Paper package same-number collecting device and die cutting equipment
By designing the same number collection device for paper packaging, and using the corresponding settings of the collection position and the collection position, efficient same number collection of paper packaging after web paper die-cut is achieved, solving the problem of poor paper stacking consistency and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202311862740.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-29
- Publication Date
- 2025-07-01
AI Technical Summary
In the prior art, after the web paper die cutting, the smoke mark position of the paper packaging has a deviation, resulting in poor consistency of paper palletization and affecting subsequent processing.
A paper packaging same number collection device is designed, including a first conveying component, a transfer component and a storage component. Through the corresponding settings of the collection position and the collection position, the collection and stacking of the same number paper packaging is realized, ensuring that there is only one specification of paper packaging in the paper stacking.
It improves the working efficiency of paper packaging collection, ensures the consistency of paper packaging, reduces production costs, and simplifies the processing process of subsequent processes.
Smart Images

Figure CN120229596A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of die cutting, and particularly relates to a paper packaging same-number collection device and a die cutting device. Background Art
[0002] The web-fed die cutter feeds the web, and after die cutting, through processes such as waste removal, inspection, and defective product rejection, it is collected into a paper bale stack. However, due to reasons such as the web paper tension and the manufacturing accuracy of the die cutting plate, there are deviations in the positions of the small web products of the large web integral product after die cutting processing, and the consistency of the paper bale stack is poor after centralized collection of cigarette packs, affecting the processing of subsequent processes.
[0003] The existing methods for collecting paper packaging into stacks are as follows: First, the large web integral product is automatically collected, and after manual decomposition, it is collected and stacked, aligning the four sides of the paper bale stack. This has low work efficiency and increases production costs; Second, mixed-number collection, where the paper packaging at various positions on the large web integral product is collected uniformly. This will result in different specifications of paper packaging in the collected paper bale stack due to possible differences in size or shape of the paper packaging at different positions on the integral product. Summary of the Invention
[0004] In view of this, the present invention aims to provide a paper packaging same-number collection device and a die cutting device in order to solve at least one of the above partial technical problems.
[0005] To achieve the above object, the technical solution of the present invention is realized as follows:
[0006] The first aspect of the present invention provides a paper packaging same-number collection device, including:
[0007] A first conveying component configured to move the paper packaging to the acquisition position;
[0008] A transfer component configured to move the paper packaging at the acquisition position to the collection position and release the paper packaging;
[0009] A storage component, in which a collection slot is provided. The collection slot is located below the acquisition position and is used to collect the paper packaging released by the transfer component, and the paper packaging is stacked to form a paper bale stack.
[0010] Furthermore,
[0011] The number of the acquisition positions is two or more, and the number of the collection slots is two or more. Each collection slot corresponds to one or more acquisition positions;
[0012] The paper packaging at the same acquisition position falls into the same collection slot;
[0013] The collection device further includes:
[0014] A stack collecting component, which is configured to move the paper bale stack collected in the collecting tank to the working position of the second conveying component;
[0015] A second conveying component, which is configured to move the paper bale stack to the discharging component.
[0016] Further, the transfer component includes a negative pressure pipe, the negative pressure pipe is rotationally connected to the same-numbered paper package collecting device, a negative pressure chamber is provided in the negative pressure pipe, and a suction cup is provided outside the negative pressure pipe;
[0017] When the suction cup is at the collection position, the suction cup is in a negative pressure state;
[0018] When the suction cup is at the collection position, the suction cup is in a non-negative pressure state.
[0019] Further, a positive pressure chamber is also provided in the negative pressure pipe. When the suction cup is at the collection position, the suction cup is communicated with the negative pressure chamber and the suction cup is in a negative pressure state
[0020] When the suction cup is at the collection position, the suction cup is communicated with the positive pressure chamber and the suction cup is in a positive pressure state.
[0021] Further, the storage component includes two alignment modules, each alignment module includes two correspondingly arranged alignment plate groups, and a collection tank is formed between the four alignment plate groups;
[0022] The alignment plate group is correspondingly provided with a driving component for driving the alignment plate group to move.
