AOP repair auxiliary dismounting tool

By designing an auxiliary disassembly tool for AOP antenna unit, the abutment groove of the detachable part is connected to the radiation unit, the problem of difficulty in disassemblying the AOP antenna unit and the radiation unit is solved, and the operation efficiency and connection stability are improved.

CN222857853UActive Publication Date: 2025-05-13CHENGDU TIANDI YIGE TECH CO LTD
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Patent Information

Application Number
CN202421371381.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-14
Publication Date
2025-05-13
Estimated Expiration
2034-06-14

AI Technical Summary

Technical Problem

It is difficult to disassemble the AOP antenna unit and the radiation unit, especially due to the special material and limited operating space of the radiation unit, it causes troublesome operation.

Method used

A AOP repair auxiliary disassembly tool is designed, including a detachable part, and the auxiliary disassembly and assembly of the radiation unit and the AOP antenna unit are assisted by providing a contact groove and an elastic clip on the top of the radiation unit.

Benefits of technology

Through this auxiliary disassembly tooling, the operator can disassemble and repair the AOP antenna unit more easily, improving operational efficiency and reducing the risk of detachable parts falling off during disassembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an AOP repair auxiliary dismounting tool which is used for being connected with a radiation unit, the bottom of the radiation unit is connected with an AOP antenna unit, and the top of the radiation unit is provided with an abutting groove. Comprising a detachable part, and the detachable part is arranged at the top of the radiation unit, abuts against the abutting groove and is used for assisting the radiation unit to achieve disassembly and assembly of the AOP antenna unit. According to the utility model, the problem that the radiation unit and the AOP antenna unit are inconvenient to detach and separate in the prior art is solved, the detachable part is additionally arranged at the top of the radiation unit, and the radiation unit and the AOP antenna unit are pulled out in an auxiliary manner through the detachable part, so that an operator can detach and maintain the antenna conveniently, and the efficiency of the operator is improved. The detachable part is connected to the top of the radiation unit to realize connection and disassembly with the radiation unit, thereby facilitating operation of an operator.
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Description

Technical Field

[0001] The utility model relates to the technical field of auxiliary disassembly and assembly, and in particular to an AOP rework auxiliary disassembly tool. Background Art

[0002] During product assembly and debugging, when a fault is found in an AOP antenna unit, the single unit needs to be repaired. However, the top of the AOP antenna unit is often fixed with a radiating unit, but due to the small area of ​​the radiating unit, limited operating space and no corresponding fixed installation point, it is difficult to disassemble and causes trouble for the operator.

[0003] At present, the rework of the radiation unit is an important issue. If it is not handled properly, it will cause great losses. Since the special material of the radiation unit is difficult to separate, an AOP rework auxiliary disassembly tool is needed to solve the above problem. Utility Model Content

[0004] The technical problem to be solved by the utility model is that the radiation unit and the AOP antenna unit are not easy to disassemble and separate, and the purpose is to provide an AOP rework auxiliary disassembly tool to solve the problem in the prior art that the radiation unit and the AOP antenna unit are not easy to disassemble and separate.

[0005] The utility model is realized by the following technical solutions:

[0006] An AOP rework auxiliary disassembly tool is used to connect with a radiation unit, wherein an AOP antenna unit is connected to the bottom of the radiation unit and an abutment groove is provided on the top of the radiation unit; the tool comprises a detachable part, which is arranged on the top of the radiation unit and abuts against the abutment groove in a working state, and is used to assist the radiation unit to achieve disassembly and assembly with the AOP antenna unit.

[0007] Further optimization, in order to ensure the connection strength between the detachable part and the radiation unit, is set as follows: the detachable part includes a first elastic clip and a second elastic clip, the first elastic clip and the second elastic clip are integrally connected at the top and the bottom abuts against a plurality of abutment grooves.

[0008] Through the above arrangement, the risk of the detachable part falling off during the pulling process is reduced, and the stability of the connection is increased by providing the first elastic clamp and the second elastic clamp.

[0009] Further optimized, the length of the first elastic clamp is greater than the length of the second elastic clamp.

[0010] Through the above arrangement, it is ensured that abutment can be achieved at different positions on the radiation unit, thereby increasing the stability of the connection.

[0011] Further optimized, the first elastic clamp and the second elastic clamp both include a lifting portion and an abutting portion, the lifting portion is located at the top of the abutting portion and the abutting portion is used to abut against the abutting groove.

[0012] Further optimized, the lifting portion includes an elastic U-shaped plate arranged on the top of the abutment portion.

