AUTOMATIC IMAGE POSITIONING SYSTEM FOR SHEET MATERIAL
20220212889 · 2022-07-07
Inventors
Cpc classification
B65H2511/24
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/01
PERFORMING OPERATIONS; TRANSPORTING
B65H9/106
PERFORMING OPERATIONS; TRANSPORTING
B65H9/002
PERFORMING OPERATIONS; TRANSPORTING
B65H2553/80
PERFORMING OPERATIONS; TRANSPORTING
B65H5/085
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/01
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/02
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/02
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/03
PERFORMING OPERATIONS; TRANSPORTING
B65H2511/512
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/03
PERFORMING OPERATIONS; TRANSPORTING
B65H9/20
PERFORMING OPERATIONS; TRANSPORTING
B65H2511/24
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H9/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention relates to an automatic image positioning system for a sheet material. The automatic positioning system is used to convey the sheet material from a feeding place to a paper gripper bar. The automatic positioning system includes a first conveying device and a second conveying device, the automatic positioning system further includes a photoelectric detection device used to perform positioning and positioning correction on the sheet material, and the photoelectric detection device is provided at a starting end of the second conveying device (3). Compared with the prior art, the present invention utilizes an photoelectric detection device to perform positioning and positioning correction on a material, uses a vacuum adsorption component to stabilize the material, and has advantages of high systemic positioning accuracy, high positioning correction accuracy, and strong material adaptability.
Claims
1. An automatic image positioning system for a sheet material, wherein the automatic positioning system is used to convey the sheet material from a feeding place (1) to a paper gripper bar (5), and the automatic positioning system comprises a first conveying device (2) and a second conveying device (3), wherein the first conveying device (2), the second conveying device (3) and the paper gripper bar (5) have a same conveying speed when transferring the conveyed sheet material to each other, the second conveying device (3) has functions of longitudinal correction, lateral correction, and rotation angle correction; and the automatic positioning system further comprises a photoelectric detection device (4) used to perform positioning on the sheet material, and the photoelectric detection device (4) is disposed at a starting end of the second conveying device (3).
2. The automatic image positioning system for a sheet material according to claim 1, wherein the photoelectric detection device (4) comprises a bracket and a photoelectric detection element used to perform positioning detection on the sheet material, the bracket is disposed at the starting end of the second conveying device (3), and the photoelectric detection element is fixed to the bracket.
3. The automatic image positioning system for a sheet material according to claim 1, wherein positioning marks provided on a front edge and side edges of the sheet materials or on set positions are used as reference positions for positioning.
4. The automatic image positioning system for a sheet material according to claim 1, wherein positioning correction performed on the sheet material comprises lateral correction, longitudinal correction and rotation angle correction, a lateral direction is along a conveying direction, a longitudinal direction is perpendicular to the conveying direction, so that the sheet material reaches a predetermined position accurately.
5. The automatic image positioning system for a sheet material according to claim 1, wherein after entering the second conveying device (3) with a vacuum adsorption device, a front portion of the sheet material stops or makes the same constant-speed movement as a conveyor belt of the second conveying device (3), the sheet material passes through a photoelectric detection area of the photoelectric detection device (4) in this case, and after the sheet material is adsorbed on the conveyer belt of the second conveying device (3), the photoelectric detection device (4) detects a specific position of the sheet material in this case.
6. The automatic image positioning system for a sheet material according to claim 1, wherein the system adopts a single-sheet conveying method per cycle process during conveying of the sheet material.
7. The automatic image positioning system for a sheet material according to claim 1, wherein when a conveying frequency of the sheet material is less than a set value, the first conveying device (2) and the second conveying device (3) complete conveying in one working cycle, that is, it is one working cycle that is after the sheet material comes out of the feeding place (1) and until the sheet material enters the paper gripper bar (5); and when a conveying frequency of the sheet material is greater than a set value, the first conveying device (2) and the second conveying device (3) separately complete conveying in one independent working cycle.
8. The automatic image positioning system for a sheet material according to claim 1, wherein the first conveying device (2) comprises a first drive component and at least two groups of first conveyor belt components; each group of first conveyor belt components comprises a first conveyor plate (206), a first conveyor belt (203), a first driven gear (204) and four first auxiliary gears (205), the first conveyor belt (203) is respectively connected to the first driven gear (204) and the four first auxiliary gears (205), the first conveyor belt (203) rotates under the drive of the first driven gear (204), the first drive component includes a first servo motor (201) and a first drive shaft (202), the first servo motor (201) is connected to the first drive shaft (202), there is a drive-connection between the first drive shaft (202) and the first driven gear (204), the servo motor (201) drives the first drive shaft (202) to rotate, and the first drive shaft (202) drives the first driven gear (204) to rotate.
