Workpiece storage device and workpiece loading method
10898981 ยท 2021-01-26
Assignee
Inventors
Cpc classification
B21D43/18
PERFORMING OPERATIONS; TRANSPORTING
B23Q7/1426
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00666
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00333
PERFORMING OPERATIONS; TRANSPORTING
B23Q7/001
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00621
PERFORMING OPERATIONS; TRANSPORTING
B21D43/105
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00631
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00273
PERFORMING OPERATIONS; TRANSPORTING
B23Q7/106
PERFORMING OPERATIONS; TRANSPORTING
B21D43/20
PERFORMING OPERATIONS; TRANSPORTING
B21D43/11
PERFORMING OPERATIONS; TRANSPORTING
B65D25/107
PERFORMING OPERATIONS; TRANSPORTING
B65D19/44
PERFORMING OPERATIONS; TRANSPORTING
International classification
A47F7/00
HUMAN NECESSITIES
B65D25/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A first plate-like member on a bottom surface side is disposed in a horizontal direction. A second plate-like member is disposed in a vertical direction. A first position restricting mechanism is engaged with a first end portion including a first side that opposes the first plate-like member in a workpiece in a state where the workpiece stands while a front surface and a rear surface of the plate-like workpiece are along a vertical direction, and restricts the position of the first end portion in a plate thickness direction. A second position restricting mechanism is engaged with a second end portion including a second side that opposes the second plate-like member in the workpiece, and restricts the position of the second end portion in the plate thickness direction.
Claims
1. A workpiece storage device for storing one or more plate-like workpieces made of sheet metal, comprising: a first plate-like member on a bottom surface side disposed in a horizontal direction, the first plate-like member being made of metal; a second plate-like member disposed in a vertical direction that is perpendicular to the horizontal direction; a first position restricting mechanism which is provided integrally with the first plate-like member or separately from the first plate-like member on the first plate-like member, the first position restricting mechanism being made of metal, wherein the first position restricting mechanism is configured to engage a first end portion of the workpiece that comprises a first side edge of the workpiece in a state in which the workpiece is oriented in the vertical direction and both a front surface and a rear surface of the workpiece are along oriented in a plane that extends in the vertical direction such that the first side edge of the workpiece opposes the first plate-like member, thereby restricting a position of the first end portion in a plate thickness direction of the workpiece; and a second position restricting mechanism which is provided integrally with the second plate-like member or separately from the second plate-like member on the second plate-like member, wherein the second position restricting mechanism is configured to engage a second end portion of the workpiece that comprises a second side edge of the workpiece in the state in which the workpiece is oriented in the vertical direction such that the second side edge of the workpiece opposes the second plate-like member, thereby restricting a position of the second end portion in the plate thickness direction of the workpiece, the plate thickness direction of the workpiece being oriented perpendicular to the plane, wherein the first position restricting mechanism comprises a plurality of comb teeth members each comprising a first slit into which the first end portion is inserted, and the plurality of comb teeth members are disposed in a first direction along the first side edge of the workpiece with a space provided between adjacent comb teeth members.
2. The workpiece storage device according to claim 1, wherein the plurality of comb teeth members comprise a plurality of first slits arranged in a second direction orthogonal to the first direction such that the workpiece storage device stores a plurality of workpieces.
3. A workpiece storage device for storing one or more plate-like workpieces made of sheet metal, comprising: a first plate-like member on a bottom surface side disposed in a horizontal direction, the first plate-like member being made of metal; a second plate-like member disposed in a vertical direction that is perpendicular to the horizontal direction; a first position restricting mechanism which is provided integrally with the first plate-like member or separately from the first plate-like member on the first plate-like member, the first position restricting mechanism being made of metal, wherein the first position restricting mechanism is configured to engage a first end portion of the workpiece that comprises a first side edge of the workpiece in a state in which the workpiece is oriented in the vertical direction and both a front surface and a rear surface of the workpiece are oriented in a plane that extends in the vertical direction such that the first side edge of the workpiece opposes the first plate-like member, thereby restricting a position of the first end portion in a plate thickness direction of the workpiece, the plate thickness direction of the workpiece being oriented perpendicular to the plane; and a second position restricting mechanism which is provided integrally with the second plate-like member or separately from the second plate-like member on the second plate-like member, wherein the second position restricting mechanism is configured to engage a second end portion of the workpiece that comprises a second side edge of the workpiece in the state in which the workpiece is oriented in the vertical direction such that the second side edge of the workpiece opposes the second plate-like member, thereby restricting a position of the second end portion in the plate thickness direction of the workpiece, wherein the second position restricting mechanism includes a second slit into which the second end portion is inserted.
