Strong magnetic boxing and carving temporary storage equipment

By designing a strong magnetic box engraving temporary storage equipment that integrates feeding, lifting, racking, handling and engraving parts, the problems of high cost of existing equipment and multiple handling are solved, and the integration of strong magnetic boxing, engraving and temporary storage is achieved, reducing production costs.

CN222921846UActive Publication Date: 2025-05-30CHUANGXUAN (CHANGSHU) LASER TECH CO LTD
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Patent Information

Application Number
CN202320245137.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2023-02-17
Publication Date
2025-05-30
Estimated Expiration
2033-02-17

AI Technical Summary

Technical Problem

Among the existing strong magnetic production equipment, the equipment for the process of boxing, engraving and temporary storage is independent, resulting in high equipment costs and requires multiple handling, which increases production costs.

Method used

A strong magnetic box engraving temporary storage device is designed, integrating feed parts, lifting parts, racks, handling parts and engraving parts. Through the coordinated work of these components, strong magnetic boxing, engraving and temporary storage are achieved, reducing the intermediate handling mechanism.

Benefits of technology

The integration of strong magnetic boxing, engraving and temporary storage has been achieved, which reduces equipment costs, reduces intermediate handling mechanisms, and saves production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to strong magnetic boxing and carving temporary storage equipment which comprises a material supply part, a jacking part, a rack, a carrying part and a carving part. The jacking part is located between the material supply part and the rack, a plurality of material channels for providing strong magnetism are arranged on the material supply part, a box supply part and a conveying part are arranged on the rack, the box supply part is located above the conveying part and connected with the rack through a connecting column, and the carrying part is located above a conveying belt of the conveying part and connected with the box supply part through a connecting column. The carrying piece is provided with an adsorption piece used for adsorbing strong magnetism, the carving piece is located between the carrying piece and the material pushing piece and the temporary storage frame, and the end of the conveying piece is located between the material pushing piece and the temporary storage frame. According to the strong magnetic boxing and carving temporary storage equipment, the equipment cost is reduced, a middle carrying mechanism is omitted, and the production cost is saved.
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Description

Technical Field

[0001] The utility model relates to the field of strong magnet production, and particularly relates to a strong magnet box loading, engraving and temporary storage device. Background Art

[0002] After the production of strong magnets is completed, multiple strong magnets need to be placed in a strong magnet box, and parameter models need to be engraved on the strong magnets. Then, multiple boxes containing strong magnets are stacked in a temporary storage frame to form a material group for temporary placement, and finally, multiple material groups are packaged and stored in the warehouse.

[0003] The commonly used strong magnet box loading devices, engraving devices, and temporary storage devices currently independently process strong magnets. Each device can only process one process of strong magnets. After the processing is completed, a handling mechanism is required to transport the strong magnets to another device, which increases the equipment cost due to the excessive number of devices. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a strong magnet box loading, engraving and temporary storage device to solve the above problems.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] A strong magnet box loading, engraving and temporary storage device includes a feeding member, a jacking member, a frame, a handling member, and an engraving member; the jacking member is located between the feeding member and the frame, multiple material channels for providing strong magnets are arranged on the feeding member, a box supplying member and a conveying member are arranged on the frame, the box supplying member is located above the conveying member, the box supplying member is connected to the frame through a connecting column, the handling member is located above the conveyor belt of the conveying member, an adsorbing member for adsorbing strong magnets is arranged on the handling member, the engraving member is located between the handling member, the pushing member, and the temporary storage frame, and the end of the conveying member is located between the pushing member and the temporary storage frame.

[0007] Further, a vibrating disk is arranged on the feeding member, all the material channels are communicated with the vibrating disk, and the jacking member is located on the side surface of the frame.

[0008] Further, the jacking member is specifically a cylinder push plate assembly, and multiple placing grooves are arranged on the push plate of the jacking member, and the multiple placing grooves correspond to the positions of the multiple material channels.

[0009] Further, the box supplying member includes a lifting member and a cover groove, the lifting member is specifically a cylinder support plate assembly, the lifting member is symmetric about the cover groove, and the support plate of the lifting member is movably connected to the cross plate of the box supplying member through a slide rail assembly.

[0010] Further, the adsorbing member is movably connected to the frame through a horizontal module and a vertical module, adsorption holes are arranged on the adsorbing member, and the adsorption holes are communicated with a vacuum generator on the handling member.

