveyance subsidiary body 16 which pushes the bill 6 from behind moves near the ending portion of the conveyance duct 12, the front edge of the bill 6 enters the separation unit 80 and moves in the path part 96 provided on the downstream side through the passing port 84 (
[0219] The bill 6 which moves in the path part 96 contacts with the ribs 110, and moves along the ribs 110. Therefore, even when the air in the path part 96 is sucked from the sucking port 75, the front edge of the bill 6 does not cling to the partition wall 95.
[0220] The bill 6 which moves in the path part 96, moves along the mound form of each rib 110 toward the opposing ribs 112 (See
[0221] Then, when the front edge of the bill 6 reaches the area in which the conveyance belts 98 are provided, the front edge portion of the bill 6 clings to the conveyance belts 98 by sucking the air from the opening 95a (See
[0222] Then, the bill 6 is conveyed by the conveyance belts 98 in the situation in which the bill 6 clings to the conveyance belts 98 (See
[0223] On the other hand, conventionally, because, as shown in
[0224] When the conveyance subsidiary body 16 arrives at the holding unit 81 of the separation unit 80, the bill 6 is crushed and the jamming of the bill 6 is caused (See
[0225] In the separation/collection device 70 according to one or more embodiments, because the ribs 110 and the opposing ribs 112 are provided on the upstream inner walls of the path part 96, the bill 6 is prevented from clinging to the wall surface. Further, because the bill 6 is smoothly moved to the downstream side, the above jamming is avoided.
[0226] As shown in
[0227] The conveyance speed of the conveyance belts 120 of the bill conveyance unit 22 is faster than the discharge speed at which the bill 6 is discharged by the discharge rollers 101 and the opposing discharge rollers 102 in the inner unit 90 of the separation/collection device 70. Therefore, in the situation in which the front edge of the bill 6 is sandwiched by a pair of the conveyance belts 120 and the rear edge of the bill 6 is sandwiched by the discharge rollers 101 and the opposing discharge rollers 102, the bill 6 is forcedly drawn from the discharge rollers 101 and the opposing discharge rollers 102. At this time, in case that the discharge rollers 101 and the opposing discharge rollers 102 sandwich the bill 6 too strongly, there is some possibility that the bill 6 is jammed.
[0228] Therefore, the discharge rollers 101 and the opposing discharge rollers 102 are configured so as to be apart from each other when the pressure having not less than the certain strength is applied to the bill 6. That is, as shown in
[0229] In the separation/collection device 70, after the bill is discharged from the rear end of the inner unit 90, the separation unit 80 rotates to the discharge position by being actuated with the first actuating unit 62. When the separation unit 80 is moved to the discharge position, the held conveyance subsidiary body 16 is dropped from the discharging opening 86 of the bottom portion of the holding unit 81 via the dropping opening 74 of the outer frame unit 71 and the guide path 61, and is collected by being received in the conveyance subsidiary body insertion device 40.
[0230] Because the inner unit 90 is detachably attached to the outer frame unit 71, in case that the bill 6 is jammed in the separation/collection device 70, the working can be carried out by extracting the inner unit 90 from the outer frame unit 71. In the situation in which the inner unit 90 is extracted from the outer frame unit 71, there is some possibility that the bill 6 is conveyed via the conveyance duct 12 in business. However, because the opening is partitioned by providing the bill sucking prevention walls 77 on the sucking port 75 of the outer frame unit 71, even though the bill 6 is conveyed to the sucking port 75, the bill 6 is not sucked out from the sucking port 75.
[0231] Next, the conveyance subsidiary body insertion device 40 will be explained.
[0232]
[0233] The sending path 41 is a straight path having the rectangular cross section. One end thereof is connected with the conveyance duct 12 via the conveyance duct connection port 45. The other end thereof is the blowing path connection port 46 connected with the air blowing path 14a of the airstream generation device 14. The sending path 41 is configured by the upper sending path 41A for forming the upper surface of the path and the lower sending path 41B for forming the side walls and the bottom surface of the path. In the conveyance subsidiary body insertion device 40, the conveyance duct connection port 45 side is referred to as the downstream side and the blowing path connection port 46 side is referred to as the upstream side.
[0234] The movable containing unit 43 comprises a holding portion 43a which has a bottom portion and which is formed in the semi-cylindrical shape having the U-shaped cross section, extending in the up and down direction and having an open upper portion, and a support plate 43b having the horizontal cross section which is bent in a V-shape (See
[0235] The shaft projection 43d is inserted into the shaft hole 47 provided in the upper sending path 41A. The shaft arm portion 43e is inserted into the hole provided in the bottom portion of the lower sending path 41B, and is connected with the second actuating unit 44 provided below the sending path 41. The second actuating unit 44 is a solenoid actuator. By extruding and retracting the actuator, the movable containing unit 43 is rotated around the shaft projection 43d and the shaft arm portion 43e. The movable containing unit 43 rotates between the standby position (the position shown in
[0236] The arc portion of the U-shaped holding portion 43a is curved at a radius which is slightly larger than that of the large-diameter portion 16c of the conveyance subsidiary body 16. On the inner wall of the holding portion 43a, the guide portions 43f projecting toward the inside direction are provided in order to hold the conveyance subsidiary body 16 in a standing posture.
[0237] Further, near the middle of the curved part of the U-shaped holding portion 43a, an air blowing hole 43g for blowing the air is provided. Further, also in the long side portion of the V-shaped support plate 43b, an air blowing hole 43h for blowing the air is provided.
[0238] The lower end of the guide path 61 is connected with the ceiling surface of the standby unit 42. When the movable containing unit 43 is positioned on the standby position shown in
[0239] In the standby unit 42, the conveyance subsidiary body sensor 48 for detecting the conveyance subsidiary body 16 which stands by on the standby position, is provided. In one or more embodiments, as the conveyance subsidiary body sensor 48, a transmission-type of optical sensor which is arranged so as to block the light by the conveyance subsidiary body 16 which stands by on the standby position and not to block the light in case that the conveyance subsidiary body 16 does not exist on the standby position, is used.