[0013] Further optimized, the abutment portion includes two barb pieces, and the two barb pieces are symmetrically arranged on both sides of the bottom of the corresponding elastic U-shaped plate, and the two barb pieces abut against the corresponding abutment grooves.

[0014] Further optimized, the two barbed hooks are integrally connected with the corresponding elastic U-shaped plates.

[0015] Further optimized, the two barb pieces each include a plurality of barbs evenly distributed on one side of the bottom of the elastic U-shaped plate and integrally connected.

[0016] Further optimization, in order to increase the stability of the connection between the barb and the abutment groove, is set as follows: a recessed portion is provided on one side of the abutment groove abutting against the barb.

[0017] Further optimization, the AOP antenna unit and the radiation unit are welded. Therefore, before pulling, the AOP antenna unit needs to be heated to a certain temperature to melt the solder between the radiation unit and the AOP unit, and then the detachable part is slowly pulled up, and the radiation unit is also pulled up at the same time to achieve separation.

[0018] The working principle of the utility model is:

[0019] During disassembly, the detachable part is installed to abut against the top of the radiation unit and fixedly connected to the radiation unit, and the detachable part is pulled to separate the radiation unit and the AOP antenna unit.

[0020] Once disassembly is complete, the removable parts can be removed, and the operator can then inspect and service the individual AOP antenna units.

[0021] Compared with the prior art, the utility model has the following advantages and beneficial effects:

[0022] 1. By adding a detachable part on the top of the radiation unit, the radiation unit and AOP antenna unit can be pulled out with the assistance of the detachable part, so as to facilitate the disassembly and maintenance of the operator and improve the efficiency of the operator.

[0023] 2. The detachable part is connected to the top of the radiation unit to realize the connection and disassembly with the radiation unit, which is convenient for the operator to operate. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The drawings described herein are used to provide a further understanding of the embodiments of the present utility model, constitute a part of this application, and do not constitute a limitation of the embodiments of the present utility model. In the drawings:

[0025] Figure 1 It is a schematic diagram of the structure of an embodiment of the utility model;

[0026] Figure 2 It is a front view of a new embodiment of this experiment.

[0027] Marks and corresponding parts names in the attached drawings:

[0028] 1-radiation unit, 11-abutment groove, 2-AOP antenna unit, 3-first elastic clamp, 4-second elastic clamp, 5-elastic U-shaped plate, 6-barb. DETAILED DESCRIPTION

[0029] In order to make the purpose, technical solutions and advantages of the utility model more clearly understood, the utility model is further described in detail below in conjunction with embodiments and drawings. The schematic implementation manner of the utility model and its description are only used to explain the utility model and are not intended to limit the utility model.

[0030] This embodiment provides an AOP repair auxiliary disassembly tool for connecting to a radiation unit 1, wherein the bottom of the radiation unit 1 is connected to an AOP antenna unit 2, and the top of the radiation unit 1 is provided with an abutment groove 11; Figure 1-Figure 2 As shown, it includes a detachable part, which is arranged on the top of the radiation unit 1 and abuts against the abutment groove 11 in the working state, and is used to assist the radiation unit 1 to achieve disassembly and assembly with the AOP antenna unit 2.

[0031] In the prior art, the top of the AOP antenna unit 2 is fixedly connected to the radiation unit 1, but due to the small area of ​​the radiation unit 1, limited operating space and no corresponding fixed installation point, it is difficult to disassemble and causes trouble for the operator.

[0032] In order to solve the above problem, the present application utilizes the original structure of the radiation unit 1 to install a detachable abutment part on the top thereof to ensure stable disassembly of the radiation unit 1 and the AOP antenna unit 2 .

[0033] Specifically, the working process of this embodiment is as follows:

[0034] During disassembly, the detachable part is installed to abut against the top of the radiation unit 1 and fixedly connected to the abutment groove 11 of the radiation unit 1 , and the detachable part is pulled to separate the radiation unit 1 and the AOP antenna unit 2 .

[0035] After the disassembly is completed, the detachable parts can be removed, and then the operator can inspect and repair the single AOP antenna unit 2.

[0036] In this process, the AOP antenna unit 2 and the radiation unit 1 are welded. Therefore, before pulling, the AOP antenna unit 2 needs to be heated to a certain temperature to melt the solder between the radiation unit 1 and the AOP antenna unit 2, and then slowly pull up the detachable part, and the radiation unit 1 is also pulled up at the same time to achieve separation. It should be understood that in the existing use process, the connection form between the radiation unit 1 and the AOP antenna unit 2 is not limited to welding, and can also be bonding, clamping, etc. In order to ensure stability during use, the radiation unit 1 and the AOP antenna unit 2 are welded, so heating is required before separation.

