Paper card punching window paper packaging equipment

By designing a paper-based card-punching window packaging device, and utilizing components such as conveyor belts, stacking components, pushing components, and pressing components, the device achieves automated stacking and packaging of card-punching window paper, solving the problem of insufficient automation in existing technologies and improving work efficiency.

CN223865198UActive Publication Date: 2026-02-03HANGZHOU YOUJIU CULTURE MEDIA CO LTD
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Patent Information

Application Number
CN202423040560.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2026-02-03
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

In existing technologies, stacked card-printing sheets are difficult to automatically enter packaging bags, resulting in low work efficiency and insufficient automation.

Method used

A paper card window packaging device was designed, including a conveyor belt, a stacking component, a pushing component, a pressing component, and a packaging component. The paper is fed by the conveyor belt, stacked neatly, and then pushed into the packaging component by the pushing component. The pressing component gradually presses the paper, and the packaging bag is adsorbed by suction cups and negative pressure cover to achieve automated stacking and packaging.

Benefits of technology

It enables automated stacking and packaging of punch card window paper, reducing manual operation, improving work efficiency, and ensuring that punch card window paper can be smoothly put into packaging bags.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of paper card punching window paper production, and discloses packaging equipment for paper card punching window paper, which comprises an operation workbench, a conveying belt is arranged above one end of the operation workbench, and a stacking assembly is arranged on the operation workbench. A packaging assembly is arranged on one side of the stacking assembly. A pushing assembly is arranged on the side, away from the packaging assembly, of the stacking assembly. A pressing assembly is arranged between the stacking assembly and the packaging assembly. To-be-packaged punching window paper is conveyed into the stacking assembly one by one through the conveying belt, after the multiple punching window paper is stacked in order through the stacking assembly, the punching window paper stacked in order is moved towards the packaging assembly through the pushing assembly, the punching window paper stacked in order is pressed more and more tightly through the pressing assembly, gaps between the punching window paper are reduced, and the packaging efficiency of the punching window paper is improved. When the card punching window paper moves into the packaging assembly, the packaging assembly carries out packaging; stacking and packaging of punching window paper are automatically completed, and manual operation is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of paper card window production, specifically to a paper card window packaging device. Background Technology

[0002] Paper-based photo-taking window paper is a type of paper used for taking photos and checking in. It is usually thick and sturdy, and not easily bent.

[0003] After the card-punch window paper is produced, it needs to be packaged in a fixed quantity. First, a certain number of card-punch window papers are stacked using a stacking device, and then the neatly stacked card-punch window papers are transported to a packaging machine for packaging.

[0004] However, stacked card-taking sheets usually require workers to put them into a packaging machine for packaging, which is inefficient and has a low degree of automation. Moreover, there are gaps between the stacked card-taking sheets, so the horizontal height of the stacked card-taking sheets is higher than the height of the packaging bag without external force. If they are packaged directly, it is difficult for the stacked card-taking sheets to be put directly into the packaging bag. Utility Model Content

[0005] The purpose of this utility model is to provide a paper card packaging device for cardboard punching, and to solve the following technical problems:

[0006] How to automatically insert stacked card-printing sheets into packaging bags.

[0007] The objective of this utility model can be achieved through the following technical solutions:

[0008] A paper-based card-printing window paper packaging device includes an operating workbench; a conveyor belt is installed above one end of the operating workbench.

[0009] The operating workbench is equipped with a stacking component; the stacking component is used to automatically and neatly stack multiple card-punching window sheets.

[0010] A packing component is provided on one side of the stacking component; the packing component is used to pack the neatly stacked cardboard windows.

[0011] A pushing component is provided on the side of the stacking component away from the packaging component; the pushing component is used to push the neatly stacked card-taking window paper on the stacking component into the packaging component;

[0012] A clamping component is provided between the stacking component and the packaging component; the clamping component is used to gradually clamp the multiple card-punching window sheets during the process of the push component pushing the neatly stacked card-punching window sheets to the packaging component.

[0013] As a further embodiment of this utility model: the packaging component includes

[0014] A synchronization worktable is disposed on the side of the clamping assembly away from the stacking assembly;

[0015] Multiple synchronous operation tables are slidably arranged at equal intervals on a synchronous workbench; one of the synchronous operation tables is in contact with the operation workbench.

[0016] The first cylinder is fixedly connected above the side of the clamping assembly away from the stacking assembly;

[0017] Multiple suction cups are fixedly connected to the output end of the first cylinder; the first cylinder and the multiple suction cups are located above a synchronous operating table that is in contact with the operating worktable.

