Sheet folding apparatus and sheet post-processing apparatus
09809412 · 2017-11-07
Assignee
Inventors
Cpc classification
International classification
Abstract
A sheet folding apparatus having two-folding rollers each of whose outer diameter gradually decreases from the central part to each end part, a folding plate which can move forward to or backward from a nip between the two-folding rollers, and has a cutout part located at an edge part of the folding plate facing the nip between central parts of the two-folding rollers, wherein the cutout part does not reach the nip between the central parts of the two-folding rollers when the sheets are folded, and a folding plate support member which is placed at a position facing the nip between the central parts of the two-folding rollers, and can slide in a direction of moving closer to or away from the nip, wherein the folding plate support member projects from the cutout part when the sheets are set, and does not reach the nip when the sheets are folded.
Claims
1. A sheet folding apparatus which folds a sheet of paper in two and comprises: a couple of two-folding rollers each of whose outer diameter gradually decreases from the central part to each end part in a longitudinal direction thereof; a folding plate which can move forward to or backward from a nip between the two-folding rollers, and has a cutout part which is located at an edge part of the folding plate facing the nip between central parts of the two-folding rollers, wherein the cutout part does not reach the nip between the central parts of the two-folding rollers when the sheet is folded; a drive mechanism which moves the folding plate forward; a folding plate support member which is placed at a position facing the nip between the central parts of the two-folding rollers, is slidably supported on the folding plate so as to be able to slide forward or backward with respect to the folding plate, and is always pushed forward by receiving a pushing force such that an end of the folding plate support member projects from the cutout part; and a catching member which moves the folding plate support member backward with respect to the folding plate against the pushing force by touching the folding plate support member, after the folding plate support member starts to move forward to the nip together with the folding plate by driving the drive mechanism and before the folding plate support member reaches the nip.
2. A sheet folding apparatus according to claim 1, wherein a plurality of projected piece parts are formed in a part excepting a part where the cutout part is formed of an edge of the folding plate, each of the plurality of projected piece parts projects toward the nip and enters the nip when the sheet is folded.
3. A sheet folding apparatus according to claim 1, wherein an end part of the folding plate support member touches the sheet and supports the sheet when the sheet is set between the two-folding rollers and the folding plate.
4. A sheet folding apparatus according to claim 1, wherein the folding plate support member is moved toward the nip between the two-folding rollers together with the folding plate when the folding plate is started to be moved toward the nip, and then, moving of the folding plate support member is limited so as to stay in a position where the folding plate support member does not reach the nip, before the folding plate enters the nip.
5. A sheet folding apparatus according to claim 1, wherein each of the two-folding rollers has at least a large diameter part and a small diameter part, and the cutout part and the folding plate support member are located in a position corresponding to the large diameter parts of the two-folding rollers, and do not enter the nip between the large diameter parts of the two-folding rollers when the sheet is folded, and a part excepting a part where the cutout part is formed of an edge of the folding plate is located at a position corresponding to the small diameter parts of the two-folding rollers, and enters the nip between the small diameter parts of the two-folding rollers when the sheet is folded.
6. A sheet post-processing apparatus comprising the sheet folding apparatus according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(11) Embodiments of a sheet folding apparatus and a sheet post-processing apparatus in accordance with the present disclosure are described below and in the drawings.
(12) The configuration of a sheet post-processing apparatus 100 is described.
(13) A carry-in part 101, in which sheets ejected from an image forming apparatus are carried, is formed in a part of one side of the sheet post-processing apparatus 100, and a first ejection tray 102 is placed in apart of the other side of the sheet post-processing apparatus 100. In the inside of the sheet post-processing apparatus 100, a sheet conveyance path 103, which extends from the carry-in part 101 to the first ejection tray 102, is formed, and a punching apparatus 105, which performs a punching process on the sheets, and a stapling apparatus 106, which stacks the sheets and staples the sheets with staples, are arranged along with the sheet conveyance path 103.
(14) A first branch path 108 and a second branch path 109 are separated from the sheet conveyance path 103 between the punching apparatus 105 and the stapling apparatus 106, and extend upward and downward, respectively. A second ejection tray 111 is placed at the downstream end of the first branch path 108. Further, a diverting drum 113, which temporarily diverts the sheets, is placed between the first branch path 108 and the second branch path 109. Furthermore, a diverting path 114, which joins the conveyance path 103, is formed along with the diverting drum 113.
(15) A sheet folding apparatus 1 is placed on the downstream side of the second branch path 109 in the lower part of the sheet post-processing apparatus 100. The sheet folding apparatus 1 performs the staple process or the folding process on the supplied sheets in accordance with a user's selection.
(16) The sheet folding apparatus 1 is described below and in
(17) The case 3 has front and back side boards 3a, 3b shaped like a right triangle in a front view, a right side board 3c, and bottom side board 3d.
