Automatic antirust paper loading equipment

By designing automatic anti-rust paper equipment, using the mechanized operation of paper feeding group, bag feeding group and cutting group, combined with vacuum adsorption technology, automatic bagging of anti-rust paper is realized, solving the high cost and low efficiency problems caused by manual operations and improving production efficiency.

CN223132519UActive Publication Date: 2025-07-22STRONG H MACHINERY TECH
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Patent Information

Application Number
CN202421757458.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-07-22
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

In the prior art, anti-rust paper in packaging bags is mostly manual operation, resulting in high labor costs and low production efficiency.

Method used

Design an automatic anti-rust paper equipment, including paper feeding group, bag feeding group, cutting group and paging mechanism, to realize automatic page-by-page loading of anti-rust paper and packaging bags through mechanized means, and fix the packaging bags using vacuum adsorption technology to complete the automatic bagging and cutting of anti-rust paper.

Benefits of technology

Automatic bagging of anti-rust paper is realized, reducing manual participation and improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of packaging, in particular to automatic antirust paper loading equipment which comprises a paper feeding set, a bag feeding set, a discharging set, a paging mechanism and a transverse moving set. The paper feeding set and the bag feeding set are close to or away from each other through the transverse moving set, the two paging mechanisms are arranged and feed antirust paper and packaging bags to the paper feeding set and the bag feeding set after paging the antirust paper and the packaging bags respectively, the paper feeding set and the bag feeding set are close to each other, the paper feeding set feeds the antirust paper into the packaging bags, and the discharging set conveys and discharges the packaging bags containing the antirust paper. By arranging the paging mechanism, automatic page-by-page feeding of anti-rust paper and packaging bags can be completed; by arranging the paper feeding set, the bag feeding set and the discharging set, bagging, discharging and collecting procedures of antirust paper can be automatically completed, manual participation is reduced, and the production efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the field of packaging, in particular to an automatic anti-rust paper loading device. Background Art

[0002] The anti-rust paper can continuously and slowly release rust inhibitors to form a saturated gas layer in a relatively enclosed space, thereby forming anti-rust protection for metal materials in this environment. In actual production, sometimes it is necessary to load anti-rust paper into a packaging bag, but the existing technology for loading anti-rust paper into a packaging bag is mostly manual operation, with high labor costs and low production efficiency. Therefore, it is necessary to improve the automation of this process. Summary of the Utility Model

[0003] Technical Objective: In order to overcome the deficiencies in the prior art, the utility model provides an automatic anti-rust paper loading device, which can automatically load anti-rust paper into a packaging bag.

[0004] Technical Solution: To achieve the above objective, an automatic anti-rust paper loading device disclosed by the utility model includes a frame, and also includes a paper feeding group, a bag feeding group, and a blanking group. The paper feeding group and the bag feeding group can approach or move away under the drive of a transverse movement group. The paper feeding group includes a first conveyor belt, the bag feeding group includes a second conveyor belt, the first conveyor belt and the second conveyor belt move relative to each other, and the blanking group includes a material suction component, and the material suction component can suck up and transport the packaging bags on the second conveyor belt.

[0005] Further, the paper feeding group also includes a first paper feeding motor for driving the movement of the first conveyor belt, a paper outlet at the output end of the first conveyor belt, and a paper feeding table located between the first conveyor belt and the paper outlet. A paper feeding roller is arranged above the paper feeding table, and the paper feeding roller is driven by a second paper feeding motor.

[0006] Further, the paper feeding group also includes a pressing plate located below the paper outlet. Protrusions are arranged on the pressing plate, and the protrusions are provided with inclined portions.

[0007] Further, the bag feeding group also includes a bag feeding motor for driving the movement of the second conveyor belt and a baffle at the output end of the second conveyor belt. A bearing rotatably connected to the baffle is arranged on the baffle. When the paper feeding group and the bag feeding group approach each other, the bearing can move along the inclined portion.

[0008] Further, the bag feeding group also includes a bag feeding table located between the second conveyor belt and the baffle and a vacuum generator located below the bag feeding table. Holes are arranged on the bag feeding table, and the vacuum generator adsorbs the bottom surface of the packaging bag on the bag feeding table by pumping vacuum.

[0009] Further, it further includes a paging mechanism, which includes a feeding channel, a feeding conveyor belt located at the lower end of the feeding channel, a discharging roller located at the output end of the feeding conveyor belt, and a feeding driving motor; there are two discharging rollers, and the two discharging rollers are arranged in parallel and rotate relatively; the feeding channel includes side plates arranged on both sides of the feeding conveyor belt and a baffle plate arranged above the feeding conveyor belt, and the baffle plate is spaced from the feeding conveyor belt by a material thickness; the paging mechanism further includes an eccentric rotating shaft arranged in the feeding channel and close to the feeding conveyor belt, and the cross-section of the eccentric rotating shaft is spindle-shaped.