[0023] Further, the alignment plate group includes a plurality of alignment side plates, and there is a gap between adjacent alignment side plates;
[0024] One end of the alignment side plate close to the transfer component is bent towards the end away from the collection tank to form a guide plate;
[0025] The collecting device further includes a stack collecting component, the stack collecting component is a strip plate, and the strip plate corresponds to the gap position between adjacent alignment side plates;
[0026] The strip plate is correspondingly provided with a driving component for driving the strip plate to move up and down.
[0027] Further, the collecting device further includes a second conveying component, the second conveying component includes a plurality of conveyor belts, there is a gap between adjacent conveyor belts, and the strip plate corresponds to the gap position between adjacent conveyor belts.
[0028] The second aspect of the present invention provides a paper packaging die-cutting device, including:
[0029] A web feeding device, which is configured to install a paper roll and release the web of the paper roll;
[0030] A flat-bed die-cutting device, which is configured to receive a web released by a web feeding device and cut the web into paper packages;
[0031] A waste removing device, which is configured to remove the scraps generated by the flat-bed die-cutting device cutting the web and output the paper packages;
[0032] A transition device, which is configured to receive the paper packages output by the waste removing device and adjust the paper packages to a state of being arranged at equal intervals;
[0033] A collecting device, which is configured to receive the paper packages adjusted by the transition device and stack the paper packages into a stack of paper packages. The collecting device is the same-number paper package collecting device described in the first aspect.
[0034] The third aspect of the present invention provides a paper package collecting method applying the paper package same-number collecting device described in the first aspect, including the following steps:
[0035] S1. The first conveying component moves the paper packages to the collection position;
[0036] S2. The transfer component moves the paper packages at the collection position to the collection position and releases the paper packages;
[0037] S3. The storage component collects the paper packages released by the transfer component and stacks and aligns the paper packages to form a stack of paper packages;
[0038] S4. The paper stack collecting component moves the stack of paper packages collected in the collection tank to the working position of the second conveying component;
[0039] S5. The second conveying component moves the stack of paper packages to the discharging component.
[0040] Furthermore, the number of the collection positions is more than two, the number of the collection tanks is more than two, and each collection tank corresponds to one or more collection positions;
[0041] The paper packages located at the same collection position fall into the same collection tank;
[0042] When there are paper packages at more than two collection positions, the collection position simultaneously releases a plurality of paper packages and makes them fall into the corresponding collection tanks.
[0043] Compared with the prior art, the paper package same-number collecting device and die-cutting equipment described in the present invention have the following beneficial effects:
[0044] A paper packaging same-number collecting device according to the present invention, compared with the traditional manual collection of paper packaging to form a paper bale stack, moves the paper packaging on the first conveying component to the storage component through the transfer component, improving the working efficiency. The corresponding settings of the collection position and the collection position ensure that the paper packaging at the same position on the large sheet of integrated product enters a corresponding collection component, achieving the purpose of same-number collection and making only one specification of paper packaging in the paper bale stack. BRIEF DESCRIPTION OF THE DRAWINGS
[0045] The drawings constituting a part of the present invention are used to provide a further understanding of the present invention. The schematic embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation to the present invention. In the drawings:
[0046] Figure 1 is a schematic side view structure diagram of the paper packaging same-number collecting device according to an embodiment of the present invention;
[0047] Figure 2 is a schematic first cross-sectional structure diagram of the paper packaging same-number collecting device according to an embodiment of the present invention;
[0048] Figure 3 is a schematic second cross-sectional structure diagram of the paper packaging same-number collecting device according to an embodiment of the present invention;
[0049] Figure 4 is a schematic diagram of the working effect of the transition device according to an embodiment of the present invention;
[0050] Figure 5 is a schematic side view structure diagram of the paper packaging die-cutting equipment according to an embodiment of the present invention.
[0051] DESCRIPTION OF THE REFERENCE NUMERALS:
[0052] 1, web-fed paper feeding device; 2, flat-bed die-cutting device; 3, waste removing device; 4, transition device; 5, collecting device; 501, first conveying component; 502, transfer component; 503, storage component; 504, paper stack collecting component; 505, second conveying component; 506, paper packaging; 50201, negative pressure pipe; 50202, suction cup; 50301, alignment side plate. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0053] It should be noted that, without conflict, the embodiments in the present invention and the features in the embodiments can be combined with each other.
