Receiving device for digital printing

By designing a material collecting device for digital printing and utilizing a lifting mechanism and a conveying mechanism to realize automatic and neat stacking and conveying of non-woven bags, the problem of manual sorting of non-woven bags after printing is solved, thus improving work efficiency.

CN223316107UActive Publication Date: 2025-09-09CHONGQING WANZHOU DISTRICT HAOMEI PRINTING CO LTD
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Patent Information

Application Number
CN202422574914.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-09
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

In the prior art, after the non-woven bags are printed, workers need to manually sort and stack them, which increases labor intensity and reduces work efficiency.

Method used

A material receiving device for digital printing is designed, which includes a base plate, a lifting mechanism, an abutment plate, a connecting plate and a conveying mechanism. The controller coordinates the work of each component to form a receiving cavity to neatly stack non-woven bags, and the non-woven bags are automatically transported to a designated area using a conveyor belt.

Benefits of technology

It realizes the automatic neat stacking and automatic transmission of non-woven bags, reduces the subsequent sorting work of staff and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of printing machines, and particularly relates to a receiving device for digital printing. Comprising a printing machine and further comprises a bottom plate, the bottom plate corresponds to the discharging end of a conveying belt of the printing machine in position, and an abutting plate is fixedly connected with the telescopic end of a lifting assembly; the two connecting plates are slidably assembled on the right sides of the abutting plates correspondingly, position adjusting assemblies are arranged between the two connecting plates and the abutting plates correspondingly, and sliding grooves are formed in the right sides of the two abutting plates correspondingly; the telescopic blocking mechanism comprises a blocking plate, connecting grooves are formed in the front side and the rear side of the blocking plate, L-shaped assembling plates are jointly and slidably assembled between the sliding grooves and the connecting grooves which correspond to each other in position, a locking assembly is arranged between the L-shaped assembling plate on the front side and the connecting plate, and the conveying mechanism is fixedly installed on the upper side of the lifting mechanism; the non-woven fabric bag storage device is simple in structure and reasonable in design, when non-woven fabric bags are stored, the non-woven fabric bags can be tidily stacked and stored, workers do not need to tidy the non-woven fabric bags again in the follow-up process, and the working efficiency of the workers is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of printing machines, and particularly relates to a material receiving device for digital printing. Background Art

[0002] Non-woven bags are a green product. Different from traditional plastic bags, non-woven bags are more durable, environmentally friendly, and have a long service life. They are suitable for any company's advertising and giveaways. Therefore, non-woven bags are becoming more and more popular among the public. In order to increase the beauty of non-woven bags, printing machines are used to print various patterns on their surface to achieve better publicity effects.

[0003] In the prior art, after the non-woven bags are printed using a printing machine, the staff will place a box at the end of the conveyor belt of the printing machine for collecting the materials. However, the non-woven bags are often stacked in a messy state after falling into the box, and the staff will need to sort them out and place them again later. Such an operation process will increase the labor intensity of the staff and reduce work efficiency. Utility Model Content

[0004] The purpose of the utility model is to provide a material collecting device for digital printing, which can neatly stack and store the non-woven bags when storing them, and does not require staff to sort them again later, thereby improving the work efficiency of the staff.

[0005] In order to achieve the above technical objectives, the technical solutions adopted by this utility model are as follows:

[0006] A material receiving device for digital printing, comprising a printing press and

[0007] A bottom plate, the bottom plate corresponds to the discharge end of the conveyor belt of the printing press, a lifting mechanism is provided on the right side of the bottom plate, and a lifting assembly is provided on the upper left side of the bottom plate;

[0008] an abutment plate fixedly connected to the telescopic end of the lifting assembly;

[0009] There are two connecting plates, each of which is slidably assembled on the right side of the abutting plate. A position adjustment component is provided between the two connecting plates and the abutting plate. A sliding groove is provided on the right side of the two abutting plates. A telescopic blocking mechanism is commonly connected to the inside of the two sliding grooves.

[0010] The telescopic blocking mechanism includes a blocking plate, which is located to the right of the two connecting plates. Connecting grooves are provided on both the front and rear sides of the blocking plate. An L-shaped assembly plate is slidably mounted between the corresponding sliding grooves and the connecting grooves. A locking assembly is provided between the front L-shaped assembly plate and the connecting plates.

[0011] The conveying mechanism is fixedly installed on the upper side of the lifting mechanism, a support plate is provided on the front of the upper side of the base plate, a controller is provided on the front side of the support plate, and the lifting mechanism, lifting assembly and conveying mechanism are all electrically connected to the controller.

