Disassembling tool for radiator

By designing a radiator removal tool with removable connection heating components and handles, the problem of multiple people heating solder simultaneously is solved, and a single person can quickly remove the radiator and improve disassembly efficiency.

CN223289106UActive Publication Date: 2025-09-02GUANGZHOU SHIYUAN ELECTRONICS CO LTD +1
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Patent Information

Application Number
CN202422081479.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-09-02
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

In the prior art, disassembly of radiators requires multiple people to use soldering irons to heat solder in different locations at the same time, resulting in inconvenient disassembly and assembly.

Method used

A radiator removal tool is designed, including a fixing frame, heating assembly and handle. The heating assembly can be detachably connected to the fixing frame. It is operated by a single person through the handle, adapting the number of solder and heating the solder to melt the solder and releasing the connection between the radiator and the circuit board.

Benefits of technology

Reduce personnel investment, improve the efficiency of radiator disassembly, and realize the rapid removal of radiator by single person.

✦ Generated by Eureka AI based on patent content.

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Abstract

The dismounting tool comprises a fixing frame, a heating assembly and a handle, the heating assembly comprises a mounting clamp and a heating piece, the mounting clamp is provided with a clamping opening, the mounting clamp is clamped to the fixing frame through the clamping opening and detachably connected with the fixing frame, and the heating piece is mounted on the mounting clamp; the handle is installed on the fixing frame and protrudes out of the fixing frame. The heating assemblies are detachably connected with the fixing frame, so that a user can conveniently increase and decrease the number of the heating assemblies on the fixing frame, the number of the heating assemblies on the fixing frame can be matched with the number of soldering tin between the radiator and the circuit board, each heating assembly can be used for heating one piece of soldering tin, the soldering tin is molten, and the soldering efficiency is improved. And releasing the connection between the radiator and the circuit board. The handle connecting fixing frame is designed, a single person can hold the handle conveniently, soldering tin is heated through the heating assembly, and compared with the mode that multiple persons use electric soldering irons to heat soldering tin at different positions, personnel investment can be reduced, and the disassembly efficiency of the radiator can be improved.
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Description

Technical Field

[0001] The present application relates to the technical field of disassembly and assembly equipment, and in particular to a disassembly tool for a radiator. Background Art

[0002] In order to improve the heat dissipation performance of electronic devices, a heat sink is usually installed on the circuit board, and the circuit board and the heat sink are connected and fixed by soldering or other means.

[0003] Because there are usually multiple soldering points between the circuit board and the heat sink, removing the heat sink requires multiple people to simultaneously use soldering irons to heat the solder at different locations on the heat sink, melting the solder and facilitating its removal from the circuit board. However, this method requires multiple operators to work simultaneously, making assembly and disassembly inconvenient. Utility Model Content

[0004] An embodiment of the present application provides a heat sink disassembly tool for improving the problem in the related art that multiple people are required to use soldering irons to heat the solder at different positions on the heat sink at the same time, which makes disassembly and assembly inconvenient.

[0005] An embodiment of the present application provides a heat sink disassembly tool, comprising:

[0006] Fixed frame;

[0007] The heating assembly includes a mounting clamp and a heating element. The mounting clamp has a clamping opening. The mounting clamp is clamped to the fixing frame via the clamping opening and is detachably connected to the fixing frame. The heating element is mounted on the mounting clamp.

[0008] The handle is installed on the fixing frame and protrudes from the fixing frame.

[0009] The heat sink removal tool of the present invention is designed with a removable connection between the heating element and the mounting bracket, allowing the user to easily add or remove the number of heating elements on the mounting bracket, so that the number of heating elements on the mounting bracket can be adapted to the amount of solder between the heat sink and the circuit board. Each heating element can be used to heat a solder, melting the solder and releasing the connection between the heat sink and the circuit board. The heating element is clamped to the mounting bracket via the jaws of the mounting clip, making it easy to assemble and disassemble.

[0010] The handle is designed to connect the fixing frame, which is convenient for the user to hold the handle alone and realize the heating component to heat the solder. Compared with the related technology that requires multiple people to use soldering irons to heat the solder at different positions, it can reduce manpower input and improve the disassembly efficiency of the radiator.

[0011] In some embodiments, the fixing frame is annular, and the mounting clip can slide along the circumference of the fixing frame.

