Magnet assembling equipment

By designing a magnet assembly device and utilizing the cooperation of a pusher track and a holding component, continuous magnet installation is achieved, solving the problem of low efficiency in existing technologies and improving assembly speed.

CN223531811UActive Publication Date: 2025-11-11LIANSHUO SEMICON TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202422673037.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-11-11
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

In existing technologies, assembling magnets onto barcode scanner brackets is inefficient, requiring repeated handling and alignment of the magnet mounting holes.

Method used

Design a magnet assembly device, including a pusher track, a holding component, a first pusher, a compression cylinder, and a second pusher. The compression cylinder pushes the magnet into the second track, and the elastic force of the holding component causes the first pusher to continuously push multiple magnets into the third track. The second pusher then installs the magnets onto the barcode scanner bracket.

Benefits of technology

This technology enables continuous installation of magnets, improving assembly efficiency, reducing manual operation steps, and increasing assembly speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to code scanning gun assembling equipment, in particular to magnet assembling equipment which comprises a pushing track, an abutting assembly, a first pushing piece, a compression air cylinder and a second pushing piece, and the pushing track comprises a first track, a second track and a third track which are communicated in sequence. According to the utility model, the plurality of magnets are propped against the end part of the second track in advance through the propping assembly. When the magnets are installed on the code scanning gun support, the magnet which is closest to the front is pushed into the second track through the compression air cylinder, and then the magnet is pushed into a magnet installation hole in the code scanning gun support through the second pushing piece. Due to the fact that the abutting force of the abutting assembly enables the first pushing piece to continuously push the multiple magnets to the second rail, the process can be continuously repeated for multiple times. Therefore, continuous installation of the multiple magnets can be achieved, the steps of manually taking the magnets for multiple times and aligning the magnets to the magnet installation holes for multiple times are reduced, and compared with the prior art, the assembling efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to barcode scanner assembly equipment, specifically to a magnet assembly equipment. Background Technology

[0002] A barcode scanner, also known as a barcode reader, is a device used to read the information contained in barcodes. Utilizing optical principles, it decodes the barcode content and transmits it to a computer or other device via data cable or wirelessly. It is widely used in supermarkets, logistics and express delivery companies, libraries, and other situations requiring the scanning of product and document barcodes. When assembling a barcode scanner, magnets need to be inserted into the magnet mounting holes on the scanner holder.

[0003] In the existing technology, when installing magnets into the barcode scanner bracket, it is usually done manually. However, when installing multiple magnets into their respective barcode scanner brackets, it is necessary to repeatedly pick up and align the magnets with the magnet mounting holes on the barcode scanner bracket, which results in low assembly efficiency. Utility Model Content

[0004] The technical solution adopted by this utility model to solve its technical problem is: to provide a magnet assembly device, comprising:

[0005] The push track includes a first track, a second track, and a third track connected in sequence. Several magnets are placed in the first track, and the third track corresponds to the magnet mounting holes on the barcode scanner bracket.

[0006] The first pushing member is slidably disposed within the first track;

[0007] A retaining component, which cooperates with the first pusher to press the magnet against the end of the second track;

[0008] A compression cylinder, the output end of which corresponds to the second track, is used to push the magnet from the second track to the third track.

[0009] The second pusher, which corresponds to the third track, is used to push the magnet from the third track into the magnet mounting hole on the barcode scanner bracket.

[0010] Furthermore, the supporting assembly includes a first baffle and a telescopic spring. The first baffle is disposed on the side of the first pusher away from the magnet, and the two ends of the telescopic spring are respectively connected to the first pusher and the first baffle.

[0011] Furthermore, the first pushing member is provided with a supporting block, the end face of which abuts against one end of the telescopic spring.

[0012] Furthermore, the abutment assembly also includes a second baffle and a support rod. Both ends of the support rod are connected to the first baffle and the second baffle, respectively. The abutment block has an installation hole for the support rod to pass through. The telescopic spring is sleeved on the support rod. The second baffle is disposed on the first track and is disposed opposite to the first baffle.

[0013] Furthermore, the second pusher is located below the first pusher.

[0014] Furthermore, the first track and the third track are parallel to each other.

[0015] Furthermore, the first track and the second track are perpendicular to each other.

[0016] Furthermore, the second pusher is a cylinder, and the output end of the second pusher is positioned facing the inlet of the third track.

[0017] Furthermore, the magnet assembly device also includes a placement block for placing a barcode scanner holder, the placement block being located on one side of the third track.