[0018] A negative pressure hood is located above a synchronous operating table that is in contact with the operating workbench, and the synchronous operating table has a cavity inside; the negative pressure hood is located inside the cavity of the synchronous operating table.

[0019] Negative pressure holes are evenly distributed on the synchronous operation table and are connected to the negative pressure cover.

[0020] As a further embodiment of this utility model: the push component includes

[0021] The second cylinder is mounted on the operating worktable and is located on the side of the stacked assembly away from the clamping assembly.

[0022] A fixing plate is fixedly connected to the second cylinder and is located on the side of the second cylinder closer to the stacked assembly;

[0023] The first push plate is fixedly connected to the output end of the second cylinder and is located on the side of the fixed plate away from the second cylinder;

[0024] Push plate number two is slidably connected to push plate number one.

[0025] As a further embodiment of this utility model: the clamping assembly includes a clamping plate, which is disposed on the operating workbench and located on the side of the stacking assembly away from the second cylinder; the horizontal height of the end of the clamping plate near the stacking assembly is higher than that of the other end of the clamping plate;

[0026] As a further embodiment of this utility model: the clamping assembly further includes a first groove, which is formed on the operating worktable and located below the clamping plate;

[0027] As a further embodiment of this utility model: the stacking assembly includes

[0028] The motor is fixedly connected to the mounting plate;

[0029] Multiple second grooves are formed on the operating worktable;

[0030] Multiple L-shaped stacked plates, each L-shaped stacked plate corresponding to a second groove, with one end of each L-shaped stacked plate located inside the second groove;

[0031] A rotating shaft is fixedly connected to the output end of a motor; the rotating shaft passes through the operating workbench and is fixedly connected to multiple L-shaped stacked plates.

[0032] The beneficial effects of this utility model are:

[0033] (1) The card-punch paper to be packaged is sent to the stacking component one by one by the conveyor belt. After the stacking component stacks multiple card-punch papers neatly, the pushing component moves the neatly stacked card-punch papers toward the packaging component. As the pushing component moves the card-punch papers closer to the packaging component, the pressing component presses the neatly stacked card-punch papers tighter and tighter to reduce the gaps between the card-punch papers. When the card-punch papers move into the packaging component, the packaging component packages the neatly stacked card-punch papers together. This realizes the automatic completion of stacking and packaging of card-punch papers, reducing manual operation.

[0034] (2) By starting the second cylinder, the output end of the second cylinder drives the first push plate and the second push plate to move toward the synchronous operation table of the packaging station. The horizontal height of the end of the pressing plate near the stacked components is higher than the horizontal height of the second push plate. As the second push plate continues to move toward the synchronous operation table of the packaging station, the pressing plate contacts the second push plate and presses the second push plate downward. The lower end of the second push plate gradually enters the first groove, so that the second push plate pushes the neatly stacked card window paper into the packaging bag. Attached Figure Description

[0035] The present invention will be further described below with reference to the accompanying drawings.

[0036] Figure 1 This is a schematic diagram of the main structure of one embodiment of the present utility model;

[0037] Figure 2 This is an exploded view of a packaging component part of one embodiment of the present invention;

[0038] Figure 3 This is a schematic diagram of the operating workbench structure according to an embodiment of the present invention;

[0039] Figure 4 This is a cross-sectional view of the operating workbench structure according to an embodiment of the present invention;

[0040] Figure 5 This is a schematic diagram of the push component structure according to one embodiment of the present invention;

[0041] Figure 6 This is a schematic diagram of a part of the stacked component structure according to an embodiment of the present invention.

[0042] Figure descriptions: 1. Operating workbench; 2. Conveyor belt; 3. Stacking assembly; 31. Motor; 32. Second groove; 33. L-shaped stacking plate; 34. Rotating shaft; 4. Packaging assembly; 41. Synchronous workbench; 42. Synchronous operating table; 43. First cylinder; 44. Suction cup; 45. Negative pressure cover; 46. Negative pressure hole; 5. Pushing assembly; 51. Second cylinder; 52. Fixing plate; 53. First pushing plate; 54. Second pushing plate; 6. Pressing assembly; 61. Pressing plate; 62. First groove. Detailed Implementation

[0043] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0044] Please see Figure 1 As shown, this utility model is a paper card window paper packaging device, including an operating workbench 1; a conveyor belt 2 is provided above one end of the operating workbench 1;

[0045] The operating workbench 1 is equipped with a stacking component 3; the stacking component 3 is used to automatically and neatly stack multiple card-printing window papers.