4. The workpiece storage device according to claim 3, wherein the second plate-like member is formed with a plurality of second slits arranged in a direction orthogonal to the second side edge of the workpiece.
5. The workpiece storage device according to claim 1, wherein the workpiece storage device stores one or more workpieces that are held and transported by a bending robot one by one to a press brake, for bending each workpiece by the press brake.
6. The workpiece storage device according to claim 3, wherein the workpiece storage device stores one or more workpieces that are held and transported by a bending robot one by one to a press brake, for bending each workpiece by the press brake.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(14) Hereinafter, a workpiece storage device and a workpiece loading method according to one or more embodiments will be described with reference to the accompanying drawings.
(15) First, with reference to
(16) As will be described below, the bending robot 20 holds a plate-like workpiece W and transports the workpiece W between the punch Tp and the die Td. The workpiece W is a sheet metal, such as stainless steel plate, mild steel plate, aluminum plate or the like. The press brake 10 lowers the upper table 11 to sandwich the workpiece W between the punch Tp and the die Td, and the bending robot 20 moves a multi-joint arm 21 to bend the workpiece W.
(17) The bending robot 20 is disposed on a guide rail 200 and is formed to be movable in a left-right direction of the press brake 10 along the guide rail 200. A vacuum gripper 22 for suctioning and holding the workpiece W is mounted on the tip end of the arm 21. A mechanical gripper that grips and holds the workpiece W may be mounted on the tip end of the arm 21, or the vacuum gripper 22 and the mechanical gripper may be formed to be exchangeable.
(18) In front of the bending robot 20, two rail mechanisms 30A and 30B are installed. In the rail mechanisms 30A and 30B, a loading device 40 is disposed. The loading device 40 is formed to move along the rail mechanisms 30A or 30B with the power using a motor.
(19) In the example illustrated in
(20) The motor decelerates the loading device 40 in order as approaching the end portion on the bending robot 20 side, and activates the brake when being positioned in the end portion. Accordingly, the position of the loading device 40 is fixed on the end portion of the rail mechanism 30A on the bending robot 20 side.
(21) In the example illustrated in
(22) Here, a specific configuration of the storage device 50 will be described. As illustrated in
(23) The storage device 50 is disposed on the loading device 40, while the front plate 53 side is oriented toward the bending robot 20. The front plate 53 side is the front side of the storage device 50, and the side opposite to the front plate 53 side is the rear side of the storage device 50. A width direction of the storage device 50 is defined as an X direction, and a front-rear direction is defined as a Y direction.
(24) On the bottom plate 51, two recess portions 511 for inserting forks of a forklift which will be described later are formed. On a rear end surface of the bottom plate 51, three protruding abutting portions 512 are provided. The abutting portion 512 includes bolts, for example.
(25) A mountain-shaped comb teeth member 54 is mounted on the bottom plate 51. As an example, on the bottom plate 51, five comb teeth members 54 are disposed at equal intervals in the Y direction with an interval between adjacent comb teeth members 54. A plurality of slits 54s (first slits) are formed in the comb teeth member 54. The plurality of slits 54s are arranged in a direction orthogonal to a first side that opposes the bottom plate 51 in the workpiece W. At each position in the X direction, the slits 54s of the five comb teeth members 54 are positioned on a straight line in the Y direction.
(26) The comb teeth member 54 can be formed by bending a metal plate into a mountain shape and by forming the plurality of slits 54s. Although the comb teeth member 54 is provided separately from the bottom plate 51, a configuration equivalent to the comb teeth member 54 may be provided integrally with the bottom plate 51.
(27) On the front plate 53, a plurality of slits 53s (second slits) that extend from the position of the upper surface of the bottom plate 51 to the upper end portion of the front plate 53 are formed. The plurality of slits 53s are arranged in a direction orthogonal to the second side that opposes the front plate 53 in the workpiece W. At each position in the X direction, the slit 53s is formed at a position that corresponds to the slit 54s. That is, at each position in the X direction, the slits 54s of the five comb teeth members 54 and the slits 53s of the front plate 53 are positioned on a straight line in the Y direction. On both sides of the front plate 53, side plates 55A and 55B are fixed.