[0012] Based on the above embodiment, when the disassembly tool is used to dismantle different heat sinks, the position of the mounting clip on the fixing frame can be adjusted to be close to the solder on the heat sink.

[0013] In some embodiments, the heating element includes a heating head and a connecting rod, wherein the connecting rod is connected between the heating head and the mounting clamp, and the connecting rod is a retractable rod.

[0014] Based on the above embodiment, the heating head is used to heat the solder, and the connecting rod is used to realize the connection between the heating head and the mounting clamp. The connecting rod is designed as a retractable rod, which is conducive to adjusting the length of the connecting rod, so that the heating head can be close to the solder, speeding up the melting speed of the solder and improving the efficiency of radiator removal.

[0015] In some embodiments, the heating head is bendable.

[0016] Based on the above embodiment, the shape of the heating head is changed to be closer to the solder, thereby accelerating the melting speed of the solder.

[0017] In some embodiments, the heating assembly further comprises:

[0018] A mounting block is provided with a lap groove and a first insertion hole, the mounting block is mounted on the mounting clamp via the lap groove, and the heating element is mounted on the mounting block;

[0019] The latch is provided with a second socket on the mounting clip, and the latch is inserted into the first socket and the second socket.

[0020] Based on the above embodiment, the heating element is installed on the mounting clamp through the mounting block and the latch, which is convenient for assembly and disassembly, and is convenient for maintenance, replacement and other operations.

[0021] In some embodiments, the heating assembly further includes a locking member, the mounting clamp is provided with a locking hole connected to the clamp opening, the locking member passes through the locking hole and is threadedly connected to the inner wall surface of the locking hole, and the locking member presses against the fixing frame.

[0022] Based on the above embodiment, the setting of the locking member is conducive to locking the heating component in position after it is adjusted to the fixed frame, so that the heating component is not easily moved during subsequent use, ensuring the smooth progress of disassembly work.

[0023] In some embodiments, the heating head of the heating element is located on the inner side of the fixing frame; or, the heating head of the heating element is located on the outer side of the fixing frame.

[0024] Based on the above embodiments, during actual use, the position of the heating head of the heating element can be adjusted according to needs.

[0025] In some embodiments, the heating assembly further comprises:

[0026] a controller electrically connected to the heating element;

[0027] The switch and the controller are electrically connected to the switch and are used to control the heating element to heat when the switch is closed.

[0028] Based on the above embodiment, the heating component can control the heating of the heating element through its own controller and switch. When the disassembly tool includes multiple heating components, the heating control of each heating element can be relatively independent.

[0029] In some embodiments, the disassembly tool includes multiple heating components, and the disassembly tool also includes a control component, which is electrically connected to the heating elements of all heating components and is used to control the synchronous heating of all heating elements.

[0030] Based on the above embodiment, the control component is designed to control the synchronous heating of all heating elements, which is beneficial to simplifying the control process of the disassembly tool and reducing manufacturing costs.

[0031] In some embodiments, the control component is installed in a fixing frame or a handle, and a plurality of first electrical connectors are provided at intervals on the fixing frame, and the first electrical connectors are electrically connected to the control component; a second electrical connector is provided on the mounting clamp, and the second electrical connector is electrically connected to the heating element, and when the mounting clamp is clamped on the fixing frame via the clamping mouth, the first electrical connector is electrically connected to the second electrical connector.

[0032] Based on the above embodiment, after the heating component is installed on the fixing frame via the mounting clip, the control component can be electrically connected to the heating element, and the control component can control the heating element to start heating.

[0033] In some embodiments, one of the first electrical connector and the second electrical connector is concavely arranged, and the other is convexly arranged.

[0034] Based on the above embodiment, after the heating assembly is mounted on the fixing frame and the first electrical connector is aligned with the second electrical connector, the first electrical connector and the second electrical connector can be interlocked, thereby improving the reliability of the electrical connection therebetween.

[0035] In some embodiments, the disassembly tool further includes a control switch, which is electrically connected to the control assembly. The control switch is disposed on the handle and is at least partially exposed on the surface of the handle.