[0012] As a preferred technical solution, the position adjustment assembly includes a U-shaped connecting rod, a through slot is opened on the front side of the abutment plate, an assembly block is fixedly installed in the center of the through slot, one end of the U-shaped connecting rod is fixedly connected to one side of the connecting plate, and the other end of the U-shaped connecting rod extends into the through slot and is fixedly installed with a displacement block, and the displacement block is slidably connected to the through slot;

[0013] A circular hole is opened in the middle of the front side of the assembly block, and a bidirectional threaded rod is rotatably assembled inside the circular hole. The front and rear ends of the bidirectional threaded rod extend out of the through slots and the end faces are fixedly installed with screw blocks. The front displacement block is threadedly connected to the forward-rotating thread section of the bidirectional threaded rod, and the rear displacement block is threadedly connected to the reverse-rotating thread section of the bidirectional threaded rod.

[0014] As an optimal technical solution, the lifting assembly includes a cylinder, which is fixedly installed on the upper left part of the base plate. A mounting block is fixedly installed on the telescopic end of the cylinder. The upper side of the mounting block is fixedly connected to the bottom of the abutment plate, and the cylinder is electrically connected to the controller.

[0015] As a preferred technical solution, the conveying mechanism includes a U-shaped assembly plate, a plurality of transmission rollers are rotatably assembled inside the U-shaped assembly plate, and a conveyor belt is assembled with the plurality of transmission rollers for common transmission. A motor is provided on one side of the U-shaped assembly plate, and the output shaft of the motor is transmission-connected to one of the transmission rollers, and the motor is electrically connected to the controller.

[0016] As a preferred technical solution, the lifting mechanism includes four electric telescopic columns, which are distributed in a rectangular shape and assembled at the bottom of the U-shaped assembly plate. The lower ends of the four electric telescopic columns are fixedly connected to the upper side of the base plate, and the four electric telescopic columns are electrically connected to the controller.

[0017] As a preferred technical solution, the locking assembly includes a threaded rod, a plurality of connecting holes are arranged horizontally on the front side of the front L-shaped assembly plate, a threaded hole is opened on the front side of the connecting plate, the threaded rod is threadedly connected to the inside of the threaded hole, one end of the threaded rod extends into one of the connecting holes, and a round block is fixedly installed at the front end of the threaded rod.

[0018] The beneficial effects of the utility model are:

[0019] When in use, the abutment plate, the two connecting plates and the blocking plate together form a receiving cavity. After the non-woven bag is printed, it will fall directly into the receiving cavity when transported by the conveyor belt of the printing press. The area of ​​the receiving cavity is consistent with the area of ​​the non-woven bag, which can ensure that the non-woven bag belt will be neatly stacked inside the receiving cavity after falling. When storing non-woven bags of different sizes, the area of ​​the receiving cavity can also be adjusted to enhance practicality. After the subsequent collection is completed, the non-woven bag can be transported to the designated area using the conveyor belt. There is no need for the staff to sort the non-woven bags again, which increases the work efficiency of the staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present invention can be further described by way of non-limiting embodiments given in the accompanying drawings.

[0021] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0022] Figure 2 This is a structural schematic diagram from another perspective of the present invention;

[0023] Figure 3 This is a schematic diagram of the first partial structure of the utility model;

[0024] Figure 4 This is a schematic diagram of a second partial structure of the utility model;

[0025] Figure 5 This is a schematic diagram of the third partial structure of the utility model;

[0026] Figure 6 This is a schematic diagram of the structure of the assembly of the position adjustment component and the connecting plate of the utility model;

[0027] Figure 7 It is a structural schematic diagram of the assembly of the lifting component and the abutment plate of the utility model.

[0028] Figure numerals: printing machine 1, base plate 11, lifting mechanism 2, lifting assembly 21, electric telescopic column 201, cylinder 211, mounting block 212, abutment plate 3, connecting plate 4, position adjustment assembly 41, U-shaped connecting rod 411, through groove 412, assembly block 413, displacement block 414, circular hole 415, bidirectional threaded rod 416, screw block 417, slide groove 42, telescopic blocking mechanism 43, blocking plate 431, connecting groove 433, L-shaped assembly plate 434, locking assembly 435, connecting hole 436, threaded hole 437, round block 438, conveying mechanism 6, support plate 601, controller 61, U-shaped assembly plate 62, conveyor belt 63, motor 64. DETAILED DESCRIPTION

[0029] In order to enable those skilled in the art to better understand the present invention, the technical solution of the present invention is further described below with reference to the accompanying drawings and embodiments.

