Hanger jig structure for heat sink
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUIZHOU HENGXINLIAN TECH CO LTD
- Filing Date
- 2025-07-24
- Publication Date
- 2026-08-07
AI Technical Summary
[0004]然而,由于压紧组件用于压紧散热器的另一侧面,即使得压紧组件用于压紧散热器的外观面,以使压紧组件与散热器的外观面之间直接接触,从而使得压紧组件与散热器的外观面之间较易出现摩擦,以使散热器的外观面较易出现损伤,进而使得治具结构对散热器的外观面的保护性能较差
[0021] 1. Since the first hook-up assembly is used to pass through the first process hole of the radiator and to connect with the radiator hook-up, the first hook-up assembly is used to fasten one end of the radiator; at the same time, the second hook-up assembly is used to pass through the second process hole of the radiator and to connect with the radiator hook-up, the second hook-up assembly is used to fasten the other end of the radiator, so that the first hook-up assembly and the second hook-up assembly work together to fasten and fix the position of the radiator, thus completing the fixing process of the radiator.
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Figure CN224601606U_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the technical field of fixtures for radiator processing, and in particular to a bracket fixture structure for radiators. Background Technology
[0002] A radiator is a heat exchange device that accelerates heat dissipation through surface radiation and air convection. Radiators are widely used in engineering machinery, automotive cooling systems, solar panels, air conditioning cooling systems, ore smelting systems, and dehumidification and drying systems. A radiator has an external surface and a process surface. The bottom surface is the process surface, while all other surfaces are external surfaces. The process surface has multiple process holes spaced apart. The radiator is fixed in place using a fixture structure.
[0003] The fixture structure of the related technology includes a main body, a positioning component, and a clamping component. Both the positioning component and the clamping component are connected to the main body. The positioning component has a positioning cavity for receiving the heat sink. The inner wall of the positioning cavity has an adsorption hole for adsorbing one side of the heat sink. The clamping component is used to clamp the other side of the heat sink to complete the fixing process, such as Chinese Patent No. CN202023258174.8.
[0004] However, since the clamping component is used to clamp the other side of the radiator, that is, to clamp the outer surface of the radiator, so that the clamping component and the outer surface of the radiator are in direct contact, friction is more likely to occur between the clamping component and the outer surface of the radiator, making the outer surface of the radiator more susceptible to damage, and thus the fixture structure provides poor protection for the outer surface of the radiator. Utility Model Content
[0005] The purpose of this disclosure is to overcome the shortcomings of the prior art and provide a mounting fixture structure for radiators that provides better protection for the exterior surface of the radiator.
[0006] The purpose of this disclosure is achieved through the following technical solution:
[0007] A mounting bracket structure for a radiator, connected to the radiator, includes:
[0008] Jig frame;
[0009] The first hanging component is connected to the fixture frame. The first hanging component is used to pass through the first process hole of the radiator and to be connected to the radiator hanging component, so that the first hanging component is used to fasten one end of the radiator.
[0010] The second hanging component is connected to the fixture frame. The first hanging component and the second hanging component are arranged opposite to each other. The second hanging component is used to pass through the second process hole of the radiator and to be connected to the radiator by a hanging bracket, so that the second hanging component is used to fasten the other end of the radiator.
[0011] In one embodiment, the fixture frame has a first connecting through hole; the first hanging bracket includes a first connecting rod and a first hanging part, the first connecting rod is connected to the first hanging part, the first connecting rod passes through the first connecting through hole and is connected to the fixture frame, and the first hanging part is used to pass through the first process hole and to be connected to the radiator, so that the first hanging part is used to fasten one end of the radiator.
[0012] In one embodiment, the first connecting rod is welded to the fixture frame.
[0013] In one embodiment, there are multiple first hook parts, which are spaced apart. Each first hook part is welded to the first connecting rod body. Each first hook part is used to pass through the corresponding first process hole and to connect with the corresponding radiator hook, so that each first hook part is used to fasten one end of the corresponding radiator.
[0014] In one embodiment, each of the first hanging parts includes a first welding seat and a first hanging post connected to each other. Each of the first welding seats is welded to the first connecting rod body. Each of the first hanging posts is used to pass through the corresponding first process hole and to be connected to the corresponding radiator hanging post, so that each of the first hanging posts is used to fasten one end of the corresponding radiator.