[0036] Based on the above embodiment, the control switch is used to control the heating head in the heating element to heat when the control switch is closed, so that the user can manually start the heating of the heating head. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0038] Figure 1 is a schematic structural diagram of a heat sink disassembly tool provided in some embodiments of the present application in a use state;

[0039] Figure 2 yes Figure 1 A schematic structural diagram of a heating assembly in a disassembly tool is shown;

[0040] Figure 3 yes Figure 1 A schematic diagram of the structure of the disassembly tool in another use state is shown;

[0041] Figure 4 yes Figure 1 A schematic diagram of the control structure of the disassembly tool is shown;

[0042] Figure 5 is a schematic diagram of a control structure of a radiator disassembly tool provided in other embodiments of the present application;

[0043] Figure 6 yes Figure 5 A schematic structural diagram of a disassembly tool is shown;

[0044] Figure 7 yes Figure 6 A schematic structural diagram of a heating component in a disassembly tool is shown at one viewing angle;

[0045] Figure 8 yes Figure 6 A schematic structural diagram of the heating component in the disassembly tool is shown from another perspective.

[0046] Description of reference numerals:

[0047] 1. Disassembly tools;

[0048] 10. Fixing bracket; 11. First electrical connector;

[0049] 20. Heating assembly; 21. Mounting clamp; 211. Clamping opening; 212. Locking hole; 213. Second electrical connector; 214. Clamping plate; 215. Rotating shaft; 22. Heating element; 221. Heating head; 222. Connecting rod; 23. Mounting block; 231. Overlap groove; 232. First insertion hole; 233. Top plate; 234. Side plate; 24. Latch; 25. Locking member; 26. Controller; 27. Switch;

[0050] 30. Handle;

[0051] 40. Control components;

[0052] 50. Control switch. DETAILED DESCRIPTION

[0053] In order to make the objectives, technical solutions and advantages of the present application clearer, the embodiments of the present application will be described in further detail below with reference to the accompanying drawings.

[0054] When the following description refers to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Instead, they are merely examples of devices and methods consistent with certain aspects of the present application, as detailed in the appended claims.

[0055] In order to improve the heat dissipation performance of electronic devices, a heat sink is usually installed on the circuit board, and the circuit board and the heat sink are connected and fixed by soldering or other means.

[0056] Because there are usually multiple soldering points between the circuit board and the heat sink, removing the heat sink requires multiple people to simultaneously use soldering irons to heat the solder at different locations on the heat sink, melting the solder and facilitating its removal from the circuit board. However, this method requires multiple operators to work simultaneously, making assembly and disassembly inconvenient.

[0057] In an embodiment of the present application, a disassembly tool is designed to include a mounting bracket, a heating assembly, and a handle. The heating assembly is detachably connected to the mounting bracket, allowing the user to easily increase or decrease the number of heating assemblies on the mounting bracket so that the number of heating assemblies on the mounting bracket can be adapted to the amount of solder between the heat sink and the circuit board. Each heating assembly can be used to heat a solder, causing the solder to melt and release the connection between the heat sink and the circuit board. The handle is connected to the mounting bracket, making it easy for a single person to hold the handle and heat the solder with the heating assembly. Compared to multiple people using soldering irons to heat solder at different locations, this can reduce labor input and improve the efficiency of heat sink disassembly.

[0058] Specifically, see Figure 1 The disassembly tool 1 includes a fixing frame 10, a heating assembly 20, and a handle 30. The heating assembly 20 includes a mounting clamp 21 and a heating element 22. The mounting clamp 21 has a clamping opening 211. The mounting clamp 21 is clamped to the fixing frame 10 via the clamping opening 211 and is detachably connected to the fixing frame 10. The heating element 22 is mounted on the mounting clamp 21. The handle 30 is mounted on the fixing frame 10 and protrudes from the fixing frame 10.

[0059] The above-described design allows for a detachable connection between the heating assembly 20 and the mounting bracket 10, making it easy for the user to add or remove the number of heating assemblies 20 on the mounting bracket 10. This allows the number of heating assemblies 20 on the mounting bracket 10 to be tailored to the amount of solder between the heat sink and the circuit board. Each heating assembly 20 can be used to heat a solder, melting it and releasing the connection between the heat sink and the circuit board. The heating assembly 20 is clamped to the mounting bracket 10 via the clamping opening 211 of the mounting clip 21, making assembly and disassembly easy.

[0060] The handle 30 designed above is connected to the fixing frame 10, which is convenient for one person to hold the handle 30 and realize the heating component 20 to heat the solder. Compared with multiple people using soldering irons to heat the solder at different positions, it can reduce manpower input and improve the disassembly efficiency of the radiator.