[0030] like Figure 1-7 As shown, the present invention is a digital printing receiving device, comprising a printing machine 1, and further comprising

[0031] The bottom plate 11 corresponds to the discharge end of the conveyor belt of the printing press 1. The right side of the bottom plate 11 is provided with a lifting mechanism 2, and the upper left side of the bottom plate 11 is provided with a lifting assembly 21;

[0032] The abutment plate 3 is fixedly connected to the telescopic end of the lifting assembly 21; the specific lifting assembly 21 includes a cylinder 211, the cylinder 211 is fixedly installed on the upper left part of the base plate 11, and the telescopic end of the cylinder 211 is fixedly installed with a mounting block 212, the upper side of the mounting block 212 is fixedly connected to the bottom of the abutment plate 3, and the cylinder 211 is electrically connected to the controller 61.

[0033] During use, the staff can control the telescopic end of the cylinder 211 to move up and down through the controller 61, and then control the abutment plate 3 to move up and down. When the non-woven bags need to be stored, the bottom plate 11 is moved to the conveyor belt discharge end of the printing machine 1, and the position of the abutment plate 3 is kept in contact with the conveyor belt. A receiving cavity is formed between the abutment plate 3 and the two connecting plates 4 and the blocking plate 431. After printing, the non-woven bags can be directly dropped into the receiving cavity. The area of ​​the receiving cavity matches the area of ​​the non-woven bags. After the non-woven bags fall in, they can be stacked, and the stacking is neat and orderly, which is convenient for subsequent processing and does not require manual sorting by staff.

[0034] The connecting plate 4 is provided with two pieces, and the two connecting plates 4 are respectively slidably assembled on the right side of the abutting plate 3. A position adjustment component 41 is provided between the two connecting plates 4 and the abutting plate 3; the specific position adjustment component 41 includes a U-shaped connecting rod 411, a through slot 412 is opened on the front side of the abutting plate 3, and an assembly block 413 is fixedly installed in the center of the through slot 412. One end of the U-shaped connecting rod 411 is fixedly connected to one side of the connecting plate 4, and the other end of the U-shaped connecting rod 411 extends into the through slot 412 and is fixedly installed with a displacement block 414, which is slidably connected to the through slot 412;

[0035] A circular hole 415 is provided in the middle of the front side of the assembly block 413, and a bidirectional threaded rod 416 is rotatably assembled inside the circular hole 415. The front and rear ends of the bidirectional threaded rod 416 extend out of the through slot 412 and a screw block 417 is fixedly installed on the end face. The front displacement block 414 is threadedly connected to the forward-rotating thread section of the bidirectional threaded rod 416, and the rear displacement block 414 is threadedly connected to the reverse-rotating thread section of the bidirectional threaded rod 416.

[0036] In the initial state, the two connecting plates 4 can be adjusted to move closer to or away from each other according to the length of the non-woven bags to be stored. When adjusting, it is only necessary to rotate the screw block 417, and the screw block 417 drives the bidirectional threaded rod 416 to rotate. Since the two displacement blocks 414 are respectively threadedly connected to the forward-rotating thread segment and the reverse-rotating thread segment of the bidirectional threaded rod 416, the rotation of the bidirectional threaded rod 416 can drive the two displacement blocks 414 to move closer to or away from each other, and then the two U-shaped connecting rods 411 drive the two connecting plates 4 to move closer to or away from each other. When the two connecting plates 4 move away from or closer to each other, they can drive the two L-shaped assembly plates 434 to slide inside the two connecting grooves 433, which is simple and convenient to adjust.

[0037] A sliding groove 42 is provided on the right side of the two abutting plates 3, and a telescopic blocking mechanism 43 is connected to the inside of the two sliding grooves 42;

[0038] The telescopic blocking mechanism 43 includes a blocking plate 431, which is located on the right side of the two connecting plates 4. Connecting grooves 433 are provided on the front and rear sides of the blocking plate 431. An L-shaped assembly plate 434 is slidably assembled between the corresponding sliding grooves 42 and the connecting grooves 433. A locking component 435 is provided between the front L-shaped assembly plate 434 and the connecting plate 4; the specific locking component 435 includes a threaded rod, and a plurality of connecting holes 436 are arranged horizontally on the front side of the front L-shaped assembly plate 434, and a threaded hole 437 is provided on the front side of the front connecting plate 4. The threaded rod is threadedly connected to the inside of the threaded hole 437, and one end of the threaded rod extends into one of the connecting holes 436. A round block 438 is fixedly installed at the front end of the threaded rod.