[0015] In one embodiment, the fixture frame has a second connecting through hole; the second hanging bracket includes a second connecting rod and a second hanging part, the second connecting rod is connected to the second hanging part, the second connecting rod passes through the second connecting through hole and is connected to the fixture frame, and the second hanging part is used to pass through the second process hole and is used to hang the radiator, so that the second hanging part is used to fasten the other end of the radiator.
[0016] In one embodiment, the second connecting rod is welded to the fixture frame.
[0017] In one embodiment, there are multiple second hook parts, which are spaced apart. Each second hook part is welded to the second connecting rod body. Each second hook part is used to pass through the corresponding second process hole and to connect with the corresponding radiator hook, so that each second hook part is used to fasten the other end of the corresponding radiator.
[0018] In one embodiment, each of the second hanging parts includes a second welding seat and a second hanging post connected to each other. Each of the second welding seats is welded to the second connecting rod body. Each of the second hanging posts is used to pass through the corresponding second process hole and to be connected to the corresponding radiator hanging post, so that each of the second hanging posts is used to fasten the other end of the corresponding radiator.
[0019] In one embodiment, there are two second hanging posts, which are symmetrically distributed about the central axis of the second welding seat.
[0020] Compared with the prior art, this disclosure has at least the following advantages:
[0021] 1. Since the first hook-up assembly is used to pass through the first process hole of the radiator and to connect with the radiator hook-up, the first hook-up assembly is used to fasten one end of the radiator; at the same time, the second hook-up assembly is used to pass through the second process hole of the radiator and to connect with the radiator hook-up, the second hook-up assembly is used to fasten the other end of the radiator, so that the first hook-up assembly and the second hook-up assembly work together to fasten and fix the position of the radiator, thus completing the fixing process of the radiator.
[0022] 2. Since the first mounting bracket assembly is used to pass through the first process hole of the radiator and to connect with the radiator mounting bracket, the first mounting bracket assembly is used to connect with the process surface of the radiator; at the same time, the second mounting bracket assembly is used to pass through the second process hole of the radiator and to connect with the radiator mounting bracket, the second mounting bracket assembly is used to connect with the process surface of the radiator. This allows the first and second mounting bracket assemblies to work together on the process surface of the radiator to fix the position of the radiator. In other words, the mounting fixture structure for the radiator acts on the process surface of the radiator to fix the position of the radiator, thus avoiding the problem of direct contact between the clamping assembly and the surface of the radiator in the prior art. This prevents the mounting fixture structure from directly contacting the surface of the radiator, avoiding the problem of easy friction between the clamping assembly and the surface of the radiator in the prior art, and thus solving the problem of easy damage to the surface of the radiator in the prior art. This makes the surface of the radiator less susceptible to damage, resulting in better protection of the surface of the radiator by the mounting fixture structure. Attached Figure Description
[0023] To more clearly illustrate the technical solutions of the embodiments of this disclosure, the accompanying drawings used in the embodiments will be briefly described below. It should be understood that the following drawings only show some embodiments of this disclosure and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 This is a schematic diagram of a mounting bracket fixture structure for a radiator according to one embodiment;
[0025] Figure 2 for Figure 1 A schematic diagram of the mounting fixture structure for a radiator from another perspective;
[0026] Figure 3 for Figure 2 An enlarged schematic diagram of point A of the bracket fixture structure for the radiator shown;
[0027] Figure 4 for Figure 2 The enlarged schematic diagram at point B of the bracket fixture structure for the radiator is shown.
[0028] Figure 5 This is a schematic diagram of the structure of a heat sink according to one embodiment. Detailed Implementation
[0029] To facilitate understanding of this disclosure, a more complete description will be given below with reference to the accompanying drawings, which illustrate preferred embodiments of the present disclosure. However, this disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure.
[0030] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.
[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0032] like Figures 1 to 5 As shown, in one embodiment, the mounting bracket structure 10 for the radiator is connected to the radiator 20.