[0061] The fixing frame 10 may be roughly annular, so that the heating elements 22 of the multiple heating assemblies 20 on the fixing frame 10 may be roughly distributed around the periphery of the heat sink to heat and melt the solder at different positions on the heat sink.

[0062] It is understood that the fixing frame 10 can be extended in a circular direction, a polygonal direction, etc. to form a ring shape, which is not limited to this. The outer contour line of the cross section of the fixing frame 10 can be substantially circular, polygonal, etc., which is not limited to this.

[0063] The fixing frame 10 can be a solid structure or a hollow structure. In the embodiment of the present application, the fixing frame 10 is a hollow structure in order to reduce the weight of the disassembly tool 1.

[0064] The heating assembly 20 is mounted on the fixing frame 10 and is used to heat and melt the solder between the heat sink and the circuit board so as to release the connection between the heat sink and the circuit board.

[0065] See Figure 2 In the heating assembly 20, the mounting clamp 21 includes two clamping plates 214, a rotating shaft 215 and a torsion spring (not shown in the figure). The rotating shaft 215 is connected between the two clamping plates 214. The torsion spring is sleeved on the rotating shaft 215 and its two ends respectively abut the two clamping plates 214, forming a clamping opening 211 between the two clamping plates 214.

[0066] The surfaces of the two clamping plates 214 forming the opening 211 can roughly match the outer surface of the fixing frame 10. For example, if the outer contour of the cross section of the fixing frame 10 is roughly circular, the surfaces of the clamping plates 214 forming the opening 211 can roughly be arc-shaped surfaces. For another example, if the outer contour of the cross section of the fixing frame 10 is roughly rectangular, the surfaces of the clamping plates 214 forming the opening 211 can roughly include two planes at right angles.

[0067] The mounting clip 21 can slide in the circumferential direction of the fixing frame 10 , so that when the disassembly tool 1 is used to remove different heat sinks, the position of the mounting clip 21 on the fixing frame 10 can be adjusted to be close to the solder on the heat sink.

[0068] See Figure 2 In the heating assembly 20, the heating element 22 includes a heating head 221 and a connecting rod 222. The connecting rod 222 is connected between the heating head 221 and the mounting clamp 21. The connecting rod 222 is a retractable rod. The heating head 221 is used to heat the solder, and the connecting rod 222 is used to connect the heating head 221 to the mounting clamp 21. The design of the connecting rod 222 as a retractable rod facilitates adjusting the length of the connecting rod 222, allowing the heating head 221 to be close to the solder, accelerating the solder melting speed, and improving the efficiency of heat sink removal.

[0069] The connecting rod 222 may include an inner rod and an outer rod, with the inner rod at least partially embedded in the outer rod and slidable relative to the outer rod. Thus, moving the inner rod outward from the outer rod can extend the length of the connecting rod 222, while moving the inner rod inward into the outer rod can shorten the length of the connecting rod 222.

[0070] The length of the connecting rod 222 can be adjusted manually or electrically, without limitation. If the length of the connecting rod 222 can be adjusted electrically, the heating assembly 20 can further include a sensor head for detecting the distance between the heating head 221 and the solder and controlling the length of the connecting rod 222 to be extended or shortened based on the distance.

[0071] The heating head 221 is bendable. For example, the heating head 221 is flexible, allowing the shape of the heating head 221 to be changed to approach the solder. Another example is that the heating head 221 includes multiple connecting arms that are hinged in sequence, allowing the angle between two adjacent connecting arms to be changed, allowing the heating head 221 to approach the solder. The heating head 221 can be bent manually or electrically, without limitation.

[0072] The heating assembly 20 further includes a mounting block 23 and a latch 24. The mounting block 23 is provided with a lap groove 231 and a first insertion hole 232. The mounting block 23 is mounted on the mounting clamp 21 via the lap groove 231, and the heating element 22 is mounted on the mounting block 23. The mounting clamp 21 is provided with a second insertion hole (not shown), and the latch 24 is inserted into the first insertion hole 232 and the second insertion hole. The heating element 22 is mounted on the mounting clamp 21 via the mounting block 23 and latch 24, which facilitates assembly and disassembly, and is convenient for maintenance and replacement.