[0240] On the side wall of the standby unit 42, the opening for connecting with the duct 50 is provided. The duct 50 is connected with the standby unit 42 and the expanding chamber 73 of the separation/collection device 70. The airstream flows from the standby unit 42 to the expanding chamber 73 of the separation/collection device 70 via the duct 50.
[0241] As shown in
[0242] As shown in
[0243] As described above, in the conveyance subsidiary body insertion device 40, because the conveyance subsidiary body 16 is moved from the standby position to the sending position by rotating the movable containing unit 43 in the situation in which the conveyance subsidiary body 16 is held by the holding portion 43a of the movable containing unit 43, it is possible to send out the conveyance subsidiary body 16 into the sending path 41 in the situation in which the stable posture is maintained.
[0244] On the right and the left inner walls of the upstream part of the sending path 41 from the holding portion 43a which is positioned on the sending position, the guide rails 49 projecting toward the inside direction are provided on the extended lines of the ribs 35 which are provided on the edge parts and the like of the expanding portion 33 of the conveyance duct 12 connected with the conveyance duct connection port 45. In the guide rails 49, the upper guide rails 49A, the middle guide rails 49B and the lower guide rails 49C are provided on the positions corresponding to the neck portions 16b and the narrow portion 16d so as to sandwich each large-diameter portion 16c of the conveyance subsidiary body 16 vertically (See
[0245] The middle guide rails 49B and the lower guide rails 49C extend from the downstream end of the sending path 41 to the position just before the movable containing unit 43 (the holding portion 43a) which is positioned on the sending position. The upper guide rails 49A are shortened on the upstream side as compared with the middle guide rails 49B and the lower guide rails 49C (See
[0246] As shown in
[0247] Because the posture correction mechanism 51 is the circular rotation members which can freely rotate, even though the posture correction mechanism 51 contacts with the conveyance subsidiary body 16 in a changed posture, the posture of the conveyance subsidiary body 16 can be smoothly corrected without sticking the conveyance subsidiary body 16. Further, because the lowest point of the posture correction mechanism 51 is arranged under the lower surface of each upper guide rail 49A, after the conveyance subsidiary body 16 passes through the posture correction mechanism 51, the conveyance subsidiary body 16 can be moved without being stuck in the upstream end of one upper guide rail 49A while the position of the conveyance subsidiary body 16 is regulated by being smoothly inserted between the guide rails 49A to 49C.
[0248] Next, the operation of the bill separation/conveyance subsidiary body circulation device 11 will be explained.
[0249] The bill separation/conveyance subsidiary body circulation device 11 is controlled and operated by the control unit 23 which comprises the CPU, the ROM, the RAM and the like, as the main unit. When the control unit 23 recognizes that the bill 6 is captured in the conveyance duct 12 by any one of the bill capturing devices 140 provided so as to correspond to the game ball lending devices 3, in accordance with the detection signal of the sensor provided in each bill capturing device 140, the control unit 23 confirms whether the conveyance subsidiary body 16 stands by in the standby unit 42 of the conveyance subsidiary body insertion device 40 by using the detection signal of the conveyance subsidiary body sensor 48. Further, the conveyance belts 98 of the separation/collection device 70 are actuated by actuating the separation conveyance actuating unit 64.
[0250] When it is confirmed that the conveyance subsidiary body 16 stands by, the holding portion 43a of the movable containing unit 43 is moved to the sending position by actuating the second actuating unit 44. Then, the conveyance subsidiary body 16 held by the holding portion 43a of the movable containing unit 43 is sent out into the conveyance duct 12 through the sending path 41 by riding on the airstream flowing from the airstream generation device 14.
[0251] After the predetermined time elapses, the control unit 23 moves the holding portion 43a of the movable containing unit 43 to the standby position in the standby unit 42 by controlling the second actuating unit 44. The conveyance subsidiary body 16 sent from the conveyance subsidiary body insertion device 40 moves in the conveyance duct 12 by the airstream. Then, the conveyance subsidiary body 16 contacts with the rear edge of the bill 6 captured in the conveyance duct 12 by the bill capturing device 140, and conveys the bill 6 by being pushed from behind.
[0252] The control unit 23 monitors whether the conveyance subsidiary body 16 arrives at the holding unit 81 of the separation unit 80 of the separation/collection device 70 and is stopped, in accordance with the detection signal of the conveyance subsidiary body detection sensor 63. When the above arrival and the above stop are confirmed, the control unit 23 activates the first activating unit 62 to move the holding unit 81 of the separation unit 80 to the discharge position.
[0253] The conveyance subsidiary body 16 is dropped downwardly from the discharging opening 86 of the holding unit 81 moved to the discharge position, via the dropping opening 74 of the outer frame unit 71 and the guide path 61, and is moved into the standby unit 42. Then, the conveyance subsidiary body 16 is received and held by the holding portion 43a of the movable containing unit 43. When the control unit 23 confirms that the conveyance subsidiary body 16 stands by on the standby position of the standby unit 42 in accordance with the output signal of the conveyance subsidiary body sensor 48, the control unit 23 moves the holding unit 81 of the separation unit 80 to the collection position by actuating the first actuating unit 62. By carrying out the above operation, one operation sequence for circulatedly using the conveyance subsidiary body 16 in the bill separation/conveyance subsidiary body circulation device 11 is finished.
[0254] The bill 6 separated by the separation/collection device 70 is contained in the bill containing unit 21 of the bill housing stacker 5 as described above.
[0255] As described above, according to the bill separation/conveyance subsidiary body circulation device 11, one conveyance subsidiary body 16 can be circulatedly used in the paper sheet conveyance device 10. Further, because the operation for circulatedly using the conveyance subsidiary body 16 and separating and collecting the bill 6 is automatically controlled as described above, the work burden is suppressed.
[0256] Next, the bill capturing device 140 will be explained.