(18) The sheet placing member 10 has an upstream sheet placing member 11A and a downstream sheet placing member 11B. Each of the sheet placing members 11A and 11B is formed by using, for example, a member shaped like a board. The upstream sheet placing member 11A and the downstream sheet placing member 11B are arranged between the slanting upper edges of the front and back side boards 3a and 3b of the case 3 in a straight line in a slanting downward direction. A gap D with a predetermined distance is formed between the sheet placing members 11A and 11B.
(19) A push-out member 12 and a receiving member 13, which align the edges of the upstream side and the downstream side in a sheet conveying direction of the sheets placed in the sheet placing members 11A and 11B, are arranged in the sheet placing members 11A and 11B, respectively. Incidentally, in the explanation described below, “upstream side” and “downstream side” mean the upstream side and the downstream side in the sheet conveying direction, respectively.
(20) The push-out member 12 is attached to an endless belt 14A placed below the upstream sheet placing member 11A in such a way as to project from the upstream sheet placing member 11A. The endless belt 14A is spanned between an upstream drive pulley 15A and an upstream driven pulley 16A. The receiving member 13 is attached to an endless belt 14B placed below the downstream placing member 11B in such a way as to project from the downstream sheet placing member 11B. The endless belt 14B is spanned between a downstream drive pulley 15B and a downstream driven pulley 16B.
(21) The push-out member 12 and the receiving member 13 are moved in accordance with the lengths of the sheets in the sheet conveying direction, so that the position of the sheets placed on the sheet placing members 11A and 11B is adjusted in the sheet conveying direction.
(22) A couple of width aligning members 18A and a couple of width aligning members 18B, each of which aligns the positions in a width direction (a direction perpendicular to the sheet conveying direction) of the sheets with the center, are placed on the sheet placing members 11A and 11B, respectively. The width aligning members 18A are arranged on the upper surfaces of the upstream sheet placing member 11A at a predetermined intervals in a width direction. The width aligning members 18B are arranged on the upper surfaces of the downstream sheet placing member 11B at a predetermined intervals in a width direction. The width aligning members 18A and the width aligning members 18B are arranged in the direction parallel to the sheet conveying direction. The width aligning members 18A and 18B move in accordance with the widths of the sheets so as to align the widths of the sheets and to correct oblique passing of the sheets.
(23) The staple apparatus 20 is placed above the end part of the downstream side of the upstream sheet placing member 11A.
(24) The sheet folding part 30 is placed at the position corresponding to the gap D between the upstream sheet placing member 11A and the downstream sheet placing member 11B.
(25) The sheet folding part 30 is described below and in
(26) As shown in
(27) As shown in
(28) The rotation shaft of the upstream roller 31A is connected to a motor 32 through gear arrays (not shown), and rotates in a clockwise direction in
(29) As shown in
(30) A cutout part 36 is formed in the upper edge part of the folding plate 35. The cutout part 36 is formed in the position corresponding to the central part 31a of each two-folding roller 31. The cutout part 36 has a length, in a longitudinal direction, approximately the same as or slightly larger than the length L1 of the central part 31a of each two-folding roller 31, and has a depth that is set in such a manner that the cutout part 36 does not reach the nip N when the folding plate 35 is inserted into the nip N between the two-folding rollers 31.
(31) Multiple (for example, three) projected piece parts 37 are formed on each side of the cutout part 36 of the folding plate 35. In the folding plate 35, the projected piece parts 37 each extend and are continuously arranged. Among the projected piece parts 37 on each side of the cutout part 36, one is an inside projected piece part 37a located on the outer side of the cutout part 36, another one is an intermediate projected piece part 37b located on the outer side of the inside projected piece part 37a, and the other is an outside projected piece part 37c located on the outer side of the intermediate projected piece part 37b and located on slightly inner side of the end of the folding plate 35. The arrangements of the projected piece parts 37 on both sides of the cutout part 36 have symmetry with respect to the center in a width direction of the folding plate 35.
(32) Each projected piece part 37 has a height smaller than the depth of the cutout part 36, and the projected piece part 37 located near the end of the folding plate 35 is larger in width than the projected piece part 37 located near the center of the folding plate 35. Namely, the inside projected piece part 37a is the smallest, the outside projected piece part 37c is the largest, and the intermediate projected piece part 37b is intermediate between the inside projected piece part 37a and the outside projected piece part 37c, in width. The intervals between the projected piece parts 37 are approximately the same.
(33) The folding plate 35 is supported by a support member 40. The support member 40 supports on the upstream side and the downstream side in the sheet conveying direction of the folding plate 35, and supports the part of the folding plate 35 located below the cutout part 36, and, as shown in
(34) As shown in
(35) As shown in
(36) In the folding plate support member 50, the base end part 51a of the body part 51 is supported between the holding projected parts 48 formed in the upstream support plate 42. In such a manner, the folding plate support member 50 can slide with respect to the folding plate 35 in the height direction of the folding plate 35.