[0054] In the description of the present invention, it should be understood that the orientation or positional relationships indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present invention. In addition, the terms "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second", etc. may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, the meaning of "a plurality" is two or more.
[0055] In the description of the present invention, it should be noted that unless otherwise clearly specified and defined, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood through specific circumstances.
[0056] The present invention will be described in detail below with reference to the drawings and in conjunction with embodiments.
[0057] Embodiment 1:
[0058] As Figures 1 to 4 shown, a paper packaging same-number collection device includes:
[0059] A first conveying assembly 501 configured to move the paper packaging 506 to the collection position;
[0060] A transfer assembly 502 configured to move the paper packaging 506 at the collection position to the collection position and release the paper packaging 506;
[0061] A storage assembly 503, in which a collection groove is provided. The collection groove is located below the collection position and is used to collect the paper packaging 506 released by the transfer assembly 502, and the paper packaging 506 is stacked to form a paper bale stack.
[0062] In some embodiments, the first conveying assembly 501 is a suction belt conveying assembly. The working principle of the suction belt is to utilize the movement of the belt and the action of the suction device. The belt is composed of multiple layers of fabric and rubber and can move between two rollers. The suction device is usually installed below the belt and can generate negative pressure to suck up the materials.
[0063] In some other embodiments, the first conveying assembly 501 is a conveyor belt, and bonding materials are regularly arranged on the conveyor belt, and the bonding materials can repeatedly bond the paper packages 506.
[0064] In some embodiments, the collection position of the collection position is directly above, and in some other embodiments, the collection position is located on the side of the collection position.
[0065] The collection device 5 further includes:
[0066] A paper stack collection assembly 504, which is configured to move the paper package stack collected in the collection tank to the working position of the second conveying assembly 505;
[0067] A second conveying assembly 505, which is configured to move the paper package stack to the discharging assembly.
[0068] The second conveying assembly 505 can be a conveyor belt or a suction air belt conveying assembly.
[0069] The transfer assembly 502 includes a negative pressure tube 50201, and the negative pressure tube 50201 is rotatably connected to the collection device 5 of the same-number paper package 506. A negative pressure chamber is provided in the negative pressure tube 50201, and a suction cup 50202 is provided outside the negative pressure tube 50201; when the suction cup 50202 is at the collection position, the suction cup 50202 is in a negative pressure state. When the suction cup 50202 is at the collection position, the suction cup 50202 is in a non-negative pressure state.
[0070] In some embodiments, there is only one suction cup 50202 in the circumferential direction of the negative pressure tube 50201. After the suction cup 50202 sucks and tightens the paper package 506 and rotates 180° to the collection position, the negative pressure in the suction cup 50202 is released to release the paper package 506 into the collection tank.
[0071] In some other embodiments, a positive pressure chamber is further provided in the negative pressure tube 50201. When the suction cup 50202 is at the collection position, the suction cup 50202 is communicated with the negative pressure chamber, and the suction cup 50202 is in a negative pressure state. When the suction cup 50202 is at the collection position, the suction cup 50202 is communicated with the positive pressure chamber, and the suction cup 50202 is in a positive pressure state. There is only one suction cup 50202 in the circumferential direction of the negative pressure tube 50201. After the suction cup 50202 sucks and tightens the paper package 506 and rotates 180° to the collection position, the positive pressure gas in the suction cup 50202 quickly releases the paper package 506 into the collection tank.
[0072] In other real-time examples, the number of suction cups 50202 is multiple, and the multiple suction cups 50202 are circumferentially and uniformly arranged along the negative pressure pipe 50201; the number of negative pressure chambers is multiple, and each suction cup 50202 at a different position is correspondingly provided with a negative pressure chamber. When the suction cup 50202 is at the collection position, the suction cup 50202 is in a non-adsorbing state, and the paper package 506 enters the collection tank under the action of gravity or the blowing action of positive pressure gas.