[0257]
[0258] As shown in
[0259] As shown in
[0260] In the side wall of the path part 141, the insertion port 144 for capturing the bill 6 in the path part 141 is provided as the outlet port of the standby path 145. In the path part 141, the path frame 147 for forming the wall surface on the side opposite to the wall surface on which the insertion port 144 is provided, is detachably attached by the nighlatches 148, and the like. The path frame 147 can be detached in order to deal with the jamming of the bill 6 in the path part 141 of the bill capturing device 140, and the like.
[0261] Further, in order to deal with the case in which the bill 6 is jammed in the standby path 145 of the bill capturing device 140, as shown in
[0262] A part of the lower portion of the bill capturing device 140 projects downwardly. The part is a bottom part 150 to be fit into the concave part 174 of the pedestal unit 170 which will be explained.
[0263] Next, the support of the conveyance duct 12 using the auxiliary frame 160 will be explained.
[0264]
[0265] One auxiliary frame 160 is formed so as to have the desired length by joining a plurality of the auxiliary frames 160 each of which has a suitable length, with one or more connection members 164. The connection member 164 is a high rigid plate having the width which is slightly narrower than the width of the flat portion 161 of the auxiliary frame 160. On the middle portion of the connection member 164 in the longitudinal direction, the stop portion 164a is provided so as to be slightly widened. In the auxiliary frame 160, the project portions 163 which project toward the middle of the auxiliary frame 160 in the width direction from the groove portions 162 which are provided on the both ends of the auxiliary frame 160 in the width direction, are provided so as to form the space 163a for inserting the connection member 164 along the back surface of the flat portion 161.
[0266] One end of the connection member 164 is pressed into the space 163a of the end portion of one auxiliary frame 160 to be joined, until the approximate half of the stop portion 164a enters the space 163a. Next, the other end of the connection member 164 is pressed into the space 163a of the end portion of the other auxiliary frame 160 to be joined, until the other half of the stop portion 164a enters the space 163a. Then, by pressing the connection member 164 into the space 163a until two auxiliary frames 160 are tightly joined, two auxiliary frames 160 are connected. By pressing the stop portion 164a which is slightly widened into the space 163a, the connection member 164 cannot be easily extracted from the space 163a of the auxiliary frame 160. As a result, the auxiliary frames 160 are tightly connected.
[0267] In the gaming machine unit facility 2, the auxiliary frame 160 joined as described above, is bridged along the longitudinal direction of the gaming machine unit facility 2. Then, as shown in
[0268] On the upper surface side of the auxiliary frame 160, the pedestal unit 170 which is movable so as to freely slide along the longitudinal direction of the auxiliary frame 160 is attached. The pedestal unit 170 supports the bill capturing device 140 from the lower side by mounting the lower portion of the bill capturing device 140.
[0269]
[0270] On the upper surface side of the pedestal unit 170, the concave part 174 into which the lower portion of the bill capturing device 140 (the bottom part 150) is fit to support the bill capturing device 140 from the lower side, is provided. The concave part 174 has walls 174a which stands from the upper surface of the pedestal unit 170 so as to surround the bottom part 150 of the bill capturing device 140. On the lower surface of the bill capturing device 140, the connector 153 (See
[0271] The pedestal unit 170 strides across the upper surface of the auxiliary frame 160 and is attached by engaging the pawl portions 172 with the lower ends of the groove portions 162 of the auxiliary frame 160. Therefore, while the pedestal unit 170 is movable so as to freely slide along the longitudinal direction of the auxiliary frame 160, the pedestal unit 170 cannot be easily extracted from the auxiliary frame 160.
[0272]
[0273] The hook member 180 comprises a hung part 181 for being hung in the groove portion 162 of the auxiliary frame 160 and an arm part 182 extending downwardly from the hung part 181. The lower portion of the arm part 182 is bent and forms a holding portion 182a in the upward U-shape. As shown in
[0274]
[0275] On the upper arm part 192, the bill capturing device holding clasp 194 for holding the upper portion of the bill capturing device 140 is attached so as to slide in the horizontal direction along the upper arm part 192, and the position of the bill capturing device holding clasp 194 can be adjusted. Further, on the lower arm part 193, the auxiliary frame holding clasp 195 for holding the auxiliary frame 160 is attached so as to slide in the horizontal direction along the lower arm part 193, and the position of the auxiliary frame holding clasp 195 can be adjusted.
[0276]
[0277] The attachment clasp 190 is attached to the upper portion of the rear surface of the game ball lending device 3 so as to arrange the base part 191 vertically along the rear surface of the game ball lending device 3 and to project the upper arm part 192 and the lower arm part 193 from the rear surface of the game ball lending device 3 toward the direction in which the rear surface of the game ball lending device 3 faces (which is the width direction of the gaming machine unit facility 2 and the width direction of the auxiliary frame 160). The auxiliary frame 160 is held by the auxiliary frame holding clasp 195 provided on the lower portion of the attachment clasp 190. Even though the installation positions of the game ball lending devices 3 in the width direction of the gaming machine unit facility 2 are irregular, the auxiliary frame 160 can be straightly provided in the longitudinal direction of the gaming machine unit facility 2 by adjusting the attachment position of the auxiliary frame holding clasp 195 with respect to the lower arm part 193.
[0278] As described above, the pedestal unit 170 is attached to the upper surface side of the auxiliary frame 160 which is straightly provided in the longitudinal direction of the gaming machine unit facility 2, and the bill capturing device 140 is mounted on the pedestal unit 170. In detail, the bill capturing device 140 is mounted on the pedestal unit 170 so as to fit the bottom part 150 of the bill capturing device 140 into the concave part 174 of the pedestal unit 170. Next, by sliding and moving the bill capturing device 140 with the pedestal unit 170, the position of the bill capturing device 140 is adjusted so as to connect the bill insertion port of the bill capturing device 140 with the bill discharging port of the rear surface of the game ball lending device 3. Then, in the situation in which the position of the bill capturing device 140 is adjusted, the bill capturing device 140 is fixed by the bill capturing device holding clasp 194 of the upper arm part 192 of the attachment clasp 190. At this time, by sliding and moving the bill capturing device holding clasp 194 with respect to the upper arm part 192, the position of the bill capturing device holding clasp 194 is adjusted with respect to the bill capturing device 140, and the bill capturing device 140 is fixed.