[0073] The heating assembly 20 may include a plurality of pins 24. The mounting block 23 is provided with a first socket 232 corresponding to each pin 24, and the mounting clip 21 is provided with a second socket corresponding to each pin 24. Each pin 24 is inserted into the corresponding first socket 232 and second socket to improve the connection reliability between the mounting block 23 and the mounting clip 21. The connection between the pin 24 and the first socket 232 and the second socket may be an interference fit connection, a threaded fit connection, or the like, which is not limited thereto.

[0074] The mounting block 23 may include a top plate 233 and two side plates 234. The two side plates 234 are connected to the same side of the top plate 233 and are spaced apart to form a lap groove 231 with the top plate 233. The top plate 233 may be disposed corresponding to the outer peripheral surface of the mounting clip 21, and the two side plates 234 may be disposed corresponding to two opposing side surfaces of the mounting clip 21. The two side plates 234 may respectively abut against two opposing side surfaces of the mounting clip 21. When the mounting block 23 is attached to the mounting clip 21 via the lap groove 231, the two side plates 234 provide a pre-fixed position, facilitating the subsequent insertion of the latch 24 into the first and second receptacles 232 and 233.

[0075] The heating element 22 may be connected to the top plate 233 and / or the side plate 234. In the embodiment of the present application, the heating element 22 is connected to the top plate 233 so that the heating element 22 is approximately connected to the middle of the mounting block 23, which is beneficial to the balance of the mounting block 23.

[0076] The first insertion hole 232 on the mounting block 23 can extend through at least one side panel 234, without limitation. In the embodiment of the present application, the first insertion hole 232 on the mounting block 23 extends from one side panel 234 to the other side panel 234, and the second insertion hole on the mounting clip 21 extends through two opposing sides thereof. This allows the latch 24 to be inserted from one side panel 234, through the mounting clip 21, and into the other side panel 234, thereby improving the connection reliability between the mounting block 23 and the mounting clip 21. The latch 24 can have an interference fit with both side panels 234, while maintaining a gap fit with the mounting clip 21.

[0077] The heating assembly 20 also includes a locking member 25. The mounting clamp 21 is provided with a locking hole 212 that communicates with the clamp opening 211. The locking member 25 passes through the locking hole 212 and is threadedly connected to the inner wall of the locking hole 212. The locking member 25 presses against the fixing frame 10. The provision of the locking member 25 facilitates locking the heating assembly 20 in the correct position on the fixing frame 10 after it is adjusted to the correct position. This prevents the heating assembly 20 from being easily moved during subsequent use, ensuring smooth disassembly.

[0078] A buffer may be provided at one end of the locking member 25 close to the clamping opening 211 to reduce wear between the locking member 25 and the fixing frame 10 and extend the service life of the locking member 25 and the fixing frame 10 .

[0079] It is understandable that, in addition to being locked to a fixed position on the fixing frame 10 by the above-mentioned locking member 25, the heating component 20 can also be locked to a fixed position on the fixing frame 10 by a snap-fit ​​method, motor self-locking method, etc., without limitation.

[0080] See Figure 1 The heating head 221 of the heating element 22 may be located on the inner side of the fixing frame 10; Figure 3 The heating head 221 of the heating element 22 may also be located outside the fixing frame 10 . In actual use, the position of the heating head 221 of the heating element 22 may be adjusted according to needs.

[0081] In some embodiments, see Figure 4 The heating component 20 also includes a controller 26, which is electrically connected to the heating element 22 (such as the heating head 221) for controlling the heating of the heating element 22. That is, the heating component 20 can control the heating of the heating element 22 through its own controller 26. When the disassembly tool 1 includes multiple heating components 20, the heating control of each heating element 22 can be relatively independent, and the heating power of the corresponding heating element 22 can be adjusted in combination with actual needs, so that when all the heating elements 22 are heated, the solder at the corresponding position can be melted within a nearly consistent time, which is beneficial for the removal of the radiator. The heating power of the heating element 22 can be adjusted according to the size of the solder at the corresponding position; for example, the larger the solder, the higher the heating power of the heating element 22 can be adjusted, and the smaller the solder, the lower the heating power of the heating element 22 can be adjusted.

[0082] The controller 26 may be disposed within the mounting block 23. The controller 26 and the heating element 22 (e.g., the heating head 221) may be electrically connected via wires or the like; the wires between the controller 26 and the heating head 221 may pass through the connecting rod 222 to prevent the wires from being exposed.