[0073] In some embodiments, the storage assembly 503 includes two sets of alignment modules. Each alignment module includes two correspondingly arranged alignment plate groups, and a collection tank is formed between the four alignment plate groups; the alignment plate groups are correspondingly provided with a driving assembly for driving the movement of the alignment plate groups. The alignment plate group includes a plurality of alignment side plates 50301, and there is a gap between adjacent alignment side plates 50301; one end of the alignment side plate 50301 adjacent to the transfer assembly 502 is bent towards the end away from the collection tank to form a guide plate; the collection device 5 further includes a paper stack collection assembly 504. The paper stack collection assembly 504 is a strip-shaped plate, and the strip-shaped plate corresponds to the gap position between adjacent alignment side plates 50301; the strip-shaped plate is correspondingly provided with a driving assembly for driving the strip-shaped plate to move up and down. The collection device 5 further includes a second conveying assembly 505. The second conveying assembly 505 includes a plurality of conveyor belts, and there is a gap between adjacent conveyor belts, and the strip-shaped plate corresponds to the gap position between adjacent conveyor belts.
[0074] A collection tank is formed between the four alignment plate groups, and the strip-shaped plate forms the bottom of the collection tank. As the paper packages 506 are stacked in the storage tank to form a paper bale stack, as the thickness of the paper bale stack increases, the strip-shaped plate moves downward. When the thickness of the paper bale stack reaches the specified thickness, the strip-shaped plate moves downward to below the second conveying assembly 505. At this time, the paper bale stack is located on the second conveying assembly 505 and is conveyed to the discharging assembly by the second conveying assembly 505.
[0075] In other embodiments, the storage assembly 503 includes four alignment plates. Every two of the four alignment plates are correspondingly arranged to form a collection tank. The paper stack collection assembly 504 is a collection column with a cylindrical structure, and the collection column serves as the bottom of the collection tank. The second conveying assembly 505 includes a plurality of conveyor belts, and there is a gap between adjacent conveyor belts. The collection column corresponds to the gap position between adjacent conveyor belts. As the paper packages 506 are stacked in the storage tank to form a paper bale stack, as the thickness of the paper bale stack increases, the collection column moves downward. When the thickness of the paper bale stack reaches the specified thickness, the collection column moves downward to below the second conveying assembly 505. At this time, the paper bale stack is located on the second conveying assembly 505 and is conveyed to the discharging assembly by the second conveying assembly 505.
[0076] The number of collection positions is two or more, and the number of collection tanks is two or more. Each collection tank corresponds to one or more collection positions respectively;
[0077] Paper packages 506 located at the same collection position fall into the same collection troughs.
[0078] In some embodiments, the number of collection positions is the same as the number of collection troughs, and each collection trough corresponds to one collection position.
[0079] In other embodiments, the number of collection positions is more than the number of collection troughs, and each collection trough corresponds to one or more collection positions.
[0080] As Figure 1 shown, the number of storage components 503 is multiple. The multiple storage components 503 are divided into two groups of storage groups. Each group of storage groups has 18 storage components 503. Each storage component 503 is correspondingly provided with 3 suction cups 50202. Nine suction cups 50202 are installed on one negative pressure pipe 50201. Six negative pressure pipes 50201 are correspondingly provided for 18 storage components 503.
[0081] The two groups of storage components 503 collect alternately, enabling continuous collection of paper packages 506 without stopping the machine.
[0082] Working process:
[0083] When implementing this solution, a method for collecting paper packages includes the following steps:
[0084] S1. The air suction belt conveying component moves the paper package 506 to the collection position, and the collection position is directly above the storage trough of the storage component 503;
[0085] S2. Drive the negative pressure pipe 50201 to rotate. When the suction cup 50202 rotates to the position of the collection position, the suction force of the suction cup 50202 is greater than the suction force of the air suction belt conveying component, and the paper package 506 is tightly sucked by the suction cup 50202. The negative pressure pipe 50201 continues to rotate. When the paper package 506 aligns with the opening at the upper end of the collection trough, the suction cup 50202 releases negative pressure or is blown by positive pressure gas, and the paper package 506 detaches from the suction cup. The paper package 506 falls into the collection trough under the action of gravity or the blowing action of positive pressure gas;
[0086] The moving speed of the air suction belt conveying component is proportional to the linear speed of the rotation of the suction cup 50202, that is, when the suction cup 50202 rotates to the collection position, the next batch of paper packages 506 moves to the collection position.