(37) Further, a coil spring 55 is placed between the support part 52 of the folding plate support member 50 and the support part 42a of the upstream support plate 42. The coil spring 55 pushes the folding plate support member 50 toward the upper edge of the folding plate 35. As shown in
(38) As shown in
(39) The guide part 61 is a guide hole shaped like a long hole and formed in each of the front and back side boards 3a and 3b of the case 3 of the sheet folding apparatus 1. The guide part 61 is placed at the position corresponding to the nip N of the two-folding rollers 31 in each of the front and back side boards 3a and 3b, and extends in the direction along with the tangent line T of the nip N. The direction along with the tangent line T is the direction that the folding plate 35 moves forward or backward. The upper and lower pins 45 and 46 of the support member 40 enter each guide part 61.
(40) One end of each crank arm 63 is rotatably connected to the upper pin 45 through the guide part 61. The other end of each crank arm 63 is rotatably connected to an axis part of the disk-shaped cam 65. Each disk-shaped cam 65 is supported so as to rotate around a rotation shaft 66. The disk-shaped cam 65 located on the back side is connected to the rotation shaft of a motor 68 though a gear array 67. In such a mechanism, when each disk-shaped cam 65 is rotated by the drive of the motor 68, the connection point of the crank arm 63 and the disk-shaped cam 65 moves along with the circular path. Then, through each crank arm 63, the folding plate 35 supported by the support member 40 reciprocates along with the guide part 61 between a retracting position, which is the lowest point of the connection point of the crank arm 63 and the disk-shaped cam 65 moving along with the circular path, and a progress position, which is the highest point of the connection point.
(41) As shown in
(42) As shown in
(43) As shown in
(44) The operation of the sheet folding part 30 with the above-described configuration is described below and in
(45) As shown in
(46) Thereafter, the sheets are conveyed on the sheet placing members 11A and 11B by the push-out member 12 and the receiving member 13, and the central parts in a longitudinal direction of the sheets are positioned at a staple position of the staple apparatus 20, and are stapled.
(47) Next, the stapled sheets are conveyed on the sheet placing members 11A and 11B to the sheet folding part 30 by the push-out member 12 and the receiving member 13, and the central parts in a longitudinal direction of the sheets are set at the position corresponding to the nip N between the two-folding rollers 31 of the sheet folding part 30.
(48) As shown in
(49) In this manner, as shown in
(50) After the sheets S are set, the motor 68 of the drive mechanism 60 of the sheet folding part 30 shown in
(51) The folding plate support member 50 moves forward together with the folding plate 35 toward the nip N at first. However, when the support part 52 of the folding plate support member 50 touches the caching part 71 of the catching member 70, the folding plate support member 50 moves downward with respect to the folding plate 35 against the pushing force of the coil spring 55, so that the folding plate support member 50 does not enter the nip N.
(52) In the folding plate 35 located at the progress position show in
(53) Further, approximately at the same time as driving the motor 68 of the drive mechanism 60, the upstream roller 31A is driven by the motor 32, and is rotated in a clockwise direction in
(54) The folding plate 35 moves backward immediately after the folding plate 35 reaches the progress position, and the upstream roller 31A and the downstream roller 31B continue to rotate. In this manner, the folded sheets S are ejected from the nip N of the two-folding rollers 31 in such a manner that the folded central parts are ejected first.
(55) As shown in
(56) As described above, in the sheet folding apparatus 1 in accordance with an embodiment of the present disclosure, when the sheets are set, whereas the folding plate 35 does not touch the central part of the sheets (i.e., the central part of the lowest sheet among the sheets), the folding plate support member 50 touches the central part of the sheets (i.e., the central part of the lowest sheet among the sheets). Therefore, it is possible to support the sheets so as to prevent the central parts of the sheets from bending down. Further, the folding plate support member 50 moves forward to the nip N of the two-folding rollers 31 together with the folding plate 35 at first. Therefore, it is possible to insert the sheets into the nip N while keeping the sheets approximately straight. Consequently, it is possible to prevent the central parts of the sheets from being creased.
(57) Further, when the sheets are folded in two, the folding plate 35 and the folding plate support member 50 do not enter the nip N between the central parts 31a of the two-folding rollers 31 with a large diameter. Therefore, it is possible to prevent gloss from being produced in the central part of the sheet when the folding plate 35 is moved backward. Consequently, it is possible to obtain a high quality two-folded sheets without any creases or any gloss.
(58) Further, each of the two-folding rollers 31 is formed in such a manner that the outer diameter gradually decreases from the central part to each end part. Therefore, it is possible to make the pressure force in a longitudinal direction on the two-folding rollers 31 uniform and to reduce creases in the sheets. Furthermore, the multiple projected piece parts 37 are formed in the parts excepting the part corresponding to the central parts 31a of the two-folding rollers 31 in the edge of the folding plate 35, and the width of the projected piece part 37 located near the end of the folding plate 35 is larger than that of the projected piece part 37 located near the center of the folding plate 35. Therefore, it is possible to disperse the internal stress that the sheets receives when the folding plate 35 enters the nip N, and thereby, it is possible to prevent the sheets from being damaged.
(59) While the present disclosure has been described with reference to the particular illustrative embodiments, it is not to be restricted by the embodiments. It is to be appreciated that those skilled in the art can change or modify the embodiments without departing from the scope and spirit of the present disclosure.