[0010] Further, the transverse movement group includes a transverse movement slide rail, a tray that can slide along the transverse movement slide rail, a ball screw, and a transverse movement driving motor. The telescopic end of the ball screw is fixedly connected to the tray, and the transverse movement driving motor drives the ball screw to rotate.

[0011] Further, there are two sets of the paging mechanism, namely an anti-rust paper paging group arranged at the input end of the first conveyor belt and a packaging bag paging group arranged at the input end of the second conveyor belt, and the paper feeding group and the anti-rust paper paging group are arranged on the tray.

[0012] Further, the blanking group further includes a first blanking conveyor belt, a first blanking motor for driving the first blanking conveyor belt to move, and a first blanking slide rail. The material suction assembly is fixedly connected to the first blanking conveyor belt and can move along the first blanking slide rail; the material suction assembly includes a second blanking conveyor belt, a second blanking motor for driving the second blanking conveyor belt to move, a suction cup group fixedly connected to the second blanking conveyor belt, and a second blanking slide rail; the suction cup group includes vacuum suction cups, and there are two sets of the suction cup group.

[0013] Further, the suction cup group further includes a cylinder, the blanking group further includes a blanking channel, and the blanking channel includes a third blanking conveyor belt. There are two blanking channels, which are respectively arranged on both sides of the bag feeding group.

[0014] Compared with the prior art, the present utility model has at least the following beneficial effects:

[0015] The automatic anti-rust paper loading device of the present utility model can complete the automatic page-by-page feeding of anti-rust paper and packaging bags by setting a paging mechanism; by setting a paper feeding group, a bag feeding group and a blanking group, it can automatically complete the processes of bagging, blanking and collecting of anti-rust paper, reduce manual participation and improve production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the present utility model;

[0017] Figure 2 It is a schematic structural diagram of the paper feeding group;

[0018] Figure 3 is Figure 2 an enlarged view of the structure of part A in it;

[0019] Figure 4 It is a schematic structural diagram of the position of the paper feeding table;

[0020] Figure 5 It is a schematic structural diagram of the bag feeding group;

[0021] Figure 6 It is a schematic structural diagram of the paging mechanism;

[0022] Figure 7 It is the front view of the paging mechanism;

[0023] Figure 8 It is a schematic structural diagram of the eccentric rotating shaft;

[0024] Figure 9 It is a schematic structural diagram of the transverse movement group;

[0025] Figure 10 It is a schematic structural diagram of the blanking group.

[0026] In the figure, 1. Paper feeding group; 2. Bag feeding group; 3. Blanking group; 4. Paging mechanism; 5. Transverse movement group; 6. First conveyor belt; 7. Second conveyor belt; 8. Material suction assembly; 9. First paper feeding motor; 10. Paper outlet; 11. Paper feeding table; 12. Paper feeding roller; 13. Second paper feeding motor; 14. Pressing plate; 15. Protrusion; 16. Inclined part; 17. Bag feeding motor; 18. Baffle; 19. Bearing; 20. Bag feeding table; 21. Vacuum generator; 22. Feeding channel; 23. Feeding conveyor belt; 24. Discharging roller; 25. Feeding driving motor; 26. Side plate; 27. Material blocking plate; 28. Eccentric rotating shaft; 29. Antirust paper paging group; 30. Packaging bag paging group; 31. Tray; 32. Transverse movement slide rail; 33. Ball screw; 34. Transverse movement driving motor; 35. First blanking conveyor belt; 36. First blanking motor; 37. First blanking slide rail; 38. Second blanking conveyor belt; 39. Second blanking motor; 40. Suction cup group; 41. Second blanking slide rail; 42. Blanking channel; 43. Third blanking conveyor belt; 44. Vacuum suction cup; 45. Vibrator; 46. Material receiving box; 47. Cylinder. Specific implementation manners

[0027] The following combines the attached Figure 1 to the attached Figure 10 to describe the principles and features of the present invention. The examples given are only used to explain the present invention and are not used to limit the scope of the present invention.