[0046] A packing component 4 is provided on one side of the stacking component 3; the packing component 4 is used to pack the neatly stacked cardboard windows.

[0047] A pushing component 5 is provided on the side of the stacking component 3 away from the packaging component 4; the pushing component 5 is used to push the neatly stacked card-punching window paper on the stacking component 3 into the packaging component 4.

[0048] A clamping component 6 is provided between the stacking component 3 and the packaging component 4; the clamping component 6 is used to gradually clamp multiple card-punching window sheets during the process of the pushing component 5 pushing the neatly stacked card-punching window sheets to the packaging component 4.

[0049] To automatically stack and package the card-scanning forms on conveyor belt 2, the conveyor belt 2 delivers the card-scanning forms one by one to the stacking component 3. A counter is installed on conveyor belt 2, set to handle n card-scanning forms stacked at a time. Once n card-scanning forms have fallen into stacking component 3, conveyor belt 2 stops operating. After stacking component 3 neatly stacks the n card-scanning forms, pushing component 5 moves the stacked forms towards packaging component 4. As pushing component 5 brings the forms closer to packaging component 4, pressing component 6 presses the stacked forms tighter, reducing gaps between them. When the forms reach packaging component 4, it packages the stacked forms together. This achieves automatic stacking and packaging of card-scanning forms, reducing manual operation.

[0050] As one embodiment of this utility model, please refer to Figures 2-4 As shown, the packaging component 4 includes

[0051] Synchronous worktable 41, wherein the synchronous worktable 41 is disposed on the side of the clamping assembly 6 away from the stacking assembly 3;

[0052] Multiple synchronous operation tables 42 are slidably arranged on a synchronous worktable 41 at equal intervals; one of the synchronous operation tables 42 is in contact with the worktable 1.

[0053] The first cylinder 43 is fixedly connected to the upper side of the pressing assembly 6 away from the stacking assembly 3;

[0054] Multiple suction cups 44 are fixedly connected to the output end of the first cylinder 43; the first cylinder 43 and the multiple suction cups 44 are located above the synchronous operating table 42 that is in contact with the operating worktable 1.

[0055] A negative pressure cover 45 is located above a synchronous operating table 42 that is in contact with the operating workbench 1. The synchronous workbench 41 has a cavity inside; and the negative pressure cover 45 is located inside the cavity of the synchronous workbench 41.

[0056] Negative pressure holes 46 are evenly distributed on the synchronous operation table 42 and are connected to the negative pressure cover 45.

[0057] To smoothly insert the stacked card-printed window paper into the packaging bag, the packaging bag is first laid flat on one of the synchronous operating tables 42. The synchronous worktable 41 is started, and the synchronous operating table 42, which is attached to the operating worktable 1, is the packaging station. When the synchronous worktable moves the flat packaging bag to the packaging station through the synchronous operating table 42, the opening of the packaging bag faces the direction of the pressing component 6. The vacuum pump on the negative pressure hood 45 is started, and the negative pressure hood 45 uses the negative pressure hole 46 to adsorb the lower layer of the flat packaging bag onto the synchronous operating table 42. The first cylinder 43 is started, because the suction cup 44 is located at the punching... The synchronous operating table 42 at the packaging station is located near one end of the pressing component 6. The first cylinder 43 drives multiple suction cups 44 downwards, which contact and adhere to the upper layer of the packaging bag. The first cylinder 43 then drives the suction cups 44 and the upper layer of the packaging bag upwards, opening the packaging bag. The pushing component 5 moves the neatly stacked card-printing sheets towards the opening of the packaging bag. As it passes the pressing component 6, the stacked card-printing sheets are pressed together, ensuring the height of the card-printing sheets is lower than the opening height of the packaging bag. This allows the pushing component 5 to smoothly push the stacked card-printing sheets into the packaging bag.

[0058] Please see Figures 3-5 As shown, the push component 5 includes

[0059] The second cylinder 51 is disposed on the operating workbench 1 and is located on the side of the stacking assembly 3 away from the pressing assembly 6.

[0060] The fixing plate 52 is fixedly connected to the second cylinder 51 and is located on the side of the second cylinder 51 closer to the stacking assembly 3;

[0061] The first push plate 53 is fixedly connected to the output end of the second cylinder 51 and is located on the side of the fixed plate 52 away from the second cylinder 51.

[0062] Push plate 54 is slidably connected to push plate 53;

[0063] By activating the second cylinder 51, the output end of the second cylinder 51 drives the first push plate 53 and the second push plate 54 to move toward the synchronous operating table 42 of the packaging station. When passing the pressing component 6, the pressing component 6 contacts the second push plate 54 and presses the second push plate 54 downward. A slide rail and spring are provided between the first push plate 53 and the second push plate 54 so that the second push plate 54 can pass smoothly through the pressing component 6 and push the neatly stacked card window paper into the packaging bag.