[0033] Furthermore, the mounting fixture structure 10 for the radiator includes a fixture frame 100, a first mounting bracket 200, and a second mounting bracket 300. The first mounting bracket 200 is connected to the fixture frame 100 and is used to pass through the first process hole 510 of the radiator 20 and to be mounted on the radiator 20, so that the first mounting bracket 200 is used to fasten one end of the radiator 20. The second mounting bracket 300 is connected to the fixture frame 100 and is arranged opposite to the first mounting bracket 200. The second mounting bracket 300 is used to pass through the second process hole 520 of the radiator 20 and to be mounted on the radiator 20, so that the second mounting bracket 300 is used to fasten the other end of the radiator 20.
[0034] In this embodiment, the first mounting bracket 200 is used to pass through the first process hole 510 of the heat sink 20 and to be mounted on the heat sink 20, so that the first mounting bracket 200 is used to connect with the process surface 500 of the heat sink 20. The second mounting bracket 300 is used to pass through the second process hole 520 of the heat sink 20 and to be mounted on the heat sink 20, so that the second mounting bracket 300 is used to connect with the process surface 500 of the heat sink 20.
[0035] The aforementioned bracket fixture structure 10 for the radiator, wherein the first hook assembly 200 is used to pass through the first process hole 510 of the radiator 20 and to be hooked to the radiator 20, so that the first hook assembly 200 is used to fasten one end of the radiator 20; at the same time, the second hook assembly 300 is used to pass through the second process hole 520 of the radiator 20 and to be hooked to the radiator 20, so that the second hook assembly 300 is used to fasten the other end of the radiator 20, so that the first hook assembly 200 and the second hook assembly 300 work together to fasten and fix the position of the radiator 20, thereby completing the fixing process of the radiator 20;
[0036] Since the first mounting bracket assembly 200 is used to pass through the first process hole 510 of the radiator 20 and to be mounted on the radiator 20, the first mounting bracket assembly 200 is used to connect with the process surface 500 of the radiator 20; at the same time, the second mounting bracket assembly 300 is used to pass through the second process hole 520 of the radiator 20 and to be mounted on the radiator 20, the second mounting bracket assembly 300 is used to connect with the process surface 500 of the radiator 20. Thus, the first mounting bracket assembly 200 and the second mounting bracket assembly 300 work together on the process surface 500 of the radiator 20 to fix the position of the radiator 20. That is, the mounting bracket fixture structure 10 for the radiator acts on the radiator 20. The process surface 500 is used to fix the position of the radiator 20, thereby avoiding the problem of direct contact between the clamping component and the outer surface 400 of the radiator 20 in the prior art. This prevents the bracket fixture structure 10 for the radiator from directly contacting the outer surface 400 of the radiator 20, thus avoiding the problem of easy friction between the clamping component and the outer surface 400 of the radiator 20 in the prior art. This solves the problem of easy damage to the outer surface 400 of the radiator 20 in the prior art, making it less likely to be damaged. As a result, the bracket fixture structure 10 for the radiator provides better protection for the outer surface 400 of the radiator 20.
[0037] like Figures 1 to 2 As shown, in one embodiment, the jig frame 100 has a first connecting through hole 110; the first hook assembly 200 includes a first connecting rod 210 and a first hook part 220. The first connecting rod 210 is connected to the first hook part 220. The first connecting rod 210 passes through the first connecting through hole 110 and is connected to the jig frame 100. The first hook part 220 is used to pass through the first process hole 510 and is used to hook and connect with the radiator 20, so that the first hook part 220 is used to fasten one end of the radiator 20.
[0038] In one embodiment, the first connecting rod 210 is welded to the fixture frame 100, which makes the connection between the first connecting rod 210 and the fixture frame 100 more stable.
[0039] like Figures 1 to 2 As shown, in one embodiment, there are multiple first hook-up portions 220, which are spaced apart. Each first hook-up portion 220 is welded to a first connecting rod 210. Each first hook-up portion 220 is used to pass through a corresponding first process hole 510 and to hook and connect with a corresponding heat sink 20, so that each first hook-up portion 220 is used to securely fasten one end of the corresponding heat sink 20. In this embodiment, the welding of each first hook-up portion 220 to the first connecting rod 210 results in a high connection strength between each first hook-up portion 220 and the first connecting rod 210.