[0028] An automatic anti-rust paper loading device includes a frame, and also includes a paper feeding group 1, a bag feeding group 2, a blanking group 3, a page separation mechanism 4 and a transverse movement group 5. The paper feeding group 1 and the bag feeding group 2 are close to or away from each other through the transverse movement group 5. There are two sets of page separation mechanisms 4. The two sets of page separation mechanisms 4 respectively separate the anti-rust paper and the packaging bags and feed them to the paper feeding group 1 and the bag feeding group 2. When the paper feeding group 1 and the bag feeding group 2 are close, the paper feeding group 1 feeds the anti-rust paper into the packaging bag, and the blanking group 3 transports and unloads the packaging bag containing the anti-rust paper.

[0029] The paper feeding group 1 includes a first conveyor belt 6, a first paper feeding motor 9, a paper outlet 10, a paper feeding table 11, a paper feeding roller 12, a second paper feeding motor 13 and a pressing plate 14. Among them, the first conveyor belt 6 is driven by the first paper feeding motor 9 to achieve circular movement. The paper outlet 10 is arranged at the output end of the first conveyor belt 6. The paper feeding table 11 is arranged between the first conveyor belt 6 and the paper outlet 10. The paper feeding roller 12 is arranged above the paper feeding table 11 and is driven by the second paper feeding motor 13. The pressing plate 14 is arranged below the paper outlet 10, and a protrusion 15 is arranged on the pressing plate 14, and an inclined portion 16 is arranged on the protrusion 15.

[0030] The bag feeding group 2 includes a second conveyor belt 7, a bag feeding motor 17, a baffle 18, a bag feeding table 20 and a vacuum generator 21. Among them, the second conveyor belt 7 is driven by the bag feeding motor 17, and the first conveyor belt 6 and the second conveyor belt 7 move annularly relative to each other. The baffle 18 is arranged at the output end of the second conveyor belt 7, and a bearing 19 rotatably connected to it is arranged on the baffle 18. When the paper feeding group 1 and the bag feeding group 2 are close, the bearing 19 contacts the protrusion 15 and rotates along the inclined portion 16. The bag feeding table 20 is arranged between the second conveyor belt 7 and the baffle 18. There are holes on the bag feeding table 20, and the vacuum generator 21 is arranged below the bag feeding table 20. The vacuum generator 21 adsorbs the bottom surface of the packaging bag on the bag feeding table 20 by pumping vacuum.

[0031] The page separation mechanism 4 includes a loading chute 22, a loading conveyor belt 23, an unloading roller 24, a loading drive motor 25, and an eccentric rotating shaft 28. The loading chute 22 includes side plates 26 and a material retaining plate 27. The loading conveyor belt 23 is arranged at the lower end of the loading chute 22. The side plates 26 are arranged on both sides of the loading conveyor belt 23. The material retaining plate 27 is arranged above the loading conveyor belt 23 and is spaced from the loading conveyor belt 23 by a distance equal to the thickness of one material. The unloading roller 24 is arranged at the output end of the loading conveyor belt 23. There are two unloading rollers 24, and the two unloading rollers 24 are arranged in parallel and rotate relative to each other. The eccentric rotating shaft 28 is arranged in the loading chute 22 and is close to the loading conveyor belt 23. The cross-section of the eccentric rotating shaft 28 is fusiform. One end of the unloading roller 24 and one end of the loading conveyor belt 23 are connected to the output end of the loading drive motor 25 through gears, and the other end of the loading conveyor belt 23 is connected to one end of the eccentric rotating shaft 28 through a round belt. In one embodiment, a vibrator 45 can be installed on the page separation mechanism 4, and through the vibration of the vibrator 45, it assists in smooth loading. There are two sets of page separation mechanisms 4, namely the rust-proof paper page separation group 29 arranged at the input end of the first conveyor belt 6 and the packaging bag page separation group 30 arranged at the input end of the second conveyor belt 7.

[0032] The transverse movement group 5 includes a tray 31, a transverse movement slide rail 32, a ball screw 33, and a transverse movement drive motor 34. The paper feeding group 1 and the rust-proof paper page separation group 29 are arranged on the tray 31. The telescopic end of the ball screw 33 is fixedly connected to the tray 31. The transverse movement drive motor 34 drives the ball screw 33 to rotate forward or backward, thereby driving the tray 31 to reciprocate horizontally along the transverse movement slide rail 32.