[0064] Please see Figures 3-4 As shown, the clamping assembly 6 includes

[0065] A clamping plate 61 is disposed on the operating workbench 1 and located on the side of the stacking assembly 3 away from the second cylinder 51; the horizontal height of the end of the clamping plate 61 closest to the stacking assembly 3 is higher than that of the other end of the clamping plate 61.

[0066] The first groove 62 is formed on the operating workbench 1 and is located below the clamping plate 61;

[0067] By activating the second cylinder 51, the output end of the second cylinder 51 drives the first push plate 53 and the second push plate 54 to move toward the synchronous operating table 42 of the packaging station. The horizontal height of the end of the pressing plate 61 near the stacking assembly 3 is higher than the horizontal height of the second push plate 54. As the second push plate 54 continues to move toward the synchronous operating table 42 of the packaging station, the pressing plate 61 contacts the second push plate 54 and presses the second push plate 54 downward. The lower end of the second push plate 54 gradually enters the first groove 62, so that the second push plate 54 pushes the neatly stacked card window paper into the packaging bag.

[0068] Please see Figure 3 , Figure 4 and Figure 6 As shown, the stacking component 3 includes

[0069] Motor 31 is fixedly connected to the fixed plate 52, and the motor 31 is located above the end of the operating workbench 1 away from the conveyor belt 2;

[0070] Multiple second grooves 32 are formed on the operating workbench 1, and the second grooves 32 are located between the clamping plate 61 and the fixing plate 52;

[0071] Multiple L-shaped stacked plates 33, each L-shaped stacked plate 33 corresponding to a second groove 32, with one end of each L-shaped stacked plate 33 located within the second groove 32;

[0072] A rotating shaft 34 is fixedly connected to the output end of a motor 31; the rotating shaft 34 passes through the operating workbench 1 and is fixedly connected to multiple L-shaped stacked plates 33;

[0073] By starting the motor 31, the output end of the motor 31 drives the rotating shaft 34 to rotate, causing one end of the L-shaped stacking plate 33 located in the second groove 32 to move to one side of the conveyor belt 2. Under the action of gravity, the card-printing paper on the conveyor belt 2 slides down to the end of the L-shaped stacking plate 33 near the conveyor belt 2. The other end of the L-shaped stacking plate 33 limits the card-printing paper within the L-shaped stacking plate 33. When n card-printing papers on the conveyor belt 2 fall into the L-shaped stacking plate 33, the card-printing papers are neatly stacked within the L-shaped stacking plate 33. Then, the motor 31 is started, and the motor 31 drives the end of the L-shaped stacking plate 33 near the conveyor belt 2 back to the second groove 32. The card-printing papers are neatly placed on the operating workbench 1, which facilitates the pushing of materials by the first push plate 53 and the second push plate 54.

[0074] The working principle of this utility model:

[0075] By starting motor 31, the output end of motor 31 drives the rotating shaft 34 to rotate, causing one end of the L-shaped stacking plate 33 located in the second groove 32 to move to one side of the conveyor belt 2. This causes the card-printing sheets on the conveyor belt 2 to slide down onto the L-shaped stacking plate 33 near the conveyor belt 2 under gravity. The other end of the L-shaped stacking plate 33 confines the card-printing sheets within it. When n card-printing sheets fall into the L-shaped stacking plate 33, the sheets are neatly stacked within the plate. The motor is then started. 31. Motor 31 drives the L-shaped stacking plate 33, with one end near the conveyor belt 2, back into the second groove 32. The cardboard is neatly placed on the operating workbench 1. The synchronous workbench 41 is started, and the synchronous operating table 42, which is attached to the operating workbench 1, is the packaging station. When the synchronous workbench moves the flat packaging bag to the packaging station through the synchronous operating table 42, the bag opening faces the pressing plate 61. The vacuum pump on the negative pressure hood 45 is started, and the negative pressure hood 45 sucks up the lower layer of the flat packaging bag through the negative pressure hole 46. On the synchronous operating table 42, the first cylinder 43 is activated. Since the suction cups 44 are located at the end of the synchronous operating table 42 near the pressing plate 61 at the packaging station, the first cylinder 43 drives multiple suction cups 44 to move downwards. The multiple suction cups 44 contact and adhere to the upper layer of the packaging bag. The first cylinder 43 drives the suction cups 44 and the upper layer of the packaging bag to move upwards, thus opening the packaging bag. At the same time, the second cylinder 51 is activated. The output end of the second cylinder 51 drives the first push plate 53 and the second push plate 54 toward the synchronous operating table at the packaging station. 42. The pressure plate 61 moves closer to the stacking assembly 3 at a horizontal height higher than the second push plate 54. As the second push plate 54 continues to move toward the synchronous operation table 42 of the packaging station, the pressure plate 61 contacts the second push plate 54 and presses the second push plate 54 downward. The lower end of the second push plate 54 gradually enters the first groove 62, so that the second push plate 54 pushes the neatly stacked card window paper into the packaging bag, realizing the automatic completion of the stacking and packaging of the card window paper and reducing manual operation.