(28) A plate 56 is attached to the upper end portion on the front side of the front plate 53 such that a sensor provided in the loading device 40 detects that the storage device 50 is disposed on the loading device 40.
(29) Instead of forming the slits 53s on the front plate 53, a comb teeth member including the same configuration as the slit 53s may be attached onto the front plate 53.
(30) In the storage device 50 configured as described above, the workpiece W can be mounted on the slits 53s and 54s at each position in the X direction, and the plurality of workpieces W can be stored in a standing state. The standing state of the workpiece W means that the front surface and the rear surface of the workpiece W are in a state along the vertical direction.
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(32) In
(33) The engagement of the first and second end portions with the slits 54s and 53s respectively means that the first and second end portions are respectively inserted into the slits 54s and 53s, and the positions of the first and second end portions are restricted. Note that, the widths of the slits 54s and 53s are set to be wider than the plate thickness of the workpiece W to have a predetermined margin in order that the workpiece W can be easily inserted into the storage device 50, and the workpiece W can be easily taken out from the storage device 50.
(34) The first and second position restricting mechanisms are not limited to slits. As a first modified example as illustrated in
(35) As a second modified example, as illustrated in
(36) The first and second position restricting mechanisms may be any combination of slits, recess portions, and gaps formed by protrusion portions. The first and second position restricting mechanisms may be formed to engage both the first end portion including the first side of the workpiece W and the second end portion including the second side adjacent to the first side with each other on two surfaces of the storage device 50, and to restrict the position of the workpiece W in the plate thickness direction.
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(38) As illustrated in
(39) As illustrated in
(40) When the positioning rod 41 is engaged with the cutout of the positioning plate 531 and the positioning rod 42 comes into contact with the positioning flange 532, the storage device 50 is positioned in the X direction and in the Y direction on the loading device 40. The positioning rods 41 and 42, the positioning plate 531, and the positioning flange 532 are examples of a positioning mechanism for positioning the storage device 50 at a predetermined position on the loading device 40.
(41) As illustrated in
(42) When a hand valve 44 illustrated in
(43) As described above, the front end side of the storage device 50 is positioned on the loading device 40 by the engagement between the positioning rods 41 and 42, the positioning plate 531, and the positioning flange 532. The three links 43 provided in the rear end portion of the loading device 40 are pressed against the three abutting portions 512, and the positioning plate 531 and the positioning flange 532 are pressed against the positioning rods 41 and 42.
(44) Accordingly, as illustrated in
(45) Next, a workpiece loading method according to one or more embodiments will be described. As illustrated in
(46) As illustrated in
(47) As illustrated in
(48) As described above, in accordance with the workpiece storage device 50 according to one or more embodiments, it is possible to store the plurality of workpieces W in a state of not being in contact with one another. Accordingly, the bending robot 20 can hold and transport the workpieces W one by one, abrasion scratches may not occur in the workpiece W, and the quality of the workpiece does not deteriorate. In accordance with the workpiece loading method according to one or more embodiments, the bending robot 20 can load the workpieces one by one onto the press brake from the workpiece storage device 50 that stores the plurality of workpieces W in a state of not being in contact with one another.
(49) As a comparative example, there is a workpiece storage device which stacks the plurality of workpieces W horizontally. When holding and transporting the horizontally stacked workpieces W using the bending robot 20, the large-sized workpiece W hangs down by gravity, whereby the workpiece W is likely to be dropped. Therefore, the bending robot 20 needs to transport the workpiece W at a low speed, and the operation speed cannot be increased. On the other hand, in accordance with the workpiece storage device 50 according to one or more embodiments, since the workpiece W is stored in a standing state, it is possible to prevent the hanging of the workpiece W during the transport using the bending robot 20. Accordingly, the operating speed of the bending robot 20 can be increased, whereby the takt time of processing can be shortened.
(50) The present invention is not limited to the above-described one or more embodiments, and various modifications can be made without departing from the scope of the present invention. The bending robot 20 is not limited to suctioning and transporting the workpiece W using the vacuum gripper 22, and may be gripped using a mechanical gripper so as to be transported.