[0040] like Figures 1 to 3 As shown, in one embodiment, each first mounting portion 220 includes a first welding seat 221 and a first mounting post 222 connected together. Each first welding seat 221 is welded to a first connecting rod body 210, and each first mounting post 222 is used to pass through a corresponding first process hole 510 and to be mounted and connected to a corresponding heat sink 20, so that each first mounting post 222 is used to fasten one end of the corresponding heat sink 20. In this embodiment, the outer peripheral wall of each first mounting post 222 is provided with a first external thread to increase the friction between each first mounting post 222 and the corresponding heat sink 20, so that the mounting stability between each first mounting post 222 and the corresponding heat sink 20 is better, that is, the positional stability between each first mounting post 222 and the corresponding heat sink 20 is better.
[0041] like Figures 1 to 2 As shown, in one embodiment, the jig frame 100 has a second connecting through hole 120; the second hook assembly 300 includes a second connecting rod 310 and a second hook part 320. The second connecting rod 310 is connected to the second hook part 320. The second connecting rod 310 passes through the second connecting through hole 120 and is connected to the jig frame 100. The second hook part 320 is used to pass through the second process hole 520 and is used to hook and connect with the radiator 20, so that the second hook part 320 is used to fasten the other end of the radiator 20.
[0042] In one embodiment, the second connecting rod 310 is welded to the fixture frame 100, which makes the connection between the second connecting rod 310 and the fixture frame 100 more stable.
[0043] like Figures 1 to 2 As shown, in one embodiment, there are multiple second hook-up portions 320, which are spaced apart. Each second hook-up portion 320 is welded to a second connecting rod 310. Each second hook-up portion 320 is used to pass through a corresponding second process hole 520 and to hook and connect with a corresponding heat sink 20, so that each second hook-up portion 320 is used to securely fasten the other end of the corresponding heat sink 20. In this embodiment, the welding of each second hook-up portion 320 to the second connecting rod 310 results in a high connection strength between each second hook-up portion 320 and the second connecting rod 310.
[0044] like Figure 1 , Figure 2 and Figure 4As shown, in one embodiment, each second mounting portion 320 includes a second welding seat 321 and a second mounting post 322 connected together. Each second welding seat 321 is welded to the second connecting rod body 310. Each second mounting post 322 is used to pass through the corresponding second process hole 520 and to be mounted and connected to the corresponding heat sink 20, so that each second mounting post 322 is used to fasten the other end of the corresponding heat sink 20. In this embodiment, the outer peripheral wall of each second mounting post 322 is provided with a second external thread to increase the friction between each second mounting post 322 and the corresponding heat sink 20, so that the mounting stability between each second mounting post 322 and the corresponding heat sink 20 is better, that is, the positional stability between each second mounting post 322 and the corresponding heat sink 20 is better.
[0045] like Figures 1 to 2 As shown, in one embodiment, there are two second hanging posts 322, and the two second hanging posts 322 are symmetrically distributed about the central axis of the second welding seat 321.
[0046] Compared with the prior art, this disclosure has at least the following advantages:
[0047] 1. Since the first hook-up assembly 200 is used to pass through the first process hole 510 of the radiator 20 and to be hooked and connected to the radiator 20, the first hook-up assembly 200 is used to fasten one end of the radiator 20; at the same time, the second hook-up assembly 300 is used to pass through the second process hole 520 of the radiator 20 and to be hooked and connected to the radiator 20, the second hook-up assembly 300 is used to fasten the other end of the radiator 20, so that the first hook-up assembly 200 and the second hook-up assembly 300 work together to fasten and fix the position of the radiator 20, thus completing the fixing process of the radiator 20.
[0048] 2. Since the first mounting bracket assembly 200 is used to pass through the first process hole 510 of the radiator 20 and to be connected to the radiator 20, the first mounting bracket assembly 200 is used to connect with the process surface 500 of the radiator 20; at the same time, the second mounting bracket assembly 300 is used to pass through the second process hole 520 of the radiator 20 and to be connected to the radiator 20, the second mounting bracket assembly 300 is used to connect with the process surface 500 of the radiator 20, so that the first mounting bracket assembly 200 and the second mounting bracket assembly 300 work together on the process surface 500 of the radiator 20 to fix the position of the radiator 20, that is, the mounting bracket fixture structure 10 for the radiator acts on the radiator 20. The process surface 500 of the 0 is used to fix the position of the heat sink 20, thereby avoiding the problem of direct contact between the clamping component and the outer surface 400 of the heat sink 20 in the prior art. This prevents the bracket fixture structure 10 for the heat sink from directly contacting the outer surface 400 of the heat sink 20, thus avoiding the problem of easy friction between the clamping component and the outer surface 400 of the heat sink 20 in the prior art. This solves the problem of easy damage to the outer surface 400 of the heat sink 20 in the prior art, making it less likely to be damaged. As a result, the bracket fixture structure 10 for the heat sink provides better protection for the outer surface 400 of the heat sink 20.