[0037] Further optimized, the detachable component comprises a first elastic clamp 3 and a second elastic clamp 4 , the first elastic clamp 3 and the second elastic clamp 4 are integrally connected at the top and abut against a plurality of abutment grooves 11 at the bottom.

[0038] In this embodiment, two elastic clips, namely, the first elastic clip 3 and the second elastic clip 4 are connected to the abutment groove 11 of the radiation unit 1, thereby ensuring the stability of the connection between the detachable part and the radiation unit 1. It should be understood that the detachable part can have only one elastic clip, and the detachable part can be set according to the specific actual situation. In this embodiment, the first elastic clip 3 and the second elastic clip 4 are set to increase the stability of the connection in order to reduce the risk of the detachable part falling off during the pulling process.

[0039] Specifically, the first elastic clip 3 and the second elastic clip 4 use their own elasticity to abut against the abutment groove 11. When pulling, the first elastic clip 3 and the second elastic clip 4 are firmly connected to the abutment groove 11 by static friction, ensuring that the first elastic clip 3 and the second elastic clip 4 are firmly connected to the top of the radiation unit 1.

[0040] The length of the first elastic clamp 3 is greater than that of the second elastic clamp 4. Through the above arrangement, it is ensured that abutment can be achieved at different positions on the radiation unit 1, thereby increasing the stability of the connection.

[0041] Further optimized, the first elastic clamp 3 and the second elastic clamp 4 both include a lifting portion and an abutting portion, the lifting portion is located at the top of the abutting portion and the abutting portion is used to abut against the abutting groove 11. In this embodiment, the lifting portion is used for the operator to hold it for operation and provide elastic force, and the abutting portion is used to abut against the abutting groove 11 to connect with the radiation unit 1.

[0042] According to another embodiment of the utility model, Figure 1 and Figure 2As shown, the lifting part includes an elastic U-shaped plate 5 arranged on the top of the abutting part. The elastic U-shaped plate 5 provides elastic force to achieve expansion and contraction. In the initial state, the elastic U-shaped plate 5 is in an elastic deformation state, so that the abutting part at the bottom abuts against the abutting groove 11 to generate pressure. When lifting, the abutting part and the abutting groove 11 generate static friction to ensure stable connection.

[0043] Further optimized, the abutting portion includes two barbs, which are symmetrically arranged on both sides of the bottom of the corresponding elastic U-shaped plate 5, and the two barbs abut against the corresponding abutting groove 11. Figure 2 As shown, the two barb pieces are integrally connected to the correspondingly connected elastic U-shaped plate 5. Both of the two barb pieces include a plurality of barbs 6 uniformly distributed on one side of the bottom of the elastic U-shaped plate 5 and integrally connected. In this embodiment, the plurality of barbs 6 on the barb piece are abutted against the abutment groove 11 to increase the abutment force of the detachable part.

[0044] Further optimization, in order to increase the stability of the connection between the barb 6 and the abutment groove 11, is set as follows: a recessed portion is provided on one side of the abutment groove 11 abutting the barb 6. By locating a plurality of barbs 6 at the recessed portion, the stability of the connection between the abutment portion and the abutment groove 11 is further ensured.

[0045] The specific working process of the utility model is:

[0046] During disassembly, the detachable part is installed to abut against the top of the radiation unit 1 and fixedly connected to the radiation unit 1 , and the detachable part is pulled to separate the radiation unit 1 and the AOP antenna unit 2 .

[0047] The detachable part comprises a first elastic clamp 3 and a second elastic clamp 4, and the length of the first elastic clamp 3 is greater than the length of the second elastic clamp 4, so as to ensure that abutment can be achieved at different positions on the radiation unit 1, thereby increasing the stability of the connection.

[0048] The first elastic clamp 3 and the second elastic clamp 4 both include a lifting portion and an abutting portion. The lifting portion is used for the operator to hold for operation and provide elastic force, and the abutting portion is used to abut against the abutting groove 11 to connect with the radiation unit 1.

[0049] The lifting portion includes an elastic U-shaped plate 5 arranged at the top of the abutment portion. The setting of the elastic U-shaped plate 5 is convenient for the staff to hold it from the inside to pull the radiation unit 1 upward to separate it from the AOP antenna unit 2. In the initial state, the elastic U-shaped plate 5 is in an elastic deformation state, so that the abutment portion at the bottom abuts against the abutment groove 11 to generate pressure. When pulling, the abutment portion and the abutment groove 11 generate static friction to ensure a stable connection.