[0279] Because the pedestal unit 170 is slid and moved along the auxiliary frame 160 as described above, it is possible to easily adjust the position of the bill capturing device 140 so as to connect the bill insertion port of the bill capturing device 140 with the bill discharging port of the rear surface of the game ball lending device 3. Further, because the bill capturing device 140 is attached to the bill capturing device holding clasp 194 of the upper arm part 192 of the attachment clasp 190 in the situation in which the bill capturing device 140 is mounted on the pedestal unit 170, it is possible to easily attach the bill capturing device 140 which is comparatively heavy.
[0280] Further, the upper portion of the bill capturing device 140 is held by the bill capturing device holding clasp 194 of the upper arm part 192 of the attachment clasp 190, and the lower portion thereof is held by the pedestal unit 170. Thereby, the bill capturing device 140 is firmly fixed. In particular, because the lower portion of the bill capturing device 140 is held by the pedestal unit 170 attached to the high rigid auxiliary frame 160 which is straightly provided in the gaming machine unit facility 2, the attachment position of the bill capturing device 140 is prevented from being shifted in the width direction of the auxiliary frame 60. As a result, it is possible to set and maintain the second half path 12c of the conveyance duct 12 straightly in the longitudinal direction of the gaming machine unit facility 2.
[0281] More specifically, in case of the gaming machine unit facility in which the game machines are attached on both sides, the bill capturing devices 140 are provided so as to correspond to the game ball lending devices 3 attached to one side of the gaming machine unit facility 2 and the game ball lending devices 3 attached to the other side thereof, respectively. For the convenience of the construction, as shown in
[0282] In this case, when the bill capturing device 140 is not held by the pedestal unit 170 from the lower side, the bill capturing device 140B is pushed in the direction of the arrow K shown in the drawing (the width direction of the gaming machine unit facility 2) from the rear surface of the game ball lending device 3. Therefore, it is difficult to hold the conveyance path straightly in the conveyance direction F. However, in one or more embodiments, because the lower portion of the bill capturing device 140B is held by the pedestal unit 170 supported on the high rigid auxiliary frame 160, the bill capturing device 140B is prevented from being shifted in the direction of the arrow K. It is possible to hold the conveyance path so as to straightly extend along the auxiliary frame 160.
[0283] On the auxiliary frame 160 attached to the auxiliary frame holding clasp 195 of the lower arm part 193 of the attachment clasp 190, the above-described hook member 180 is attached. By the hook member 180, the first half path 12a of the conveyance duct 12 is held under the auxiliary frame 160. As described above, because the auxiliary frame 160 has the function for holding the bill capturing device 140 on the upper surface side thereof and the function for holding the first half path 12a of the conveyance duct 12 under the lower side thereof, it is possible to effectively support the conveyance path. Further, because the hook member 180 can slide and move along the auxiliary frame 160, the attachment position of the hook member 180 can be freely selected. Thereby, the hook member 180 can be provided at the position on which the hook member 180 is easily attached.
[0284] Further, as shown in
[0285] Next, the air volume adjustment of the airstream generation device 14 will be explained.
[0286] The control unit 23 of the paper sheet conveyance device 10 adjusts the strength of the airstream generated by the airstream generation device 14 (hereinafter, referred to as the air volume of the airstream generation device 14) according to the position of the conveyance subsidiary body 16 which moves in the conveyance duct 12. Thereby, the conveyance subsidiary body 16 is prevented from being damaged. Further, more stable movement of the conveyance subsidiary body 16 and more stable conveyance of the bill 6 can be provided.
[0287]
[0288] In this case, the air volume of the airstream generation device 14 is controlled at five levels: OFF, Level 1, Level 2, Level 3 and Level 4. The air volume satisfies the following relation: OFF<Level 1<Level 2<Level 3<Level 4. The level OFF indicates the situation in which the airstream generation device 14 is stopped.
[0289] As shown in
[0290] The control unit 23 controls the air volume of the airstream generation device 14 in accordance with the following sequence.
[0291] (1) When the bill 6 does not stand by in the bill capturing device 140, the airstream generation device 14 is stopped (the Idle period of
[0292] (2) When the bill 6 stands by in any one of the bill capturing devices 140, the control unit 23 instructs the bill capturing devices 140 to send the bill 6 into the conveyance duct 12. The control unit 23 starts the operation of the airstream generation device 14 and controls the air volume to Level 1 (the Carry 1 period of
[0293] (3) The conveyance subsidiary body insertion device 40 moves the conveyance subsidiary body 16 which stands by in the standby unit 42, to the sending path 41, and executes the conveyance subsidiary body releasing process for sending out the conveyance subsidiary body 16 into the conveyance duct 12 by using the airstream. During the conveyance subsidiary body releasing process, the control unit 23 controls the air volume to Level 1 similar to the above (the Carry 2 period of
[0294] (4) While the conveyance subsidiary body 16 is sent out into the conveyance duct 12 and passes through the first half path 12a and the turning portion 12b of the conveyance duct 12, the control 23 controls the air volume to Level 1 similar to the above (the period from T1 to T2 of
[0295] Because the period from T1 to T2 (hereinafter, referred to as the post-release control period) is varied according to the length of the gaming machine unit facility 2, that is, the length of the first half path 12a of the conveyance duct 12, the post-release control period is set for each gaming machine unit facility 2. The control unit 23 maintains the air volume at Level 1 until the set post-release control period elapses since the conveyance subsidiary body 16 is sent out into the conveyance duct 12 by the conveyance subsidiary body insertion device 40.