[0039] In the initial state, the threaded rod locks and limits the front L-shaped assembly plate 434, and the front L-shaped assembly plate 434 cannot move with the movement of the blocking plate 431. When it is necessary to adjust the movement of the blocking plate 413 to adapt to non-woven bags of different widths, the staff rotates the threaded rod to withdraw the threaded rod from the connection with the connecting hole 436, and then the blocking plate 413 can be pulled to move. During adjustment, the two L-shaped assembly plates 434 will slide respectively inside the two slide grooves 42. After the adjustment is completed, the threaded rod can be used again for limiting.

[0040] The conveying mechanism 6 is fixedly installed on the upper side of the lifting mechanism 2. A support plate 601 is provided on the front upper side of the base plate 11. A controller 61 is provided on the front side of the support plate 601. The lifting mechanism 2, the lifting assembly 21 and the conveying mechanism 6 are all electrically connected to the controller 61.

[0041] The specific conveying mechanism 6 includes a U-shaped assembly plate 62, and a plurality of transmission rollers are rotatably assembled inside the U-shaped assembly plate 62. The plurality of transmission rollers are jointly driven by a conveyor belt 63. A motor 64 is provided on one side of the U-shaped assembly plate 62. The output shaft of the motor 64 is connected to one of the transmission rollers, and the motor 64 is electrically connected to the controller 61.

[0042] In the initial state, the upper side of the conveyor belt 63 abuts against the two connecting plates 4, the blocking plate 431 and the bottom of the abutment plate 3. After the non-woven bags are stored, the non-woven bags will be located above the conveyor belt 63. When a certain height is accumulated, the staff controls the lifting mechanism 2 to descend, so that the overlapping non-woven bags are separated from the receiving cavity formed by the abutment plate 3 and the two connecting plates 4 and the blocking plate 431. Then the motor 64 is controlled to start, and the stacked non-woven bags are conveyed to be misaligned with the receiving cavity. Then the conveyor belt 63 can be controlled to rise again. Various overlapping non-woven bags can be taken away for processing without having to be sorted again, which can effectively improve the work efficiency of the staff.

[0043] The lifting mechanism 2 includes four electric telescopic columns 201, which are arranged in a rectangular shape and assembled at the bottom of the U-shaped assembly plate 62. The lower ends of the four electric telescopic columns 201 are fixedly connected to the upper side of the base plate 11, and the four electric telescopic columns 201 are electrically connected to the controller 61. When in use, the controller 61 can synchronously control the extension and retraction of the four electric telescopic columns 201, and then adjust the position of the conveyor belt 63, which is simple and convenient to use.

[0044] The device is used as follows:

[0045] In the initial state, the abutting plate 3, the two connecting plates 4 and the blocking plate 431 form a receiving cavity. Figure 1As shown, the abutment plate 3 is moved to a position corresponding to the position of the discharge end of the conveyor belt of the printing press, and the area of ​​the receiving chamber is adjusted according to the area of ​​the non-woven bag. When adjusting, the screw block 417 is rotated first, so that the screw block 417 drives the bidirectional threaded rod 416 to rotate, and the bidirectional threaded rod 416 can drive the two displacement blocks 414 to move closer to and away from each other, and then adjust the length of the receiving chamber. When changing the width, release the limit of the locking component 435 on the L-shaped assembly plate 434, and then pull the blocking plate 431 to the appropriate position. After the adjustment is completed, the printed non-woven bag will fall directly into the receiving chamber. The areas of the woven bags match each other, so after the non-woven bags are stacked, the two connecting plates 4, the blocking plate 431 and the abutting plate 3 can limit the non-woven bags so that the accumulated non-woven bags can be kept neat. After accumulating to a certain height, the printing machine 1 is stopped and the transmission belt 63 is lowered. Finally, the conveyor belt 63 can convey the accumulated non-woven bags out of the receiving chamber. Finally, the conveyor belt 63 is reset again through the lifting mechanism 2 to carry out the next round of material collection. The staff can directly take the stacked non-woven bags without the need for subsequent sorting. The operation is simple and convenient, which can effectively improve the work efficiency of the staff.

[0046] The above embodiments are merely illustrative of the principles and effects of the present invention and are not intended to limit the present invention. Anyone skilled in the art may modify or alter the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or alterations made by persons skilled in the art without departing from the spirit and technical principles disclosed herein shall be covered by the claims of the present invention.