[0050] The abutting portion includes two barbs, which are symmetrically arranged on both sides of the bottom of the corresponding elastic U-shaped plate 5, and the two barbs abut against the corresponding abutting groove 11. The two barbs are integrally connected to the corresponding connected elastic U-shaped plate 5. The two barbs each include a plurality of barbs 6 uniformly distributed on one side of the bottom of the elastic U-shaped plate 5 and integrally connected, and a recess is provided on one side where the abutting groove 11 abuts against the barbs 6. The abutting force of the detachable part is increased by abutting against the abutting groove 11 through the plurality of barbs 6 on the barbs. By making the plurality of barbs 6 located at the recessed position, the stability of the connection between the abutting portion and the abutting groove 11 is further ensured.

[0051] In this embodiment, there are four abutment grooves 11 on the top of the radiation unit 1, which abut against the four barb pieces one by one.

[0052] After the disassembly is completed, the two sides of the elastic U-shaped plate 5 are pressed, and the multiple barbs 6 are separated from the abutment grooves 11. The entire detachable part is removed, and the operator can then inspect and repair the single AOP antenna unit 2.

[0053] In this process, the AOP antenna unit 2 and the radiation unit 1 are welded. Therefore, before pulling, the AOP antenna unit needs to be heated to a certain temperature to melt the solder between the radiation unit 1 and the AOP antenna unit 2, and then slowly pull up the detachable part, and the radiation unit 1 is also pulled up at the same time to achieve separation. It should be understood that in the existing use process, the connection form between the radiation unit 1 and the AOP antenna unit 2 is not limited to welding, and can also be in the form of bonding, clamping, etc. In order to ensure stability during use, the radiation unit 1 and the AOP antenna unit 2 are welded, so heating operation is required before separation.

[0054] The specific implementation methods described above further illustrate the purpose, technical solutions and beneficial effects of the utility model in detail. It should be understood that the above description is only the specific implementation method of the utility model and is not used to limit the protection scope of the utility model. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the utility model should be included in the protection scope of the utility model.

Claims

1. An AOP repair auxiliary disassembly tool, used for connecting to a radiation unit (1), wherein the bottom of the radiation unit (1) is connected to an AOP antenna unit (2), and the top of the radiation unit (1) is provided with a plurality of abutment grooves (11); characterized in that: It comprises a detachable part, which is arranged on the top of the radiation unit (1) in a working state and abuts against the abutment groove (11), and is used to assist the radiation unit (1) to achieve disassembly and assembly with the AOP antenna unit (2).

2. The AOP rework auxiliary disassembly tool according to claim 1, characterized in that: The detachable component comprises a first elastic clamp (3) and a second elastic clamp (4); the first elastic clamp (3) and the second elastic clamp (4) are integrally connected at the top and abut against a plurality of abutment grooves (11) at the bottom.

3. The AOP rework auxiliary disassembly tool according to claim 2, characterized in that: The length of the first elastic clamp (3) is greater than the length of the second elastic clamp (4).

4. The AOP rework auxiliary disassembly tool according to claim 2 or 3, characterized in that: The first elastic clamp (3) and the second elastic clamp (4) both comprise a lifting portion and an abutting portion, the lifting portion is located at the top of the abutting portion and the abutting portion is used to abut against the abutting groove (11).

5. The AOP rework auxiliary disassembly tool according to claim 4, characterized in that: The lifting portion comprises an elastic U-shaped plate (5) arranged on the top of the abutment portion.

6. The AOP rework auxiliary disassembly tool according to claim 4, characterized in that: The abutting portion comprises two barbed hooks, which are symmetrically arranged on both sides of the bottom of the corresponding elastic U-shaped plate (5), and the two barbed hooks abut against the corresponding abutting grooves (11).

7. The AOP rework auxiliary disassembly tool according to claim 6, characterized in that: The two barbed hooks are integrally connected to the correspondingly connected elastic U-shaped plates (5).

8. The AOP rework auxiliary disassembly tool according to claim 7, characterized in that: The two barb parts each comprise a plurality of barbs (6) evenly distributed on one side of the bottom of the elastic U-shaped plate (5) and integrally connected.

9. The AOP repair auxiliary disassembly tool according to claim 8, characterized in that: A recessed portion is provided on one side of the abutting groove (11) abutting against the barb (6).

10. The AOP rework auxiliary disassembly tool according to claim 1, characterized in that: The AOP antenna unit (2) and the radiation unit (1) are welded.