[0296] In case that the conveyance subsidiary body 16 receives the shock by colliding with the inner wall or the like of the turning portion 12b in the situation in which the airstream is strong (for example, Level 4), there is some possibility that the conveyance subsidiary body 16 is damaged. Therefore, by controlling the air volume to Level 1 (weak) at least until the conveyance subsidiary body 16 passes through the turning portion 12b, the shock which is caused in the turning portion 12b is relieved and the conveyance subsidiary body 16 is prevented from being damaged. Further, until the conveyance subsidiary body 16 passes through the turning portion 12b, the conveyance subsidiary body 16 moves alone. Because the conveyance subsidiary body 16 does not push the bill 6, the conveyance subsidiary body 16 smoothly moves in the conveyance duct 12 even though the airstream becomes weak by controlling the air volume to Level 1. The jamming is not caused in the conveyance duct 12.
[0297] (5) After the conveyance subsidiary body 16 passes through the turning portion 12b, the control unit 23 controls the air volume to Level 4 until the conveyance subsidiary body 16 arrives at the position before the separation/collection device 70 provided at the ending portion of the second half path 12c by the predetermined distance (the period from T2 to T3 of
[0298] (6) When the conveyance subsidiary body 16 arrives at the position before the separation/collection device 70 by the predetermined distance (T3 of
[0299] In case that the speed of the conveyance subsidiary body 16 is not reduced, the shock caused when the conveyance subsidiary body 16 collides with the holding unit 81 is large and there is some possibility that the conveyance subsidiary body 16 is damaged. Further, the bill 6 is pushed and folded by the conveyance subsidiary body 16. As a result, the bill 6 is jammed in the separation/collection device 70. Thus, the speed of the conveyance subsidiary body 16 which arrives at the holding unit 81 of the separation/collection device 70 is reduced. Even though the airstream generation device 14 is adjusted, the air volume and the speed of the conveyance subsidiary body 16 cannot be quickly changed. Therefore, the air volume is reduced when the conveyance subsidiary body 16 arrives at the position before the holding unit 81 of the separation/collection device 70 by the predetermined distance.
[0300] The time which elapses since the air volume is reduced from Level 4 to Level 3 until the conveyance subsidiary body 16 arrives at the holding unit 81 of the separation/collection device 70, is referred to as the pre-containing control period. The pre-containing control period is constant regardless of the length of the gaming machine unit facility 2 (the length of the second half path 12c).
[0301] Because the necessary time (the time from T1 to T3 of
[0302] (7) Then, when the conveyance subsidiary body 16 arrives at the holding unit 81 of the separation/collection device 70 and is held, the control unit 23 reduces the air volume to Level 2 (T4 of
[0303] After the conveyance subsidiary body 16 is sent out in the conveyance duct 12 by the conveyance subsidiary body insertion device 40, until the above conveyance subsidiary body detection masking time elapses, the control unit 23 does not execute the operation corresponding to the detection result indicating whether the conveyance subsidiary body 16 is detected by the conveyance subsidiary body detection sensor 63. When the conveyance subsidiary body detection masking time elapses, the control unit 23 executes the operation corresponding to the detection result indicating whether the conveyance subsidiary body 16 is detected by the conveyance subsidiary body detection sensor 63. The reason why until the conveyance subsidiary body detection masking time elapses, the control unit 23 does not execute the operation corresponding to the detection result indicating whether the conveyance subsidiary body 16 is detected by the conveyance subsidiary body detection sensor 63, is as follows. In case that only the bill 6 is moved in the conveyance duct 12 by the airstream prior to the conveyance subsidiary body 16, when the conveyance subsidiary body detection sensor 63 wrongly detects the bill 6 as the conveyance subsidiary body 16, some troubles are caused in the subsequent operation.
[0304] In case that the conveyance subsidiary body 16 arrives at the separation/collection device 70 and is held by the holding unit 81 before the conveyance subsidiary body detection masking time elapses, the control unit 23 maintains the air volume at Level 3 until the conveyance subsidiary body detection masking time elapses. When the conveyance subsidiary body detection masking time elapses, the control unit 23 changes the air volume to Level 2 in accordance with the detection of the conveyance subsidiary body 16 by the conveyance subsidiary body detection sensor 63. On the other hand, in case that the conveyance subsidiary body 16 is not held by the holding unit 81 of the separation/collection device 70 (the conveyance subsidiary body detection sensor 63 does not detect the conveyance subsidiary body 16) before the conveyance subsidiary body detection masking time elapses, the control unit 23 monitors whether the conveyance subsidiary body 16 arrives at the holding unit 81 of the separation/collection device 70 in the predetermined period (the monitoring period, for example, 5 seconds) after the conveyance subsidiary body detection masking time elapses.
[0305] Then, in case that the conveyance subsidiary body 16 is not held by the holding unit 81 of the separation/collection device 70 (the conveyance subsidiary body detection sensor 63 does not detect the conveyance subsidiary body 16) in the monitoring period, the control unit 23 judges that the conveyance subsidiary body 16 is jammed in the conveyance duct 12. In case that the conveyance subsidiary body detection sensor 63 does not detect the conveyance subsidiary body 16 even though the control unit 23 stops the airstream generation device 14 (in order to remove the jamming by eliminating the load of the airstream in case that the conveyance subsidiary body 16 or the bill 6 is jammed by being pushed by the airstream) and then the airstream generation device 14 is actuated so as to control the air volume to Level 4 (the same level as the section B), the conveyance subsidiary body jamming error is announced and the airstream generation device 14 is stopped.
[0306] In case that the conveyance subsidiary body 16 is held by the holding unit 81 of the separation/collection device 70 (the conveyance subsidiary body detection sensor 63 detects the conveyance subsidiary body 16) in the monitoring period, the control unit 23 changes the air volume to Level 2 without waiting for the lapse of the monitoring period.
[0307] The period (T1 to T4) which elapses since the conveyance subsidiary body 16 is sent out in the conveyance duct 12 until the conveyance subsidiary body 16 arrives at the holding unit 81 of the separation/collection device 70 and the air volume is changed to Level 2, is referred to as the Carry 3 period.