[0087] S3. Under the guiding action of the guiding plate at the upper end of the alignment side plate 50301, the paper packages 506 sequentially fall into the collection troughs to form paper bales. The alignment plate group moves towards the center of the storage trough to complete the alignment operation of the paper bales;
[0088] S4. As the paper packages 506 are stacked in the storage groove to form a stack of paper packages, as the thickness of the stack of paper packages increases, the strip plate moves downward. When the thickness of the stack of paper packages reaches the specified thickness, the strip plate moves downward to below the second conveying component 505. At this time, the stack of paper packages is located at the second conveying component 505;
[0089] S5. It is conveyed by the second conveying component 505 to the discharging component.
[0090] The number corresponding to the collection positions is more than two, and the number of the collection grooves is more than two. Each collection groove corresponds to one or more collection positions respectively;
[0091] The paper packages 506 located at the same collection position fall into the same collection groove;
[0092] When there are paper packages 506 at more than two collection positions, the collection positions simultaneously release multiple paper packages 506 and make them fall into the corresponding collection grooves.
[0093] Compared with the traditional manual collection of paper packages 506 to form a stack of paper packages, the paper packages 506 on the first conveying component 501 are moved into the storage component 503 through the transfer component 502, and by adjusting the moving speed of the suction air belt conveying component to be proportional to the rotational linear speed of the suction cup 50202. When the suction cup 50202 rotates to the collection position, the paper packages 506 of the next batch move to the collection position, improving the working efficiency. And compared with the direct release of the paper packages 506 by the suction air belt conveying component, by setting the rotation of the suction cup 50202, the suction air belt does not need to stop and does not need to release the negative pressure state to realize the collection operation of the paper packages 506.
[0094] The corresponding setting of the collection positions and the collection positions ensures that the paper packages 506 at the same position on the large - sheet integral product enter a corresponding collection component, achieving the purpose of collecting the same numbers, and making there be only one specification of paper packages 506 in the stack of paper packages.
[0095] Embodiment 2:
[0096] As Figure 5 shown, a paper packaging die - cutting device includes:
[0097] A web - fed paper device 1, which is configured to install a paper roll and release the web of the paper roll;
[0098] A flat - bed die - cutting device 2, which is configured to receive the web released by the web - fed paper device 1 and cut the web into paper packages 506;
[0099] A waste - removing device 3, which is configured to remove the scraps generated by the flat - bed die - cutting device 2 when cutting the web and output the paper packages 506;
[0100] A transition device 4, which is configured to receive the paper packaging 506 output by the waste removal device 3 and adjust the paper packaging 506 to a state of being arranged at equal intervals;
[0101] A collecting device 5, which is configured to receive the paper packaging 506 adjusted by the transition device 4 and stack the paper packaging 506 into a paper bale stack. The collecting device 5 is the same-numbered paper packaging collecting device of the first embodiment.
[0102] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the present practical embodiments, and they should all be covered by the scope of the claims and the description of the present invention.
[0103] The above is only a preferred embodiment of the present invention, and it is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A paper packaging same-number collection device, characterized in that, Including: A first conveying component (501), which is configured to move the paper package (506) to the collection position; A transfer component (502), which is configured to move the paper package (506) at the collection position to the collection position and release the paper package (506); A storage component (503), a collection groove is provided in the storage component (503), the collection groove is located below the corresponding collection position, and the collection groove is used to collect the paper packages (506) released by the transfer component (502), and the paper packages (506) are stacked to form a paper bale stack.
2. The paper package same-number collection device according to claim 1, wherein: The number of the collection positions is more than two, the number of the collection grooves is more than two, and each collection groove corresponds to one or more collection positions; The paper packages (506) located at the same collection position fall into the same collection groove; The collection device (5) further includes: A paper stack collection component (504), which is configured to move the paper bale stack collected in the collection groove to the working position of the second conveying component (505); A second conveying component (505), which is configured to move the paper bale stack to the discharging component.