9. The automatic image positioning system for a sheet material according to claim 1, wherein the second conveying device (3) includes a vacuum adsorption component, a second drive component and four groups of second conveyor belt components; each group of second conveyor belt components comprises a second conveyor belt (305), a second driven gear (303) and a second auxiliary gear (304), the second conveyor belt (305) is connected to the second driven gear (303) and the second auxiliary gear (304), the second drive component comprises a second servo motor (301) and a second drive shaft (302), the second servo motor (301) is connected to the second drive shaft (302), the second drive shaft (302) is connected to the second driven gear (303), the second servo motor (301) drives the second drive shaft (302) to rotate, and the second drive shaft (302) drives the second driven gear (303) to rotate; and the vacuum adsorption component is disposed below the second conveyor belt (305), the second conveyor belt (305) is provided with a plurality of adsorption holes (306), and the vacuum adsorption component and the adsorption holes (306) on the conveyor belt are connected.
10. The automatic image positioning system for a sheet material according to claim 9, wherein in the four groups of second conveyor belts components two groups of second conveyor belts components located in the middle are suitable for any sheet material that meets a specification, an adsorption function needs to be enabled once there is a material to be conveyed; and an adsorption function is enabled when two groups of second conveyor belts components located on the outside have an action on the conveyed sheet material.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030] 1 A feeding place, 2 a first conveying device, 201 a first servo motor, 202 a first drive shaft, 203 a first conveyor belt, 204 a first driven gear, 205 a first auxiliary gear, 206 a first conveyor plate, 3 a second conveying device, 301 a second servo motor, 302 a second drive shaft, 303 a second driven gear, 304 a second auxiliary gear, 305 a second conveyor belt, 306 an adsorption hole, 4 a photoelectric detection device, 5 a paper gripper bar, 6 a rotation angle correction servo motor, 7 a longitudinal correction servo motor.
DETAILED DESCRIPTION OF EMBODIMENTS
[0031] The technical solutions in the embodiments of the present invention are described clearly and completely with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are some embodiments of the present invention rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts shall fall within the scope of protection of the present invention.
EMBODIMENTS
[0032] An automatic image positioning system for a sheet material is provided. The automatic positioning system is used to convey the sheet material from a feeding place 1 to a paper gripper bar 5. As shown in
[0033] The present invention adopts a single-sheet conveying method in a conveying process, and marks (printing or engraving) on a front edge and side edges of a single-sheet material (such as a paperboard and a synthetic material plate with certain flexibility) or on determined positions are used as reference positions for positioning.
[0034] As shown in
[0035] A positioning detection process is as follows: A piece of sheet material is adsorbed (grabbed) at the feeding place 1 on the right side in
[0036] As shown in
[0037] As shown in
[0038] As shown in
[0039] The second conveying device 3 performs positioning correction on the sheet material during the conveying process. The correction process includes lateral (along a conveying direction) correction, longitudinal (perpendicular to the conveying direction) correction and rotation angle correction, so that the sheet material reaches a predetermined position accurately.
[0040] When the paper gripper bar 5 grabs the sheet material and starts to move, the vacuum adsorption device of the second conveying device 3 is closed and an air pressure is injected to release the adsorbed sheet material, and conveying of the sheet material is completed.
[0041] A specific process of lateral (along a conveying direction) correction, longitudinal (perpendicular to the conveying direction) correction and rotation angle correction is as follows:
[0042] The lateral correction is implemented by changing a conveying speed of the second conveying device 3 by the second servo motor 301, the longitudinal (perpendicular to the conveying direction) correction is implemented by driving the second conveying device 3 by a longitudinal correction servo motor 7, and the rotation angle correction is implemented by driving the second conveying device 3 to rotate by a rotation angle correction servo motor 6.
[0043] Each correction amount is shown in
is a lateral correction displacement; and
is a correction angle.
[0044] The present invention is particularly suitable for the mounted paperboard (or corrugated fiberboard), and because the printed paper is deformed after being mounted by glue, a paperboard error becomes larger (reaching or exceeding 0.5 mm). As a result, an accuracy error occurring in die cutting after the physical front stop block is used to position also increases accordingly.
[0045] The first conveying device 2 and the second conveying device 3 of the present invention can adopt two embodiments:
[0046] The first conveying device 2 and the second conveying device 3 complete conveying in one working cycle, that is, it is one working cycle that is after the sheet material comes out from the bottom feeding place 1, and until the material enters the paper gripper bar system. When a conveying frequency of the material is low (generally, less than 2000 pieces per hour), this method can be used.
[0047] When a conveying frequency of the material is high (generally, more than 2,000 to 3,000 pieces per hour), the above time left for photoelectric detection device 4 to read becomes shorter, reading failure easily occurs, and the system is unable to operate normally. In this case, the first conveying device 2 and the second conveying device 3 can separately complete conveying in one independent working cycle. In this way, there is more time for photoelectric detection device 4 to read, and the conveying frequency that this system adapts is higher.
[0048] The foregoing embodiments are merely intended for describing the technical solutions of the present invention, but not for limiting the present invention. Any person skilled in the art can easily think of various equivalent modifications or replacements within the technical scope disclosed by the present invention, these modifications or replacements should be covered within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be subject to the scope of protection of the claims.