Blanked material automatic stacking device

By designing an automatic material stacking device, the automatic stacking of material sheets is achieved by using a motor-driven conveyor belt and limit plates. This solves the problem of time-consuming and labor-intensive manual stacking after material unloading, and improves work efficiency and transportation convenience.

CN223670071UActive Publication Date: 2025-12-16CHANGCHUN CHANGRUI AUTOMOTIVE STAMPING PARTS CO LTD
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Patent Information

Application Number
CN202423167016.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-16
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Traditionally, after the material is unloaded, workers need to manually stack the material pieces, which is time-consuming and labor-intensive, resulting in inconvenient transportation and low work efficiency.

Method used

The design includes an automatic material stacking device, comprising a base, support structure, connecting structure, slow-fall structure, conveying structure, load-bearing structure, and handling structure. The device achieves automatic stacking of material sheets by driving a conveyor belt and a limit plate via a motor.

Benefits of technology

It enables automated stacking of material sheets, reduces manpower consumption, improves work efficiency, and simplifies the transportation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic stacking device for blanking, relates to the field of blanking and stacking, and solves the problems of time and labor waste, inconvenience in transportation and flexible use, consumption of a large amount of time and manpower and low working efficiency due to the fact that blanking sheets need to be stacked by workers after blanking in the prior art. The device is technically characterized by comprising a base; the supporting structure is mounted on the upper surface of the base, and the supporting structure is used for supporting; the connecting structure is mounted on the supporting structure, and the connecting structure is used for connection; and the slow falling structure is installed on the supporting structure, and the slow falling structure is used for slow falling. The working efficiency is improved, the structure is relatively simple, and the use is convenient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to blanking stacking technology field, especially relates to blanking automatic stacking device. BACKGROUND

[0002] The process that material is separated along the closed contour line and the material within the contour line is used as the blanking part is called blanking, and the die that completes the blanking process is called blanking die, and the material sheet needs to be stacked in order after blanking through the die, which is convenient for carrying and moving.

[0003] The traditional blanking needs workers to stack the material sheet after blanking, which is time-consuming and laborious, inconvenient for transportation and flexible use, consumes a large amount of time and manpower, and has low work efficiency, so it is necessary to design a blanking automatic stacking device to solve the problem. UTILITY MODEL CONTENT

[0004] The utility model solves the technical problem that the traditional blanking needs workers to stack the material sheet after blanking, which is time-consuming and laborious, inconvenient for transportation and flexible use, consumes a large amount of time and manpower, and has low work efficiency in the prior art, and provides a blanking automatic stacking device.

[0005] In order to solve the above technical problems, the technical scheme of the utility model is as follows:

[0006] The blanking automatic stacking device comprises:

[0007] A base;

[0008] A support structure is installed on the upper surface of the base and is used for supporting;

[0009] A connecting structure is installed on the support structure and is used for connecting;

[0010] A slow-falling structure is installed on the support structure and is used for slow falling;

[0011] A conveying structure is installed on the upper surface of the base and is used for conveying;

[0012] A bearing structure is installed on the base and is used for bearing;

[0013] A carrying structure is installed on the bearing structure and is used for carrying.

[0014] Preferably, the support structure comprises a door-shaped support frame.

[0015] The door-shaped support frame is installed on the upper surface of the base.

[0016] Preferably, the connecting structure comprises a connecting transmission housing.

[0017] The connecting transmission housing is mounted on the upper surface of the door-shaped support frame.

[0018] Preferably, the buffer structure comprises a buffer housing, a first blocking plate, two pairs of support plates, two pairs of first fixing frames, two pairs of first rotary motors, a pair of first transmission belts, and a plurality of limiting plates.

[0019] The buffer housing is mounted on the upper surface of the door-shaped support frame, the first blocking plate is mounted on the upper surface of the buffer housing, the buffer housing is provided with a pair of rectangular openings, each pair of the support plates is mounted at the corresponding rectangular opening, each pair of the first fixing frames is mounted on the corresponding support plate, each of the first rotary motors is mounted on the corresponding first fixing frame, each of the first transmission belts is mounted on the corresponding pair of the support plates, each pair of the first rotary motors is connected with the corresponding first transmission belt, and the plurality of limiting plates are mounted on the pair of the first transmission belts.