[0076] The above description provides a detailed account of one embodiment of the present invention. However, this description is merely a preferred embodiment and should not be construed as limiting the scope of the present invention. All equivalent variations and improvements made within the scope of the claims of the present invention should still fall within the patent coverage of the present invention.

Claims

1. A paper card printing and packaging device, comprising an operating workbench (1); a conveyor belt (2) is provided above one end of the operating workbench (1), characterized in that, The operating workbench (1) is equipped with a stacking component (3); the stacking component (3) is used to automatically stack multiple card-printing window papers neatly. A packing component (4) is provided on one side of the stacking component (3); the packing component (4) is used to pack the neatly stacked cardboard windows. A pushing component (5) is provided on the side of the stacking component (3) away from the packaging component (4); the pushing component (5) is used to push the neatly stacked card-printing paper on the stacking component (3) into the packaging component (4); A clamping component (6) is provided between the stacking component (3) and the packaging component (4); the clamping component (6) is used to gradually clamp multiple card-punching windows during the process of the pushing component (5) pushing the neatly stacked card-punching windows to the packaging component (4).

2. The paper card printing and packaging equipment according to claim 1, characterized in that, The packaging component (4) includes A synchronization worktable (41) is disposed on the side of the clamping assembly (6) away from the stacking assembly (3); Multiple synchronous operation tables (42) are slidably arranged on a synchronous worktable (41) at equal intervals; one of the synchronous operation tables (42) is in contact with the operation worktable (1); The first cylinder (43) is fixedly connected above the clamping assembly (6) on the side away from the stacking assembly (3); Multiple suction cups (44) are fixedly connected to the output end of the first cylinder (43); the first cylinder (43) and the multiple suction cups (44) are located above the synchronous operating table (42) that is in contact with the operating worktable (1); A negative pressure cover (45) is located above a synchronous operating table (42) that is in contact with the operating workbench (1). The synchronous workbench (41) has a cavity inside. The negative pressure cover (45) is located inside the cavity of the synchronous workbench (41). Negative pressure holes (46) are evenly distributed on the synchronous operation table (42) and are connected to the negative pressure cover (45).

3. The paper card printing and packaging equipment according to claim 1, characterized in that, The push component (5) includes The second cylinder (51) is disposed on the operating table (1) and the second cylinder (51) is located on the side of the stacking assembly (3) away from the pressing assembly (6); A fixing plate (52) is fixedly connected to the second cylinder (51) and is located on the side of the second cylinder (51) near the stacking assembly (3); The first push plate (53) is fixedly connected to the output end of the second cylinder (51) and is located on the side of the fixed plate (52) away from the second cylinder (51); The second push plate (54) is slidably connected to the first push plate (53).

4. The paper card printing window paper packaging equipment according to claim 3, characterized in that, The clamping assembly (6) includes a clamping plate (61), which is disposed on the operating workbench (1) and located on the side of the stacking assembly (3) away from the second cylinder (51); the horizontal height of the end of the clamping plate (61) near the stacking assembly (3) is higher than that of the other end of the clamping plate (61).

5. A paper-based card-printing window paper packaging device according to claim 4, characterized in that, The clamping assembly (6) further includes a first groove (62), which is formed on the operating workbench (1) and located below the clamping plate (61).

6. The paper card printing and packaging equipment according to claim 5, characterized in that, The stacking component (3) includes The motor (31) is fixedly connected to the fixing plate (52); Multiple second grooves (32) are formed on the operating table (1); Multiple L-shaped stacked plates (33) are provided, each L-shaped stacked plate (33) corresponding to a second groove (32), with one end of each L-shaped stacked plate (33) located inside the second groove (32). A rotating shaft (34) is fixedly connected to the output end of a motor (31); the rotating shaft (34) passes through the operating workbench (1) and is fixedly connected to multiple L-shaped stacked plates (33).