3. The paper packaging same-number collection device according to claim 1, wherein: The transfer component (502) includes a negative pressure pipe (50201), the negative pressure pipe (50201) is rotationally connected to the same-number paper package collection device, a negative pressure cavity is provided in the negative pressure pipe (50201), and a suction cup (50202) is provided outside the negative pressure pipe (50201); When the suction cup (50202) is located at the collection position, the suction cup (50202) is in a negative pressure state; When the suction cup (50202) is located at the collection position, the suction cup (50202) is in a non-negative pressure state.
4. The paper package same-number collection device according to claim 3, wherein: A positive pressure cavity is further provided in the negative pressure pipe (50201). When the suction cup (50202) is located at the collection position, the suction cup (50202) is communicated with the negative pressure cavity, and the suction cup (50202) is in a negative pressure state; When the suction cup (50202) is located at the collection position, the suction cup (50202) is communicated with the positive pressure cavity, and the suction cup (50202) is in a positive pressure state.
5. The paper packaging same-number collection device according to claim 1, characterized in that: The storage component (503) includes two sets of alignment modules, each alignment module includes two correspondingly arranged alignment plate groups, and a collection groove is formed between the four alignment plate groups; The alignment plate group is correspondingly provided with a driving component for driving the alignment plate group to move, and the driving component is configured to adjust the size of the collection groove.
6. The paper packaging same-number collection device according to claim 5, wherein: The alignment plate group includes a plurality of alignment side plates (50301), and there is a gap between adjacent alignment side plates (50301); One end of the alignment side plate (50301) close to the transfer component (502) is bent towards the end away from the collection groove to form a guide plate; The collection device (5) further includes a paper stack collection component (504), the paper stack collection component (504) is a strip-shaped plate, and the strip-shaped plate corresponds to the gap position between adjacent alignment side plates (50301); The strip-shaped plate is correspondingly provided with a driving component for driving the strip-shaped plate to move up and down.
7. A paper packaging same-number collecting device according to claim 6, characterized in that: The collecting device (5) further includes a second conveying component (505). The second conveying component (505) includes a plurality of conveyor belts, and there are gaps between adjacent conveyor belts. The strip plate corresponds to the positions of the gaps between adjacent conveyor belts.
8. A paper packaging die-cutting device, characterized in that, Comprising: A web-fed paper feeding device (1), which is configured to mount a paper roll and release the web of the paper roll; A flat-bed die-cutting device (2), which is configured to receive the web released by the web-fed paper feeding device (1) and cut the web into paper packages (506); A waste removing device (3), which is configured to remove the scraps generated by the flat-bed die-cutting device (2) cutting the web and output the paper packages (506); A transition device (4), which is configured to receive the paper packages (506) output by the waste removing device (3) and adjust the paper packages (506) to a state of being arranged at equal intervals; A collecting device (5), which is configured to receive the paper packages (506) adjusted by the transition device (4) and stack the paper packages (506) into a paper bale stack. The collecting device (5) is the same-numbered paper package collecting device as described in any one of claims 1-7.
9. A paper packaging collection method using the paper packaging same-number collection device according to any one of claims 1-7, characterized in that: Including the following steps: S1. The first conveying component (501) moves the paper package (506) to the collection position; S2. The transfer component (502) moves the paper package (506) at the collection position to the collection position and releases the paper package (506); S3. The storage component (503) collects the paper packages (506) released by the transfer component (502) and stacks and aligns the paper packages (506) to form a paper bale stack; S4. The paper stack collecting component (504) moves the paper bale stack collected in the collecting tank to the working position of the second conveying component (505); S5. The second conveying component (505) moves the paper bale stack to the discharging component.
10. A paper packaging collection method according to claim 9, characterized in that: The number of the collection positions is more than two, and the number of the collecting tanks is more than two. Each collecting tank corresponds to one or more collection positions; The paper packages (506) located at the same collection position fall into the same collecting tank; When there are paper packages (506) at more than two collection positions, the collection positions simultaneously release a plurality of paper packages (506) and make them fall into the corresponding collecting tanks.