[0020] Preferably, the transmission structure comprises a pair of second fixing frames, a pair of first electric control telescopic rods, a support fixing plate, a pair of first fixed rings, a first rotating circular rod, a pair of second fixed rings, a second rotating circular rod, a pair of telescopic rods, a first fixed circular rod, a pair of rotating rings, an electric control transmission belt, and a second blocking plate.

[0021] Each of the first electric control telescopic rods is mounted on the corresponding second fixing frame, the support fixing plate is mounted on the telescopic end of the pair of the first electric control telescopic rods, the pair of the first fixed rings is mounted on the upper surface of the support fixing plate, the first rotating circular rod is mounted on the pair of the first fixed rings, the pair of the second fixed rings is mounted on the upper surface of the base, the second rotating circular rod is mounted on the pair of the second fixed rings, the pair of the telescopic rods is mounted on the second rotating circular rod, the first fixed circular rod is mounted on the pair of the telescopic rods, the pair of the rotating rings is mounted on the first fixed circular rod, the electric control transmission belt is mounted on the first rotating circular rod and the pair of the rotating rings, and the second blocking plate is mounted on the upper surface of the base.

[0022] Preferably, the bearing structure comprises a bearing box.

[0023] The upper surface of the base is provided with a rectangular gap, the bearing box is movably mounted at the rectangular gap, and the bearing box is matched with the electric control transmission belt.

[0024] Preferably, the carrying structure comprises a forklift hole.

[0025] The forklift hole is formed in the lower end of the side surface of the bearing box.

[0026] Preferably, the base is provided with a controller, and the base is provided with a mains power interface.

[0027] The utility model has the following beneficial effects:

[0028] The blanking automatic stacking device can better perform blanking stacking, is very convenient, reduces unnecessary troubles, reduces time consumption, reduces labor consumption, increases work efficiency, and has a relatively simple structure and convenient use. BRIEF DESCRIPTION OF DRAWINGS

[0029] The utility model will be further described in detail below in combination with the drawings and specific embodiments.

[0030] Figure 1 It is a structure diagram of the blanking automatic stacking device of the utility model;

[0031] Figure 2 It is a front view structure diagram of the blanking automatic stacking device of the utility model;

[0032] Figure 3 It is a front view of the blanking automatic stacking device of the utility model;

[0033] Figure 4 It is a top view of the blanking automatic stacking device of the utility model.

[0034] The reference signs in the drawings are represented as:

[0035] Base 10, support structure 20, connecting structure 30, slow-falling structure 40, conveying structure 50, bearing structure 60, controller 70, mains power interface 80;

[0036] Door type support frame 21;

[0037] Connecting conveying shell 31;

[0038] Slow-falling shell 41, first blocking plate 42, support plate 43, first fixed frame 44, first rotary motor 45, first conveying belt 46, limiting plate 47;

[0039] Second fixed frame 51, first electric control telescopic rod 52, support fixed plate 53, first fixed ring 54, first rotating circular rod 55, second fixed ring 56, second rotating circular rod 57, telescopic rod 58, first fixed circular rod 59, rotating circular ring 510, electric control conveying belt 511, second blocking plate 512;

[0040] Bearing box 61. DETAILED DESCRIPTION

[0041] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative efforts fall within the scope of the present application.

[0042] Please refer to Figures 1-4 , the blank automatic stacking device comprises a base 10, a support structure 20, the support structure 20 is installed on the upper surface of the base 10, and the support structure 20 is used for supporting, a connecting structure 30, the connecting structure 30 is installed on the support structure 20, and the connecting structure 30 is used for connecting, a slow-falling structure 40, the slow-falling structure 40 is installed on the support structure 20, and the slow-falling structure 40 is used for slow falling, a conveying structure 50, the conveying structure 50 is installed on the upper surface of the base 10, and the conveying structure 50 is used for conveying, a bearing structure 60, the bearing structure 60 is installed on the base 10, and the bearing structure 60 is used for bearing, a carrying structure, the carrying structure is installed on the bearing structure 60, and the carrying structure is used for carrying.

[0043] The support structure 20 on the upper surface of the base 10 is used for supporting, the connecting structure 30 on the support structure 20 is used for connecting, the slow-falling structure 40 on the support structure 20 is used for slow falling, the conveying structure 50 on the upper surface of the base 10 is used for conveying, the bearing structure 60 on the base 10 is used for bearing, and the carrying structure on the bearing structure 60 is used for carrying.

[0044] The support structure 20 comprises a door-shaped support frame 21, and the door-shaped support frame 21 is installed on the upper surface of the base 10.