[0308] (8) When the bill 6 separated and collected by the separation/collection device 70 is output from the rear end of the inner unit 90 and is sent to the bill conveyance unit 22, the control unit 23 switches off the airstream generation device 14. The period which elapses since the air volume is reduced to Level 2 until the airstream generation device 14 is stopped, is referred to as the Carry 4 period. The output of the bill 6 from the rear end of the inner unit 90 and the sending of the bill 6 to the bill conveyance unit 22 are detected by the separation/collection device outlet sensor 122 which is provided on the inlet port of the bill conveyance unit 22 (See
[0309] Next, the relation between the separation/collection operation of the separation/collection device 70 and the airstream will be explained.
[0310]
[0311] [a] In
[0312] [b] As explained in the above-described (7), when the conveyance subsidiary body 16 is held by the holding unit 81 of the separation/collection device 70 and the conveyance subsidiary body detection sensor 63 of the separation/collection device 70 detects the conveyance subsidiary body 16 (T4 of
[0313] Further, after the predetermined time (for example, 3 seconds) elapses since the control for reducing the air volume to Level 2 is started (T5 of
[0314] Even though the airstream generation device 14 is controlled so as to reduce the air volume to Level 2, the time lag from the control of the airstream generation device 14 to the actual reduction of the air volume is caused. Therefore, in case that the conveyance belts 98 are actuated by the separation conveyance actuating unit 64 immediately after the conveyance subsidiary body 16 is detected by the conveyance subsidiary body detection sensor 63, the bill 6 clings to the conveyance belts 98 in the situation in which the air volume is not reduced. In case that the airstream is strong, the bill 6 clings to the conveyance belts 98 too strongly. When the bill 6 is conveyed by the conveyance belts 98 in this situation, as explained in
[0315] Then, after the predetermined time (in this case, 3 seconds) elapses since the conveyance subsidiary body detection sensor 63 of the separation/collection device 70 detects the conveyance subsidiary body 16 (T4: since the air value is controlled to Level 2) (T5 of
[0316] [c] As explained in the above-described (8), when the bill 6 separated and collected by the separation/collection device 70 is output from the rear end of the inner unit 90 and is sent to the bill conveyance unit 22, the control unit 23 switches off the airstream generation device 14 (T6 of
[0317] In detail, when the separation/collection device outlet sensor 122 (See
[0318] When the bill 6 is detected by the separation/collection device outlet sensor 122, the airstream generation device 14 is stopped. However, even though the airstream generation device 14 is stopped, the air volume is not quickly reduced. Therefore, when the separation unit 80 of the separation/collection device 70 is rotated from the collection position on which the holding unit 81 approaches to the ending portion of the conveyance duct 12 to the discharge position on which the holding unit 81 enters the expanding chamber 73 immediately after the airstream generation device 14 is stopped, as shown in
[0319] Therefore, after the predetermined time (for example, 2 seconds) elapses since the separation/collection device outlet sensor 122 detects the bill 6 (the airstream generation device 14 is stopped, T6 of
[0320] [d] The actuation of the conveyance belts 98, which is carried out by the separation conveyance actuating unit 64 of the inner unit 90 is stopped when the bill 6 is completely discharged from the bill conveyance unit 22 toward the bill containing unit 21 without being jammed in midstream (T9 of
[0321] When the conveyance subsidiary body 16 is completely transferred to the standby unit 42 of conveyance subsidiary body insertion device 40, there are some cases in which the next bill 6 stands by in the bill capturing device 140. In this case, the control unit 23 successively carries out the process for sending out the next conveyance subsidiary body 16. Therefore, when the operation (Carry 1) relating to the next conveyance subsidiary body 16 is carried out, there are some cases in which the bill 6 has not been discharged from the bill conveyance unit 22 toward the bill containing unit 21 yet. In this case, the actuation of the conveyance belts 98, which is carried out by the separation conveyance actuating unit 64 of the inner unit 90, is continued until the initial period of the Carry 1 relating to the next conveyance subsidiary body 16.
[0322] Then, by returning to [a], the above operation is repeated.
[0323] Next, the relation between the material of the conveyance subsidiary body 16 and the material of the turning portion 12b of the conveyance duct 12 will be explained.
[0324] For the turning portion 12b, the material which is hard to be worn down (for example, PC: polycarbonate) is used. For the conveyance subsidiary body 16, the material which is easy to be worn down (for example, ABS: acrylonitrile butadiene styrene) is used.
[0325] When the conveyance subsidiary body 16 passes through the turning portion 12b, the conveyance subsidiary body 16 and the turning portion 12b are worn down by the shock caused by contacting the conveyance subsidiary body 16 with the turning portion 12b. In this case, by making the turning portion 12b of the material which is hard to be worn down as compared with the material of the conveyance subsidiary body 16, the turn portion 12b is hard to be worn down. The exchange frequency of the turning portion 12b which is difficult to be exchanged can be reduced. Further, in case that the turning portion 12b is hard to be worn down, the situation in which the conveyance subsidiary body 16 is suitably guided in the turning portion 12b can be maintained long. Therefore, it is possible to avoid the jamming of the conveyance subsidiary body 16. Because the conveyance subsidiary body 16 can be exchanged easily, there is no problem even though the conveyance subsidiary body 16 is made of the material which is worn down more easily than the material of the turning portion 12b. With respect to the material, the material of the turning portion 12b may be worn down more easily than that of the conveyance subsidiary body 16.
[0326] As described above, embodiments of the invention are explained by using the drawings. However, the present invention is not limited to the above embodiments. In the present invention, various modifications of the above embodiments or the addition of various functions or the like to the embodiments can be carried out without departing from the invention.
[0327] In the one or more embodiments described above, the number of the conveyance belts 98 is three. However, the number of the conveyance belts 98 may be optional besides three. Further, in case that the belt having the air permeability, such as the conveyance belt having a large number of the air vents, the reticulate conveyance belt or the like, is used, one wider belt can be used.