[0083] Further, see Figure 3 and Figure 4 The heating assembly 20 further includes a switch 27. The controller 26 is electrically connected to the switch 27 and is configured to control the heating element 22 (e.g., the heating head 221) to heat when the switch 27 is closed, thereby facilitating a user to manually activate the heating element 22. The switch 27 may be disposed on the mounting block 23 and at least partially exposed on the surface of the mounting block 23 so that the user can touch the switch 27.

[0084] In other embodiments, see Figure 5The disassembly tool 1 further includes a control assembly 40, which is electrically connected to the heating elements 22 of all heating assemblies 20 and is used to control the synchronous heating of all heating elements 22. Designing the control assembly 40 to control the synchronous heating of all heating elements 22 helps to simplify the control process of the disassembly tool 1 and reduce manufacturing costs.

[0085] The control assembly 40 can be installed in the fixing frame 10 or in the handle 30. In the embodiment of the present application, the control assembly 40 is installed in the handle 30. The handle 30 is relatively large, which is more conducive to the installation of the control assembly 40.

[0086] The control assembly 40 and the heating element 22 can be electrically connected through the first electrical connector 11 and the second electrical connector 213. Figures 5 to 7 The mounting frame 10 is provided with a plurality of spaced first electrical connectors 11, which are electrically connected to the control assembly 40. The mounting clip 21 of the heating assembly 20 is provided with a second electrical connector 213, which is electrically connected to the heating element 22. When the mounting clip 21 is clamped to the mounting frame 10 via the clamping opening 211, the first electrical connectors 11 and the second electrical connectors 213 are electrically connected. In this way, after the heating assembly 20 is mounted on the mounting frame 10 via the mounting clip 21, the control assembly 40 and the heating element 22 are electrically connected, and the control assembly 40 can control the heating element 22 to start heating.

[0087] The above-mentioned fixing frame 10 is provided with multiple first electrical connectors 11 at intervals, which is convenient for the second electrical connector 213 of the heating component 20 to be electrically connected to another first electrical connector 11 on the fixing frame 10 when the position of the heating component 20 on the fixing frame 10 changes due to the solder position on the adaption heat sink, thereby ensuring the electrical connection between the heating component 22 and the control component 40.

[0088] It is understandable that, the more the number of first electrical connectors 11 provided on the fixing frame 10 is, the more adjustable positions the heating assembly 20 can have on the fixing frame 10 , and the more types of radiators that can be adapted.

[0089] See Figure 7 , the second electrical connector 213 can be located on the inner wall surface of the mounting clip 21 forming the clamping opening 211. Figure 7 and Figure 8 The second electrical connector 213 and the locking hole 212 can be located on opposite sides of the mounting clip 21, so that when the locking member 25 on one side of the mounting clip 21 presses against the fixing frame 10, the second electrical connector 213 on the other side of the mounting clip 21 can gradually approach the first electrical connector 11 on the fixing frame 10, thereby improving the reliability of the electrical connection between the second electrical connector 213 and the first electrical connector 11.

[0090] Alternatively, one of the first electrical connector 11 and the second electrical connector 213 may be concave, and the other may be convex. Thus, after the heating assembly 20 is mounted on the fixing frame 10 and the first electrical connector 11 and the second electrical connector 213 are aligned, the first electrical connector 11 and the second electrical connector 213 can be interlocked, thereby improving the reliability of the electrical connection between the two.

[0091] Furthermore, one of the outwardly protruding parts of the first electrical connector 11 and the second electrical connector 213 is elastic, so that when the heating component 20 slides on the fixing frame 10 until the first electrical connector 11 and the second electrical connector 213 are aligned, a certain resistance can be generated, which is helpful in reminding the user that the first electrical connector 11 and the second electrical connector 213 are aligned.

[0092] Further, see Figure 5 The disassembly tool 1 further includes a control switch 50, which is electrically connected to the control assembly 40 and is used to control the heating head 221 in the heating element 22 to heat when the control switch 50 is closed, so that the user can manually start heating the heating head 221. The control switch 50 can be provided on the handle 30 and at least partially exposed on the surface of the handle 30 so that the user can touch the control switch 50.