[0018] The beneficial effects of this utility model are as follows: It provides a magnet assembly device, including a pushing track, a supporting component, a first pushing component, a compression cylinder, and a second pushing component. The pushing track includes a first track, a second track, and a third track connected in sequence. In this utility model, the supporting component pre-presses several magnets together against the end of the second track. When the magnets are installed on the barcode scanner bracket, the compression cylinder pushes the foremost magnet into the second track, and then the second pushing component pushes the magnet into the magnet mounting hole on the barcode scanner bracket. Due to the supporting force of the supporting component, the first pushing component continuously pushes multiple magnets to the second track. The above process can be repeated multiple times, thereby achieving continuous installation of multiple magnets. This reduces the steps of manually picking up magnets multiple times and aligning them with the magnet mounting holes multiple times, thus improving assembly efficiency compared to the prior art. Attached Figure Description

[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0020] In the picture: Figure 1 An overall structural diagram of a magnet assembly device provided by this utility model;

[0021] Figure 2 for Figure 1 The diagram shows a cross-sectional view of the magnet assembly equipment.

[0022] Figure 3 for Figure 2 Enlarged view of point A in the middle;

[0023] Figure 4 This is a three-dimensional structural diagram of the barcode scanner bracket used in this utility model.

[0024] Explanation of reference numerals in the attached drawings: 100, magnet assembly equipment; 10, frame; 20, push track; 21, first track; 22, second track; 23, third track; 30, first pusher; 31, push end; 32, support block; 321, mounting hole; 40, second pusher; 41, push rod; 50, compression cylinder; 51, push rod; 70, support assembly; 71, first baffle; 72, second baffle; 73, support rod; 74, telescopic spring; 80, placement block; 81, groove; 200, barcode scanner bracket; 201, magnet mounting hole; 202, magnet. Detailed Implementation

[0025] To make the technical problem to be solved, the technical solution, and the beneficial effects of this utility model clearer, the present utility model will now be described in detail with reference to the accompanying drawings. This drawing is a simplified schematic diagram, illustrating only the basic aspects of the present utility model, and therefore only shows the components relevant to the present utility model. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0026] Please refer to Figure 1-4 This utility model provides a magnet assembly device 100, including a frame 10, a pusher track 20, a first pusher 30, a second pusher 40, a compression cylinder 50, a support assembly 70, and a placement block 80 for placing a barcode scanner bracket 200.

[0027] The push track 20 includes a first track 21, a second track 22 and a third track 23 connected in sequence. Several magnets 202 are placed side by side in the first track 21.

[0028] Furthermore, in this embodiment, the first track 21 and the third track 23 are parallel to each other, and the first track 21 and the second track 22 are perpendicular to each other. Both the first track 21 and the third track 23 are arranged along the length direction of the frame 10, and the second track 22 is arranged along the height direction of the frame 10. The height of the third track 23 is lower than the height of the first track 21, and the third track 23 is closer to the placement block 80 than the first track 21. The outlet of the third track 23 corresponds to the magnet mounting hole 201 on the barcode scanner bracket 200.

[0029] The first pusher 30 is slidably disposed within the first track 21. Specifically, the first pusher 30 has a plate-like structure, and a pusher end 31 is provided at the bottom of the first pusher 30. The end face of the pusher end 31 abuts against the magnet 202.

[0030] The compression cylinder 50 is arranged along the height direction of the frame 10, with its output end facing downwards. The output end of the compression cylinder 50 corresponds to the inlet of the second track 22, and is used to push the magnet 202 from the second track 22 to the third track 23. Furthermore, in this embodiment, the output end of the compression cylinder 50 is provided with a push rod 51, which pushes the magnet 203 to move.

[0031] The second pusher 40 corresponds to the inlet of the third track 23. The second pusher 40 is used to push the magnet 202 from the third track 23 into the magnet mounting hole 201 on the barcode scanner bracket 200. Specifically, the second pusher 40 is a cylinder, located below the first track 21, and the output end of the second pusher 40 is provided with a push rod 41, which is set towards the third track 23. The second pusher 40 pushes the magnet from the third track 23 into the magnet mounting hole 201 on the barcode scanner bracket 200 through the push rod 41.

[0032] The abutment assembly 70 is used to cooperate with the first pusher 30 to press the magnet against the end of the second track 22. The abutment assembly 70 includes a first baffle 71 and a second baffle 72 disposed opposite to each other, a support rod 73 connecting the first baffle 71 and the second baffle 72, and a telescopic spring 74 disposed between the first baffle 71 and the first pusher 30. The first baffle 71 and the second baffle 72 are both disposed on the first track 21.

[0033] The first baffle 71 and the second baffle 72 are located on opposite sides of the thickness direction of the first pusher 30. The first baffle 71 is disposed on the side of the first pusher 30 away from the magnet 202, and the two ends of the telescopic spring 74 are respectively connected to the first pusher 30 and the first baffle 71. Specifically, the first pusher 30 is provided with a retaining block 32, and the two ends of the telescopic spring 74 are fixedly connected to the retaining block 32 and the first baffle 71 respectively. The retaining block 32 is provided with a mounting hole 321 for the support rod 73 to pass through, and the support rod 73 passes through the mounting hole 321 and the telescopic spring 74 is sleeved on the support rod 73. The telescopic spring 74 is configured to cooperate with the first baffle 71 and the first pusher 30 to press together the several magnets 202 in the first track 21 against the intersection of the first track 21 and the second track 22, i.e., the end of the second track 22. When installing the magnet 202 onto the barcode scanner bracket 200, the compression cylinder 50 pushes the foremost magnet 202 downwards along the height of the frame 10 into the second track 22, and then the second pusher 40 pushes the magnet 202 into the magnet mounting hole 201 on the barcode scanner bracket 200. Due to the elasticity of the telescopic spring 74, the first pusher 30 tends to move continuously towards the second track 22, thus enabling the first pusher 30 to continuously push multiple magnets 202 to the second track 22. This process can be repeated multiple times, thereby achieving the continuous installation of multiple magnets 202.