[0011] Further, the pusher is specifically a cylinder push plate assembly. The pusher is located diagonally above the conveyor, and the temporary storage box is movably connected to the frame through an adjustment member.

[0012] Further, the adjustment member includes a mounting plate, a power member, and a height adjustment mechanism. There is more than one temporary storage box on the mounting plate, and a hollow part is provided on the mounting plate below the temporary storage box.

[0013] Further, the power member is specifically a cylinder. The mounting plate is movably connected to the frame through the push rod of the power member. The height adjustment mechanism is fixedly connected to the frame through a connecting plate, and a motor, a gear, a rack, and a push plate are provided on the height adjustment mechanism.

[0014] The beneficial effects of the present utility model are as follows: A strong magnetic box loading and engraving temporary storage device is provided. By the mutual cooperation of the feeding member, the jacking member, the frame, the handling member, and the engraving member, a simple device is made to achieve the effects of strong magnetic box loading, engraving, and temporary storage, reduce the equipment cost, reduce the intermediate handling mechanism, and save the production cost. Description of the Drawings

[0015] Figure 1 It is an isometric view of the overall structure of a strong magnetic box loading and engraving temporary storage device of the present utility model.

[0016] Figure 2 It is another isometric view of the overall structure of a strong magnetic box loading and engraving temporary storage device of the present utility model.

[0017] Figure 3 It is the front view of the overall structure of a strong magnetic box loading and engraving temporary storage device of the present utility model.

[0018] Figure 4 It is an isometric view of the structure of the box feeding member of a strong magnetic box loading and engraving temporary storage device of the present utility model.

[0019] Figure 5 It is another isometric view of the structure of the box feeding member of a strong magnetic box loading and engraving temporary storage device of the present utility model.

[0020] Figure 6 It is an isometric view of a partial structure of a strong magnetic box loading and engraving temporary storage device of the present utility model.

[0021] Figure 7 It is an isometric view of the structure of the handling member of a strong magnetic box loading and engraving temporary storage device of the present utility model.

[0022] Figure 8 It is an isometric view of another partial structure of a strong magnetic box loading and engraving temporary storage device of the present utility model.

[0023] Figure 9This is an axonometric view of another part of the structure of a strong magnetic box loading, engraving and temporary storage device of the present utility model.

[0024] Figure 10 This is an axonometric view of yet another part of the structure of a strong magnetic box loading, engraving and temporary storage device of the present utility model.

[0025] In the figure: 1. Feeding part; 2. Lifting part; 21. Placing groove; 3. Box supplying part; 31. Cover groove; 32. Supporting part; 4. Conveying part; 5. Machine frame; 6. Handling part; 61. Adsorbing part; 62. Adsorption hole; 63. Vacuum generator; 7. Engraving part; 8. Pushing part; 9. Temporary storage frame; 10. Adjusting part; 11. Power part; 12. Mounting plate; 13. Heightening mechanism. Detailed implementation manners

[0026] In order to make the purpose, technical solutions and advantages of the present utility model clearer and more understandable, the following further elaborates on the present utility model in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0027] Refer to Figures 1 to 10 , a strong magnetic box loading, engraving and temporary storage device, including a feeding part 1, a lifting part 2, a machine frame 5, a handling part 6 and an engraving part 7; the lifting part 2 is located between the feeding part 1 and the machine frame 5, and a plurality of material channels 101 providing strong magnetism are arranged on the feeding part 1. The lifting part 2 is used to push the strong magnetism provided by the material channels 101 onto the adsorbing part 61. A box supplying part 3 and a conveying part 4 are arranged on the machine frame 5, which are used to intermittently transport the material boxes to below the handling part 6 to hold the strong magnetism. The box supplying part 3 is located above the conveying part 4, and the box supplying part 3 is connected to the machine frame 5 through a connecting column. The handling part 6 is located above the conveyor belt of the conveying part 4 and is used to transport the strong magnetism into the material box on the conveying part 4. An adsorbing part 61 for adsorbing the strong magnetism is arranged on the handling part 6. The engraving part 7 is located between the handling part 6, the pushing part 8 and the temporary storage frame 9 and is used to engrave the required information on the strong magnetism. The end of the conveying part 4 is located between the pushing part 8 and the temporary storage frame 9 and is used to push the material box at the end of the conveying part 4 into the temporary storage frame 9. The feeding part 1, the lifting part 2, the box supplying part 3, the conveying part 4, the machine frame 5, the handling part 6, the engraving part 7, the pushing part 8 and the adjusting part 10 are all connected to an external control system.