Claims

1. A material receiving device for digital printing, comprising a printing press (1), characterized in that: Also includes A bottom plate (11), the bottom plate (11) corresponds to the discharge end of the conveyor belt of the printing press (1), a lifting mechanism (2) is provided on the right side of the bottom plate (11), and a lifting component (21) is provided on the upper left side of the bottom plate (11); an abutment plate (3), the abutment plate (3) being fixedly connected to the telescopic end of the lifting assembly (21); Two connecting plates (4) are provided. The two connecting plates (4) are respectively slidably assembled on the right side of the abutting plate (3). Position adjustment components (41) are provided between the two connecting plates (4) and the abutting plate (3). Slide grooves (42) are provided on the right side of the two abutting plates (3). The two slide grooves (42) are commonly connected to a telescopic blocking mechanism (43). The telescopic blocking mechanism (43) includes a blocking plate (431), the blocking plate (431) is located on the right side of the two connecting plates (4), and connecting grooves (433) are provided on both the front and rear sides of the blocking plate (431). An L-shaped assembly plate (434) is slidably assembled between the corresponding sliding grooves (42) and the connecting grooves (433), and a locking assembly (435) is provided between the front L-shaped assembly plate (434) and the connecting plate (4); A conveying mechanism (6) is fixedly mounted on the upper side of the lifting mechanism (2); a support plate (601) is provided on the front upper side of the bottom plate (11); a controller (61) is provided on the front side of the support plate (601); and the lifting mechanism (2), the lifting assembly (21) and the conveying mechanism (6) are all electrically connected to the controller (61).

2. The digital printing receiving device according to claim 1, characterized in that: The position adjustment assembly (41) includes a U-shaped connecting rod (411), a through slot (412) is provided on the front side of the abutment plate (3), an assembly block (413) is fixedly installed in the center of the through slot (412), one end of the U-shaped connecting rod (411) is fixedly connected to one side of the connecting plate (4), and the other end of the U-shaped connecting rod (411) extends into the through slot (412) and is fixedly installed with a displacement block (414), and the displacement block (414) is slidably connected to the through slot (412); A circular hole (415) is provided in the middle of the front side of the assembly block (413), and a bidirectional threaded rod (416) is rotatably assembled inside the circular hole (415). The front and rear ends of the bidirectional threaded rod (416) extend out of the through slot (412) and a screw block (417) is fixedly installed on the end face. The front displacement block (414) is threadedly connected to the forward-rotating thread section of the bidirectional threaded rod (416), and the rear displacement block (414) is threadedly connected to the reverse-rotating thread section of the bidirectional threaded rod (416).

3. The digital printing receiving device according to claim 1, characterized in that: The lifting assembly (21) includes a cylinder (211), the cylinder (211) is fixedly mounted on the upper left portion of the base plate (11), a mounting block (212) is fixedly mounted on the telescopic end of the cylinder (211), the upper side of the mounting block (212) is fixedly connected to the bottom of the abutment plate (3), and the cylinder (211) is electrically connected to the controller (61).

4. The digital printing receiving device according to claim 1, characterized in that: The transmission mechanism (6) includes a U-shaped assembly plate (62), a plurality of transmission rollers are rotatably mounted inside the U-shaped assembly plate (62), and a transmission belt (63) is assembled with the plurality of transmission rollers for common transmission. A motor (64) is provided on one side of the U-shaped assembly plate (62), an output shaft of the motor (64) is transmission-connected to one of the transmission rollers, and the motor (64) is electrically connected to a controller (61).

5. The digital printing receiving device according to claim 4, characterized in that: The lifting mechanism (2) comprises four electric telescopic columns (201), which are arranged in a rectangular shape and assembled at the bottom of a U-shaped assembly plate (62). The lower ends of the four electric telescopic columns (201) are fixedly connected to the upper side of the base plate (11), and the four electric telescopic columns (201) are electrically connected to a controller (61).

6. The digital printing material receiving device according to claim 1, characterized in that: The locking assembly (435) includes a threaded rod, a plurality of connecting holes (436) are arranged in a transverse arrangement on the front side of the front L-shaped assembly plate (434), a threaded hole (437) is provided on the front side of the front connecting plate (4), the threaded rod is threadedly connected to the inside of the threaded hole (437), one end of the threaded rod extends into one of the connecting holes (436), and a round block (438) is fixedly installed at the front end of the threaded rod.