[0033] The blanking group 3 includes a material suction assembly 8, a first blanking conveyor belt 35, a first blanking motor 36, a first blanking slide rail 37, and a blanking channel 42. Among them, the material suction assembly 8 includes a second blanking conveyor belt 38, a second blanking motor 39, a suction cup group 40, and a second blanking slide rail 41. The output end of the second blanking motor 39 rotates forward or backward, thereby driving the second blanking conveyor belt 38 to rotate forward or backward. The suction cup group 40 is fixedly connected to the second blanking conveyor belt 38, and the second blanking conveyor belt 38 drives the suction cup group 40 to move up and down along the second blanking slide rail 41. The suction cup group 40 includes vacuum suction cups 44. In one embodiment, the suction cup group 40 further includes a cylinder 47 for pressing the packaging bag onto the bag feeding table 20. The vacuum suction cups 44 and the cylinder 47 are arranged along the advancing direction of the packaging bag. In one embodiment, two sets of suction cup groups 40 are provided. The material suction assembly 8 is fixedly connected to the first blanking conveyor belt 35 and can move along the first blanking slide rail 37. The output end of the first blanking motor 36 rotates forward or backward, thereby driving the first blanking conveyor belt 35 to rotate forward or backward, thus realizing the reciprocating movement of the material suction assembly 8 in the horizontal direction. In one embodiment, the first blanking motor 36 drives the first blanking conveyor belt 35 to move by means of belt transmission. The blanking channel 42 includes a third blanking conveyor belt 43. Two sets of blanking channels 42 are provided, which are respectively arranged on both sides of the bag feeding group 2. A receiving box 46 can also be provided at the output end of the blanking channel 42 for collecting the packaging bags on the third blanking conveyor belt 43.

[0034] In one embodiment, the working process of the present utility model is as follows:

[0035] The rust-proof paper and the packaging bag are respectively placed into the feeding channels 22 of the rust-proof paper paging group 29 and the packaging bag paging group 30. After the feeding driving motor 25 is started, it drives the feeding conveyor belt 23 to rotate, and at the same time drives the two discharging rollers 24 to rotate relatively. The rotation of the feeding conveyor belt 23 drives the eccentric rotating shaft 28 to rotate, and then places the stacked materials in the feeding channel 22 onto the feeding conveyor belt 23 page by page. Since the baffle 27 is spaced from the feeding conveyor belt 23 by a material thickness, it further ensures that the materials are arranged page by page on the feeding conveyor belt 23. When the materials respectively reach the output end of the feeding conveyor belt 23, the two discharging rollers 24 pull the materials from the feeding conveyor belt 23 and send them to the first conveyor belt 6 and the second conveyor belt 7 respectively.

[0036] The packaging bag continues to move forward on the second conveyor belt 7. After moving to the bag delivery table 20, it is blocked by the baffle 18. There are two sets of suction cup groups 40. One of the suction cup groups 40 moves above the bag delivery table 20 and moves downward. The vacuum suction cups 44 lift the top surface of the packaging bag, and the vacuum generator 21 adsorbs the bottom surface of the packaging bag on the bag delivery table 20, so that the bag opening is in an open state, waiting for the paper feeding group 1 to approach. At the same time, the rust-proof paper continues to move forward on the first conveyor belt 6 and moves to the paper feeding table 11. The transverse movement group 5 drives the paper feeding group 1 to approach the bag feeding group 2. The bearing 19 contacts the protrusion 15 and rotates along the inclined part 16, so that the baffle 18 moves downward so that the paper feeding group 1 can feed the rust-proof paper into the packaging bag. At this time, the paper feeding roller 12 starts, and feeds the rust-proof paper on the paper feeding table 11 into the packaging bag through the paper outlet 10. After the paper feeding is completed, the telescopic end of the cylinder 47 presses the packaging bag and the rust-proof paper inside it against the bag delivery table 20. At the same time, the paper feeding group 1 moves reversely and resets under the drive of the transverse movement group 5, and waits to continue feeding paper after the next packaging bag is in place.

[0037] After the paper feeding group 1 moves away, the telescopic end of the cylinder 47 retracts. The material suction assembly 8 moves upward and then horizontally to above the blanking channel 42, places the material on the third blanking conveyor belt 43, and the third blanking conveyor belt 43 conveys the material into the receiving box 46. The distance between the bag feeding group 2 and the blanking channel 42 is the same as the distance between the two sets of suction cup groups 40. When one set of suction cup groups 40 releases the material to the blanking channel 42, the other set of suction cup groups 40 is performing the bagging step. The two sets of suction cup groups 40 alternate blanking and bagging to achieve continuous operation.

[0038] The above are only the preferred embodiments of the present invention, and are 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. An automatic rust-proof paper loading device, including a frame, characterized in that, It also includes a paper feeding group (1), a bag feeding group (2) and a blanking group (3). The paper feeding group (1) and the bag feeding group (2) can approach or move away from each other under the drive of a transverse movement group (5). The paper feeding group (1) includes a first conveyor belt (6), the bag feeding group (2) includes a second conveyor belt (7), the first conveyor belt (6) and the second conveyor belt (7) move relative to each other, and the blanking group (3) includes a material suction component (8), and the material suction component (8) can suck up and transport the packaging bags on the second conveyor belt (7).