[0028] A vibrating disk is arranged on the feeding part 1, and the material channels 101 are all communicated with the vibrating disk and are used as channels for strong magnetic conveying. The lifting part 2 is located on the side of the machine frame 5.

[0029] The lifting member 2 is specifically a cylinder push plate assembly. A plurality of placement grooves 21 are provided on the push plate of the lifting member 2. The plurality of placement grooves 21 correspond to the positions of the plurality of material channels 101, and are used to lift the strong magnet provided by the material channel 101 to facilitate the adsorbing member 61 to adsorb the strong magnet.

[0030] The cassette supplying member 3 includes a lifting member 32 and a cover groove 31. The lifting member 32 is specifically a cylinder support plate assembly. The lifting member 32 is symmetric about the cover groove 31. The support plate of the lifting member 32 is movably connected to the cross plate of the cassette supplying member 3 through a slide rail assembly, and is used to facilitate the intermittent release of the cassette.

[0031] The adsorbing member 61 is movably connected to the frame 5 through a horizontal module and a vertical module, and is used to drive the adsorbing member 61 to move. An adsorption hole 62 is provided on the adsorbing member 61. The adsorption hole 62 is communicated with a vacuum generator 63 on the handling member 6, and is used to communicate with an external control system to provide suction force to adsorb the strong magnet.

[0032] The pushing member 8 is specifically a cylinder push plate assembly. The pushing member 8 is located obliquely above the conveying member 4, and is used to push the cassette on the conveying member 4 onto the temporary storage frame 8. The temporary storage frame 9 is movably connected to the frame 5 through an adjusting member 10, and is used to adjust the position of the temporary storage frame.

[0033] The adjusting member 10 includes a mounting plate 12, a power member 11 and a height adjusting mechanism 13. There is more than one temporary storage frame 9 on the mounting plate 12. A hollow portion is provided on the mounting plate 12 below the temporary storage frame 9 to avoid interference with the height adjusting mechanism 13.

[0034] The power member 11 is specifically a cylinder. The mounting plate 12 is movably connected to the frame 5 through the push rod of the power member 11. The height adjusting mechanism 13 is fixedly connected to the frame 5 through a connecting plate. A motor, a gear, a rack and a push plate are provided on the height adjusting mechanism 13. The rack below the push plate of the height adjusting mechanism 13 meshes with the gear. The gear is located on the rotating shaft of the motor. The push plate of the height adjusting mechanism 13 can pass through the hollow portion of the mounting plate 12 and contact the middle part of the temporary storage frame 9.

[0035] The working principle of the present utility model is as follows: Before the device starts working, the produced strong magnets are placed in the vibrating disk of the feeding member 1; when loading the strong magnets into the boxes: the feeding member 1 works to sequentially place a plurality of strong magnets into a plurality of material channels 101. During this process, the strong magnets move forward in the material channels 101 and approach the lifting member 2. When the strong magnets reach the lifting member 2, the lifting member 2 works to push the plurality of strong magnets upward. During this process, the lifting member 2 pushes the strong magnets onto the suction member 61 of the handling member 6. During this process, the external control system sucks air through the vacuum generator 63 to the suction member 61, so that the suction member 61 tightly attracts the strong magnets. Then, the horizontal module and the vertical module of the handling member 6 work to drive the suction member 61 and the strong magnets thereon to move, and then the suction member 61 transports the strong magnets into the material box on the conveyor belt of the conveying member 4; during this process, the conveying member 4 intermittently stops and starts to facilitate the handling member 6 to transport the strong magnets into the material box; at the same time, under the control of the external control system, the push rod of the air cylinder of the lifting member 32 of the box supply member 3 intermittently extends and contracts, driving the pallet thereon to approach and move away from the bottom of the cover groove 31, so as to intermittently release the strong magnet material box in the cover groove 31 onto the conveyor belt of the conveying member 4; further, after the handling member 6 fills the material box with strong magnets, the conveying member 4 continues to work to drive the material box to reach below the engraving member 7. During this process, the engraving member 7 works to engrave model information on the surface of the strong magnet. Then, when the conveying member 4 drives the material box to reach between the pushing member 8 and the temporary storage frame 9, the pushing member 8 works to push the material box to the placement position on the temporary storage frame 9. During this process, the height adjustment mechanism 13 intermittently works, driving the rack and the push plate to move through the rotation of the gear thereon. During this process, the push plate penetrates through the hollow part of the mounting plate 12 to drive the temporary storage frame 9 to move, so as to achieve the purpose of placing a plurality of material boxes on the temporary storage frame 9. When the temporary storage frame 9 places a certain number of material boxes, the height adjustment mechanism 13 resets, and the power member 11 works to drive the mounting plate 12 and the temporary storage frame 9 thereon to move, so that another temporary storage frame 9 reaches the temporary storage position, and the above process is maintained until the work ends; when the equipment in the subsequent process is idle, the external mechanism removes the temporary storage frame 9 on the mounting plate 12.