[0093] In the description of this application, it should be understood that the terms "first", "second", etc. are used for descriptive purposes only and should not be understood as indicating or implying relative importance. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances. In addition, in the description of this application, unless otherwise specified, "multiple" refers to at least two, for example, two, three, four, etc. "and / or" describes the association relationship of associated objects, indicating that three relationships may exist. For example, A and / or B can represent: A exists alone, A and B exist at the same time, and B exists alone. The character " / " generally indicates that the previous and subsequent associated objects are in an "or" relationship.

[0094] The above disclosure is only a preferred embodiment of the present application, and certainly cannot be used to limit the scope of rights of the present application. Therefore, equivalent changes made according to the claims of the present application are still within the scope covered by the present application.

Claims

1. A radiator disassembly tool (1), characterized in that: include: Fixed frame (10); A heating assembly (20), the heating assembly (20) comprising a mounting clamp (21) and a heating element (22), the mounting clamp (21) having a clamping opening (211), the mounting clamp (21) being clamped to the fixing frame (10) via the clamping opening (211) and being detachably connected to the fixing frame (10), and the heating element (22) being mounted on the mounting clamp (21); A handle (30) is mounted on the fixing frame (10) and protrudes from the fixing frame (10).

2. The disassembly tool (1) according to claim 1, characterized in that The fixing frame (10) is annular, and the mounting clip (21) can slide in the circumferential direction of the fixing frame (10).

3. The disassembly tool (1) according to claim 1, characterized in that The heating element (22) comprises: Heating head (221); A connecting rod (222), the connecting rod (222) is connected between the heating head (221) and the mounting clamp (21), and the connecting rod (222) is a telescopic rod.

4. The disassembly tool (1) according to claim 3, characterized in that The heating head (221) is bendable.

5. The disassembly tool (1) according to claim 1, characterized in that The heating assembly (20) further comprises: A mounting block (23), the mounting block (23) being provided with a lap groove (231) and a first insertion hole (232), the mounting block (23) being mounted on the mounting clamp (21) via the lap groove (231), and the heating element (22) being mounted on the mounting block (23); The mounting clip (21) is provided with a second insertion hole, and the mounting pin (24) is inserted into the first insertion hole (232) and the second insertion hole.

6. The disassembly tool (1) according to claim 1, characterized in that The heating assembly (20) further comprises: A locking member (25), wherein the mounting clamp (21) is provided with a locking hole (212) communicating with the clamp opening (211), the locking member (25) passes through the locking hole (212) and is threadedly connected to the inner wall surface of the locking hole (212), and the locking member (25) presses against the fixing frame (10).

7. The disassembly tool (1) according to claim 1, characterized in that The heating head (221) of the heating element (22) is located on the inner side of the fixing frame (10); or, the heating head (221) of the heating element (22) is located on the outer side of the fixing frame (10).

8. The disassembly tool (1) according to claim 1, characterized in that The heating assembly (20) further comprises: a controller (26), the controller (26) being electrically connected to the heating element (22); A switch (27), wherein the controller (26) is electrically connected to the switch (27) and is used to control the heating element (22) to heat when the switch (27) is closed.

9. The disassembly tool (1) according to claim 1, characterized in that The disassembly tool (1) comprises a plurality of the heating components (20), and the disassembly tool (1) further comprises: A control component (40) is electrically connected to the heating elements (22) of all the heating components (20) and is used to control the synchronous heating of all the heating elements (22).

10. The disassembly tool (1) according to claim 9, characterized in that The control assembly (40) is installed in the fixing frame (10) or in the handle (30), and a plurality of first electrical connectors (11) are provided on the fixing frame (10) at intervals, and the first electrical connectors (11) are electrically connected to the control assembly (40); A second electrical connector (213) is provided on the mounting clamp (21), and the second electrical connector (213) is electrically connected to the heating element (22). When the mounting clamp (21) is clamped on the fixing frame (10) via the clamping opening (211), the first electrical connector (11) is electrically connected to the second electrical connector (213).

11. The disassembly tool (1) according to claim 10, characterized in that One of the first electrical connector (11) and the second electrical connector (213) is concavely arranged, and the other is convexly arranged; And / or, the disassembly tool (1) further comprises a control switch (50), the control switch (50) being electrically connected to the control assembly (40), the control switch (50) being arranged on the handle (30) and at least partially exposed on the surface of the handle (30).