[0328] In the one or more embodiments described above, in the inner unit 90 of the separation/collection device 70, the ribs 110 are provided around the upstream half portion of the path part 96, and the conveyance belts 98 are bridged on the downstream side of the ribs 110. However, it is only necessary that on the upstream portion of the path part 96, the ribs 110 prevents the bill 6 from clinging and on the downstream side of the ribs 110, the bill 6 clings to the conveyance belt. For example, the conveyance belts 98 may be also provided on the upstream portion of the path part 96, and in the upstream portion, the ribs 110 may project more upwardly than the conveyance belts or the conveyance belts may be covered.
[0329] The inner unit 90 is detachably attached to the outer frame unit 71. However, the outer frame unit 71 and the inner unit 90 may be unitedly formed.
[0330] In the one or more embodiments described above, the path part 96 is formed shortly so as to be slightly longer than the length of the bill 6 in the conveyance direction. However, the path part 96 may be formed longer. Also in this case, the length L2 from the upstream end of the path part 96 (near the passing port 84 of the separation unit 80) to the conveyance belts 98 may be the length illustrated in
[0331] The number of the ribs 110 and the opposing ribs 112 provided in the inner unit 90 is merely an example. The above number may be increased or decreased.
[0332] In the one or more embodiments described above, the separation/collection device 70 and the conveyance subsidiary body insertion device 40 are unitedly configured as the bill separation/conveyance subsidiary body circulation device 11 so as to overlap the separation/collection device 70 with the conveyance subsidiary body insertion device 40 from above. However, the conveyance subsidiary body insertion device 40 and the separation/collection device 70 may be separately provided. For example, the conveyance subsidiary body 16 collected by the separation/collection device 70 may be stored in the collection container or the like, and by carrying the collection container to the installation place of the conveyance subsidiary body insertion device 40, the conveyance subsidiary body 16 may be sent out from the collection container to the standby position of the conveyance subsidiary body insertion device 40.
[0333] Further, the gaming machine unit facility 2 is not limited to the facility containing the pachinko machine 4 and the game ball lending device 3 which are illustrated in the one or more embodiments described above, and may be the facility containing a medal lending device and a slot machine, or the like.
[0334] In the one or more embodiments described above, in the separation/collection device 70, by rotating the separation unit 80, the separation unit 80 is moved between the collection position and the discharge position. The method for moving the separation unit 80 is not limited to the rotation thereof. The conveyance subsidiary body 16 which is contacted and stopped may be discharged outside by the airstream from the conveyance route. For example, the separation unit 80 which holds the conveyance subsidiary body 16 stopped on the collection position may be straightly moved sideward. Similarly, the method for moving the conveyance subsidiary body 16 which stands by in the standby unit 42 to the sending path 41, is not limited to the method in which the holding portion 43a of the movable containing unit 43 is rotated. The holding portion 43a may be straightly reciprocated between the standby unit 42 and the sending path 41.
[0335] Each shape of the auxiliary frame 160, the pedestal unit 170 and the hook member 180 is not limited to the shape illustrated in the one or more embodiments described above. Another shape may be adopted as long as each member has the corresponding function.
[0336] The hook member 180 may be formed so as to be hung in both one groove portion 162 and the other groove portion 162 of the auxiliary frame 160. Thereby, the hook member 180 may hold the conveyance duct 12 (the first half path 12a) from the both of the front face and the rear face thereof.
[0337] Further, the shape of the conveyance subsidiary body 16 is not limited to the shape illustrated in the one or more embodiments described above. For example, the shape thereof may be a pillar shape having a rectangular cross section, a polygon or the like. Further, the conveyance subsidiary body 16 has a shape which is symmetrical with respect to the center line in Y direction. However, the conveyance subsidiary body 16 may have the shape which is not symmetrical with respect to Y direction.
[0338] In the one or more embodiments described above, the timing at which the air volume is changed at the boundary between the section A and the section B, the boundary between the section B and the section C, and the like is managed in accordance with the elapse time from the finish of the process for releasing the conveyance subsidiary body 16. However, by providing sensors, such as an optical sensor for detecting the passing of the conveyance subsidiary body 16 at suitable positions in the conveyance duct 12, or the like, the position of the conveyance subsidiary body 16 may be recognized in accordance with the detection of the conveyance subsidiary body 16 by using the above sensors to control the air volume at a desired timing.
[0339] In the one or more embodiments described above, the bill 6 is illustrated as the paper sheet. Another type of paper sheet, such as a ticket, a card, or the like, may be used. Further, the shape of the paper sheet is not limited to a rectangle. Further, the paper sheet conveyance device 10 is not limited to one which is installed in the gaming machine unit facility 2. For example, the paper sheet conveyance device may be configured so as to circulate the paper sheet in a plurality of gaming machine unit facilities 2 of an amusement hall, a management room or the like. The management room is separated from the amusement hall in which the game machines and the like are installed, and is a room in which a surveillance monitor for displaying the information obtained from a management device for managing game machines and the like and from surveillance cameras for monitoring the amusement hall, and the bill housing stacker for containing the bills inserted into the game ball lending devices for lending the balls, are provided. In the management room, a manager of the amusement hall, employees and the like manage the whole of the amusement hall.
[0340] In the one or more embodiments described above, the example in which only one paper sheet is conveyed is shown. However, in case that the conveyance subsidiary body 16 is inserted in the situation in which a plurality of bills 6 exist in the conveyance duct 12, it is possible to convey a plurality of bills 6 at once. For example, when the conveyance subsidiary body 16 is sent out from the conveyance subsidiary body insertion device 40 in the situation in which the bill 6 is stopped in the capturing finish position of each bill capturing device 140 in the second half path 12c of the conveyance duct 12, the number of the bills 6 to be pushed by the conveyance subsidiary body 16 sequentially increases during the movement of the conveyance subsidiary body 16 in the first half path 12a. Therefore, all of the bills 6 can be conveyed. The large conveyance force for conveying a plurality of bills is secured because the conveyance subsidiary body 16 is formed in the shape for almost closing the cross section of the conveyance duct 12 and then the clinging of the bill 6 is reduced, and because the area in which the airstream is received is large due to the expanding portions 33. Further, because the conveyance subsidiary body 16 has an undeformed pillar shape, it is possible to execute the conveyance process for conveying a large number of paper sheets at once, which cannot be realized by impellers, or the like.