[0036] The above embodiments are used to further illustrate the present utility model, but do not limit the present utility model to these specific embodiments. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present utility model shall be understood to be within the protection scope of the present utility model.

Claims

1. A strong magnetic box loading, engraving and temporary storage device, characterized in that: It includes a feeding member (1), a lifting member (2), a frame (5), a handling member (6) and an engraving member (7); the lifting member (2) is located between the feeding member (1) and the frame (5), and a plurality of material channels (101) providing strong magnetism are arranged on the feeding member (1), a box supply member (3) and a conveying member (4) are arranged on the frame (5), the box supply member (3) is located above the conveying member (4), the box supply member (3) is connected to the frame (5) through a connecting column, the handling member (6) is located above the conveyor belt of the conveying member (4), and an adsorbing member (61) for adsorbing strong magnetism is arranged on the handling member (6), the engraving member (7) is located between the handling member (6) and the pushing member (8) and the temporary storage frame (9), and the end of the conveying member (4) is located between the pushing member (8) and the temporary storage frame (9).

2. A strong magnetic box loading, engraving and temporary storage device according to claim 1, characterized in that: A vibrating disk is arranged on the feeding member (1), and the material channels (101) are all communicated with the vibrating disk, and the lifting member (2) is located on the side surface of the frame (5).

3. A strong magnetic box loading, engraving and temporary storage device according to claim 2, characterized in that: The lifting member (2) is specifically a cylinder push plate assembly, and a plurality of placing grooves (21) are arranged on the push plate of the lifting member (2), and the plurality of placing grooves (21) correspond to the positions of the plurality of material channels (101).

4. A strong magnetic box loading, engraving and temporary storage device according to claim 1, characterized in that: The box supply member (3) includes a lifting member (32) and a cover groove (31), the lifting member (32) is specifically a cylinder support plate assembly, the lifting member (32) is symmetric about the cover groove (31), and the support plate of the lifting member (32) is movably connected to the cross plate of the box supply member (3) through a slide rail assembly.

5. A strong magnetic box loading, engraving and temporary storage device according to claim 1, characterized in that: The adsorbing member (61) is movably connected to the frame (5) through a horizontal module and a vertical module, an adsorption hole (62) is arranged on the adsorbing member (61), and the adsorption hole (62) is communicated with a vacuum generator (63) on the handling member (6).

6. A strong magnetic box loading, engraving and temporary storage device according to claim 1, characterized in that: The pushing member (8) is specifically a cylinder push plate assembly, the pushing member (8) is located obliquely above the conveying member (4), and the temporary storage frame (9) is movably connected to the frame (5) through an adjusting member (10).

7. A strong magnetic box loading, engraving and temporary storage device according to claim 6, characterized in that: The adjusting member (10) includes a mounting plate (12), a power member (11) and a height adjusting mechanism (13), there is more than one temporary storage frame (9) on the mounting plate (12), and a hollow part is arranged on the mounting plate (12) below the temporary storage frame (9).

8. A strong magnetic box loading, engraving and temporary storage device according to claim 7, characterized in that: The power component (11) is specifically a cylinder. The mounting plate (12) is movably connected to the frame (5) through the push rod of the power component (11). The height adjustment mechanism (13) is fixedly connected to the frame (5) through a connecting plate. A motor, a gear, a rack, and a push plate are provided on the height adjustment mechanism (13).