[0045] The connecting conveying shell 31 and the slow-falling structure 40 are supported by the door-shaped support frame 21.

[0046] The connecting structure 30 comprises a connecting conveying shell 31, and the connecting conveying shell 31 is installed on the upper surface of the door-shaped support frame 21.

[0047] The connecting conveying is performed by the connecting conveying shell 31 on the upper surface of the door-shaped support frame 21.

[0048] The slow-falling structure 40 comprises a slow-falling shell 41, a first blocking plate 42, two pairs of support plates 43, two pairs of first fixing frames 44, two pairs of first rotary motors 45, a pair of first conveying belts 46, and a plurality of limiting plates 47. The slow-falling shell 41 is installed on the door-shaped support frame 21. The first blocking plate 42 is installed on the upper surface of the slow-falling shell 41. The slow-falling shell 41 is provided with a pair of rectangular openings. Each pair of support plates 43 is installed at a corresponding rectangular opening. Each pair of first fixing frames 44 is installed on a corresponding support plate 43. Each first rotary motor 45 is installed on a corresponding first fixing frame 44. Each first conveying belt 46 is installed on a pair of corresponding support plates 43. Each pair of first rotary motors 45 is connected to a corresponding first conveying belt 46. The plurality of limiting plates 47 are installed on a pair of first conveying belts 46.

[0049] The first rotary motor 45 on the slow-falling shell 41 drives the first conveying belt 46 to slowly fall in cooperation with the limiting plate 47.

[0050] The conveying structure 50 comprises a pair of second fixing frames 51, a pair of first electric control telescopic rods 52, a support fixing plate 53, a pair of first fixed rings 54, a first rotating circular rod 55, a pair of second fixed rings 56, a second rotating circular rod 57, a pair of telescopic rods 58, a first fixed circular rod 59, a pair of rotating circular rings 510, an electric control conveying belt 511, and a second blocking plate 512. The pair of second fixing frames 51 are installed on the upper surface of the base 10. Each first electric control telescopic rod 52 is installed on a corresponding second fixing frame 51. The support fixing plate 53 is installed on the telescopic ends of the pair of first electric control telescopic rods 52. The pair of first fixed rings 54 are installed on the upper surface of the support fixing plate 53. The first rotating circular rod 55 is installed on the pair of first fixed rings 54. The pair of second fixed rings 56 are installed on the upper surface of the base 10. The second rotating circular rod 57 is installed on the pair of second fixed rings 56. The pair of telescopic rods 58 are installed on the second rotating circular rod 57. The first fixed circular rod 59 is installed on the pair of telescopic rods 58. The pair of rotating circular rings 510 are installed on the first fixed circular rod 59. The electric control conveying belt 511 is installed on the first rotating circular rod 55 and the pair of rotating circular rings 510. The second blocking plate 512 is installed on the upper surface of the base 10.

[0051] The position of the electric control conveying belt 511 is adjusted by the second fixing frame 51, the first electric control telescopic rod 52, the support fixing plate 53, the first fixed ring 54, the first rotating circular rod 55, the second fixed ring 56, the second rotating circular rod 57, the telescopic rod 58, the first fixed circular rod 59, and the rotating circular ring 510, thereby facilitating conveying. The second blocking plate 512 is used for blocking.

[0052] The bearing structure 60 comprises a bearing box 61, a rectangular gap is arranged on the upper surface of the base 10, and the bearing box 61 is movably arranged in the rectangular gap, and the bearing box 61 is matched with the electric control conveying belt 511.

[0053] The material is dropped and stacked through the bearing box 61

[0054] The carrying structure comprises a forklift hole, and the forklift hole is arranged at the lower end of the side surface of the bearing box 61.

[0055] The bearing box 61 can be moved and carried through the forklift hole matched with the forklift.

[0056] The base 10 is provided with a controller 70, and the base 10 is provided with a power supply interface 80.

[0057] The controller 70 on the base 10 is controlled, the power supply is connected through the power supply interface 80 on the base 10, and power supply is performed.

[0058] Firstly, the conveying shell 31 is connected with the front-end equipment, then the power supply is connected through the power supply interface 80 on the base 10, the controller 70 on the base 10 is turned on, the material enters the buffer shell 41 through the connecting conveying shell 31, then slowly falls through the supporting plate 43, the first fixed frame 44, the first rotating motor 45, the first conveying belt 46 and the limiting plate 47, then the material is sent into the bearing box 61 through the adjusted electric control conveying belt 511 to be stacked, which is very convenient.