[0341] In the one or more embodiments described above, the cross section of the conveyance duct 12 is a substantial rectangle. Another shape, such as a circle, an ellipse or the like, may be adopted. However, it is possible to form the conveyance subsidiary body in the shape corresponding to the inner edge shape of the conveyance duct 12 and to close almost the whole cross section thereof. Further, by providing a plurality of ribs, the substantial width of the path for the paper sheet may be narrowed.
[0342] Although the disclosure has been described with respect to only a limited number of embodiments, those skilled in the art, having benefit of this disclosure, will appreciate that various other embodiments may be devised without departing from the scope of the present invention. Accordingly, the scope of the invention should be limited only by the attached claims.
REFERENCE SIGNS LIST
[0343] 2 gaming machine unit facility [0344] 3 game ball lending device [0345] 4 game machine (pachinko machine) [0346] 5 bill housing stacker [0347] 6 bill [0348] 10 paper sheet conveyance device [0349] 11 bill separation/conveyance subsidiary body circulation device [0350] 12 conveyance duct [0351] 12a first half path [0352] 12b turning portion [0353] 12c second half path [0354] 13a rib [0355] 13b arc part [0356] 13c straight part [0357] 14 airstream generation device [0358] 14a air blowing path [0359] 14b air sucking path [0360] 14c motor [0361] 16 conveyance subsidiary body [0362] 16a head portion [0363] 16b neck portion [0364] 16c large-diameter portion [0365] 16d narrow portion [0366] 18 connection unit [0367] 21 bill containing unit [0368] 22 bill conveyance unit [0369] 23 control unit [0370] 24 power supply unit [0371] 31 wall portion [0372] 32 side wall portion [0373] 33 expanding portion [0374] 34 separation wall [0375] 40 conveyance subsidiary body insertion device [0376] 41 sending path [0377] 41A upper sending path [0378] 41B lower sending path [0379] 42 standby unit [0380] 43 movable containing unit [0381] 43a holding portion [0382] 43b support plate [0383] 43d shaft projection [0384] 43e shaft arm portion [0385] 43f guide portion [0386] 43g air blowing hole [0387] 43h air blowing hole [0388] 44 second actuating unit [0389] 45 conveyance duct connection port [0390] 46 blowing path connection port [0391] 47 shaft hole [0392] 48 conveyance subsidiary body sensor [0393] 49 guide rail [0394] 49A upper guide rail [0395] 49B middle guide rail [0396] 49C lower guide rail [0397] 50 duct [0398] 51 posture correction mechanism [0399] 52 bearing hole [0400] 61 guide path [0401] 62 first actuating unit [0402] 63 conveyance subsidiary body detection sensor [0403] 64 separation conveyance actuating unit [0404] 70 separation/collection device [0405] 71 outer frame unit [0406] 71A frame part [0407] 71B upper cover part [0408] 71C side wall duct part [0409] 72 conveyance duct connection port [0410] 73 expanding chamber [0411] 74 dropping opening [0412] 75 sucking port [0413] 77 bill sucking prevention wall [0414] 78 shaft hole [0415] 80 separation unit [0416] 81 holding unit [0417] 82 supporting unit [0418] 83 guide rail [0419] 84 passing port [0420] 85 projection shaft [0421] 86 discharging opening [0422] 90 inner unit [0423] 91 inner unit main body portion [0424] 92 inner unit cover portion [0425] 92a opposing wall [0426] 92b upper face [0427] 92c bottom face [0428] 93 basic part [0429] 94 first side wall [0430] 94a opening [0431] 95 partition wall [0432] 95a opening [0433] 96 path part [0434] 97a downstream pulley [0435] 97b upstream pulley [0436] 98, 98B conveyance belt [0437] 99 movable frame [0438] 100a downstream rotation shaft [0439] 100b upstream rotation shaft [0440] 101 discharge roller [0441] 102 opposing discharge roller [0442] 103 rotation shaft [0443] 104 transmission gear [0444] 105 transmission gear [0445] 106 handle [0446] 107 bill discharge path [0447] 108 spring [0448] 109 air path [0449] 110 rib [0450] 112 opposing rib [0451] 120 conveyance belt [0452] 122 separation/collection device outlet sensor [0453] 140, 140A, 140B bill capturing device [0454] 141 path part [0455] 143 main body part [0456] 144 insertion port [0457] 145 standby path [0458] 146 conveyance roller [0459] 147 path frame [0460] 148 nighlatch [0461] 149 door [0462] 150 bottom part [0463] 151 bill receiving port [0464] 153 connector [0465] 160 auxiliary frame [0466] 161 flat portion [0467] 162 groove portion [0468] 163 project portion [0469] 163a space [0470] 164 connection member [0471] 164a stop portion [0472] 166 attachment clasp [0473] 170 pedestal unit [0474] 171 outer engaging portion [0475] 172 pawl portion [0476] 174 concave part [0477] 174a wall [0478] 175 notch [0479] 180 hook member [0480] 181 hung part [0481] 182 arm part [0482] 182a holding portion [0483] 190 attachment clasp [0484] 191 base part [0485] 192 upper arm part [0486] 193 lower arm part [0487] 194 bill capturing device holding clasp [0488] 195 auxiliary frame holding clasp [0489] Dx distance between the reference plane parts of the conveyance duct [0490] Dy inside dimension of the conveyance duct in Y direction [0491] F extending direction of the conveyance duct [0492] K direction in which the bill capturing device is pushed from the rear surface of the game ball lending device [0493] W path width [0494] X path width direction of the conveyance duct [0495] Y height direction of the conveyance duct