[0034] In this embodiment, there are two telescopic springs 74, two abutment blocks 32, and two support rods 73.

[0035] The placement block 80 is located on one side of the third track 23. The placement block 80 is provided with a groove 81 that is adapted to the barcode scanner bracket 200, and when the barcode scanner bracket 200 is placed in the groove 81, the magnet mounting hole 201 on the barcode scanner bracket 200 faces the outlet of the third track 23.

[0036] Please refer to Figure 2-3 For ease of illustration, only a portion of the magnets 203 within the push track 20 is shown in the figure. The working process of the magnet assembly device 100 provided by this utility model is as follows: Several magnets 202 are pre-placed in the first track 21. The several magnets 202 are located between the push end 31 of the first pusher 30 and the side wall of the end of the second track 22, and the first pusher 30 is pressed against by the telescopic spring 74, so that the first magnet 202 near the placement block 80 and the side wall of the second track 22 are pressed against each other and are not easy to move downward.

[0037] Insert the barcode scanner bracket 200 into the groove 81 on the placement block 80. Control the output end of the compressed cylinder 50 to move downward, pushing the first magnet 202, located at the intersection of the first track 21 and the second track 22, downward. This causes the first magnet 202 to move along the second track 22 to the entrance of the third track 23, corresponding to the second pusher 40. Then, activate the second pusher 40, which controls the first magnet 202 to move along the third track 23 and finally into the magnet mounting hole 201 on the barcode scanner bracket 200. Repeating the above process allows for the continuous installation of multiple magnets 202.

[0038] Beneficial effects: In this invention, a plurality of magnets 202 are pre-pressed against the side wall of the second track 22 by a supporting component 70. When the magnets 202 are installed on the barcode scanner bracket 200, the foremost magnet 202 is pushed into the second track 22 by a compression cylinder 50, and then the magnet 202 is pushed into the magnet mounting hole 201 on the barcode scanner bracket 200 by a second pushing component 40. Due to the elastic force of the telescopic spring 74, the first pushing component 30 continuously pushes multiple magnets 202 to the second track 22. The above process can be repeated multiple times, thereby realizing the continuous installation of multiple magnets 202. This reduces the steps of manually picking up the magnets 202 and aligning them with the magnet mounting hole 201 multiple times, thus improving assembly efficiency compared to the prior art.

Claims

1. A magnet assembly device, characterized in that, include: The push track includes a first track, a second track, and a third track connected in sequence. Several magnets are placed in the first track, and the third track corresponds to the magnet mounting holes on the barcode scanner bracket. The first pushing member is slidably disposed within the first track; A retaining component, which cooperates with the first pusher to press the magnet against the end of the second track; A compression cylinder, the output end of which corresponds to the second track, is used to push the magnet from the second track to the third track. The second pusher, which corresponds to the third track, is used to push the magnet from the third track into the magnet mounting hole on the barcode scanner bracket.

2. The magnet assembly equipment according to claim 1, characterized in that... The supporting assembly includes a first baffle and a telescopic spring. The first baffle is disposed on the side of the first pusher away from the magnet, and the two ends of the telescopic spring are respectively connected to the first pusher and the first baffle.

3. The magnet assembly equipment according to claim 2, characterized in that... The first pusher is provided with a support block, and the end face of the support block abuts against one end of the telescopic spring.

4. The magnet assembly equipment according to claim 2, characterized in that... The abutment assembly further includes a second baffle and a support rod. Both ends of the support rod are connected to the first baffle and the second baffle, respectively. The abutment block has an installation hole for the support rod to pass through. The telescopic spring is sleeved on the support rod. The second baffle is disposed on the first track and is disposed opposite to the first baffle.

5. The magnet assembly equipment according to claim 1, characterized in that... The second pusher is located below the first pusher.

6. The magnet assembly equipment according to claim 1, characterized in that... The first track and the third track are parallel to each other.

7. The magnet assembly equipment according to claim 6, characterized in that... The first track and the second track are perpendicular to each other.

8. The magnet assembly equipment according to claim 1, characterized in that... The second pusher is a cylinder, and the output end of the second pusher is positioned facing the entrance of the third track.

9. The magnet assembly equipment according to claim 1, characterized in that... The magnet assembly equipment also includes a placement block for placing a barcode scanner holder, the placement block being located on one side of the third track.