[0059] Obviously, the above embodiments are only examples for clearly illustrating, and are not limited to the embodiments. For ordinary skilled in the art, other different forms of changes or variations can be made on the basis of the above description. Here, all the embodiments need not and cannot be exhausted. The obvious changes or variations derived therefrom are still within the protection scope of the present application.

Claims

1. An automatic stacking device for blanks, characterized in that The utility model relates to a kind of automatic feeding and conveying device, including: Base (10); Support structure (20), the support structure (20) is installed on the upper surface of base (10), and the support structure (20) is used to support; Connecting structure (30), the connecting structure (30) is installed on support structure (20), and the connecting structure (30) is used to connect; Slowly fall structure (40), the slowly fall structure (40) is installed on support structure (20), and the slowly fall structure (40) is used to slowly drop; Conveying structure (50), the conveying structure (50) is installed on the upper surface of base (10), and the conveying structure (50) is used to convey; Bearing structure (60), the bearing structure (60) is installed on base (10), and the bearing structure (60) is used to bear; Carrying structure, the carrying structure is installed on bearing structure (60), and the carrying structure is used to carry.

2. The automatic blank piling device according to claim 1, characterized in that, The support structure (20) includes: door type support frame (21); The door type support frame (21) is installed on the upper surface of base (10).

3. The automatic blank piling device according to claim 2, characterized in that The connecting structure (30) includes: connecting conveying shell (31); The connecting conveying shell (31) is installed on the upper surface of door type support frame (21).

4. The blank automatic stacking device according to claim 3, characterized in that, The slowly fall structure (40) includes: slowly fall shell (41), first barrier (42), two pairs of support plates (43), two pairs of first fixed frame (44), two pairs of first rotary motor (45), a pair of first conveying belt (46) and several limit plates (47); The slowly fall shell (41) is installed on door type support frame (21), the first barrier (42) is installed on the upper surface of slowly fall shell (41), the slowly fall shell (41) is provided with a pair of rectangular openings, each pair of support plate (43) is installed in corresponding rectangular opening, each pair of first fixed frame (44) is installed on corresponding support plate (43), each first rotary motor (45) is installed on corresponding first fixed frame (44), each first conveying belt (46) is installed on corresponding pair of support plate (43), and each pair of first rotary motor (45) is connected with corresponding first conveying belt (46), several limit plates (47) are installed on a pair of first conveying belt (46).

5. The automatic blank piling device according to claim 4, characterized in that The conveying structure (50) includes: a pair of second fixed frame (51), a pair of first electric control telescopic rod (52), support fixed plate (53), a pair of first fixed ring (54), first rotating circular rod (55), a pair of second fixed ring (56), second rotating circular rod (57), a pair of telescopic rod (58), first fixed circular rod (59), a pair of rotating circular ring (510), electric control conveying belt (511) and second barrier (512); A pair of the second fixed frame (51) is installed on the upper surface of the base (10), each of the first electric control telescopic rod (52) is installed on the corresponding second fixed frame (51), the support fixed plate (53) is installed on the telescopic end of a pair of the first electric control telescopic rod (52), a pair of the first fixed ring (54) is installed on the upper surface of the support fixed plate (53), the first rotating circular rod (55) is installed on a pair of the first fixed ring (54), a pair of the second fixed ring (56) is installed on the upper surface of the base (10), the second rotating circular rod (57) is installed on a pair of the second fixed ring (56), a pair of the telescopic rod (58) is installed on the second rotating circular rod (57), the first fixed circular rod (59) is installed on a pair of the telescopic rod (58), a pair of the rotating ring (510) is installed on the first fixed circular rod (59), the electric control conveying belt (511) is installed on the first rotating circular rod (55) and a pair of the rotating ring (510), the second blocking plate (512) is installed on the upper surface of the base (10).

6. The blank automatic stacking device according to claim 5, characterized in that, The bearing structure (60) comprises a bearing box (61); The upper surface of the base (10) is provided with a rectangular gap, and the bearing box (61) is movably installed at the rectangular gap, and the bearing box (61) is matched with the electric control conveying belt (511).

7. The blank automatic stacking device according to claim 6, characterized in that, The carrying structure comprises a forklift hole. The forklift hole is arranged on the lower end of the side surface of the bearing box (61).

8. The automatic blank piling device according to claim 1, wherein The base (10) is provided with a controller (70), and the base (10) is provided with a power supply interface (80).