2. The automatic rust-proof paper loading device according to claim 1, characterized in that, The paper feeding group (1) further includes a first paper feeding motor (9) for driving the first conveyor belt (6) to move, a paper outlet (10) located at the output end of the first conveyor belt (6), and a paper feeding table (11) located between the first conveyor belt (6) and the paper outlet (10). A paper feeding roller (12) is arranged above the paper feeding table (11), and the paper feeding roller (12) is driven by a second paper feeding motor (13).

3. The automatic anti-rust paper loading device according to claim 2, characterized in that, The paper feeding group (1) further includes a pressing plate (14) located below the paper outlet (10). Protrusions (15) are arranged on the pressing plate (14), and the protrusions (15) are provided with inclined portions (16).

4. The automatic rust-proof paper loading device according to claim 3, characterized in that The bag feeding group (2) further includes a bag feeding motor (17) for driving the second conveyor belt (7) to move and a baffle (18) located at the output end of the second conveyor belt (7). A bearing (19) rotatably connected to the baffle (18) is arranged on the baffle (18). When the paper feeding group (1) and the bag feeding group (2) approach each other, the bearing (19) can move along the inclined portion (16).

5. The automatic rust-proof paper loading device according to claim 4, wherein, The bag feeding group (2) further includes a bag feeding table (20) located between the second conveyor belt (7) and the baffle (18) and a vacuum generator (21) located below the bag feeding table (20). Holes are arranged on the bag feeding table (20), and the vacuum generator (21) adsorbs the bottom surface of the packaging bag on the bag feeding table (20) by evacuating.

6. The automatic rust-proof paper loading device according to claim 5, characterized in that, It also includes a paging mechanism (4). The paging mechanism (4) includes a feeding channel (22), a feeding conveyor belt (23) located at the lower end of the feeding channel (22), discharging rollers (24) located at the output end of the feeding conveyor belt (23), and a feeding driving motor (25); two discharging rollers (24) are arranged, and the two discharging rollers (24) are arranged in parallel and rotate relative to each other; the feeding channel (22) includes side plates (26) arranged on both sides of the feeding conveyor belt (23) and a baffle (27) arranged above the feeding conveyor belt (23), and the baffle (27) is spaced from the feeding conveyor belt (23) by a material thickness; the paging mechanism (4) further includes an eccentric rotating shaft (28) arranged in the feeding channel (22) and close to the feeding conveyor belt (23), and the cross section of the eccentric rotating shaft (28) is spindle-shaped.

7. The automatic rust-proof paper loading device according to claim 6, wherein, The transverse movement group (5) includes a transverse movement slide rail (32), a tray (31) that can slide along the transverse movement slide rail (32), a ball screw (33), and a transverse movement drive motor (34). The telescopic end of the ball screw (33) is fixedly connected to the tray (31), and the transverse movement drive motor (34) drives the ball screw (33) to rotate.

8. The automatic anti-rust paper loading device according to claim 7, characterized in that, There are two sets of the paging mechanism (4), namely an anti-rust paper paging group (29) arranged at the input end of the first conveyor belt (6) and a packaging bag paging group (30) arranged at the input end of the second conveyor belt (7). The paper feeding group (1) and the anti-rust paper paging group (29) are arranged on the tray (31).

9. The automatic rust-proof paper loading device according to claim 8, characterized in that, The blanking group (3) further includes a first blanking conveyor belt (35), a first blanking motor (36) for driving the movement of the first blanking conveyor belt (35), and a first blanking slide rail (37). The material suction assembly (8) is fixedly connected to the first blanking conveyor belt (35) and can move along the first blanking slide rail (37); the material suction assembly (8) includes a second blanking conveyor belt (38), a second blanking motor (39) for driving the movement of the second blanking conveyor belt (38), a suction cup group (40) fixedly connected to the second blanking conveyor belt (38), and a second blanking slide rail (41); the suction cup group (40) includes vacuum suction cups (44), and there are two sets of the suction cup group (40).

10. The automatic rust-proof paper loading device according to claim 9, characterized in that, The suction cup group (40) further includes a cylinder (47). The blanking group (3) further includes a blanking channel (42). The blanking channel (42) includes a third blanking conveyor belt (43). There are two blanking channels (42), which are respectively arranged on both sides of the bag feeding group (2).