[0049] The embodiments described above are merely illustrative of several implementations of this disclosure, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the disclosed patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this disclosure, and these all fall within the protection scope of this disclosure. Therefore, the protection scope of this patent should be determined by the appended claims.
Claims
1. A mounting bracket structure for a radiator, connected to the radiator, characterized in that, include: Jig frame; The first hanging component is connected to the fixture frame. The first hanging component is used to pass through the first process hole of the radiator and to be connected to the radiator hanging component, so that the first hanging component is used to fasten one end of the radiator. The second hanging component is connected to the fixture frame. The first hanging component and the second hanging component are arranged opposite to each other. The second hanging component is used to pass through the second process hole of the radiator and to be connected to the radiator by a hanging bracket, so that the second hanging component is used to fasten the other end of the radiator.
2. The bracket fixture structure for a radiator according to claim 1, characterized in that, The fixture frame has a first connecting through hole; the first hanging bracket includes a first connecting rod and a first hanging part, the first connecting rod is connected to the first hanging part, the first connecting rod passes through the first connecting through hole and is connected to the fixture frame, the first hanging part is used to pass through the first process hole and is used to connect with the radiator, so that the first hanging part is used to fasten one end of the radiator.
3. The bracket fixture structure for a radiator according to claim 2, characterized in that, The first connecting rod is welded to the fixture frame.
4. The bracket fixture structure for a radiator according to claim 2, characterized in that, The number of first hanging parts is multiple, and the multiple first hanging parts are arranged at intervals. Each first hanging part is welded to the first connecting rod body. Each first hanging part is used to pass through the corresponding first process hole and is used to connect with the corresponding radiator hanging card, so that each first hanging part is used to hang tightly on one end of the corresponding radiator.
5. The bracket fixture structure for a radiator according to claim 4, characterized in that, Each of the first hanging parts includes a first welding seat and a first hanging post connected to each other. Each of the first welding seats is welded to the first connecting rod body. Each of the first hanging posts is used to pass through the corresponding first process hole and to be connected to the corresponding radiator hanging post, so that each of the first hanging posts is used to fasten one end of the corresponding radiator.
6. The bracket fixture structure for a radiator according to claim 1, characterized in that, The fixture frame has a second connecting through hole; the second hanging bracket includes a second connecting rod and a second hanging part, the second connecting rod is connected to the second hanging part, the second connecting rod passes through the second connecting through hole and is connected to the fixture frame, the second hanging part is used to pass through the second process hole and is used to connect with the radiator, so that the second hanging part is used to hang the other end of the radiator tightly.
7. The bracket fixture structure for a radiator according to claim 6, characterized in that, The second connecting rod is welded to the fixture frame.
8. The bracket fixture structure for a radiator according to claim 6, characterized in that, The number of second hook parts is multiple, and the multiple second hook parts are arranged at intervals. Each second hook part is welded to the second connecting rod body. Each second hook part is used to pass through the corresponding second process hole and to connect with the corresponding radiator hook, so that each second hook part is used to hang the other end of the corresponding radiator.
9. The bracket fixture structure for a radiator according to claim 8, characterized in that, Each of the second hanging parts includes a second welding seat and a second hanging post connected to each other. Each of the second welding seats is welded to the second connecting rod body. Each of the second hanging posts is used to pass through the corresponding second process hole and to be connected to the corresponding radiator hanging post, so that each of the second hanging posts is used to fasten the other end of the corresponding radiator.
10. The bracket fixture structure for a radiator according to claim 9, characterized in that, There are two second hanging posts, and the two second hanging posts are symmetrically distributed about the central axis of the second welding seat.
Citation Information
Patent Citations
Tool jig for radiator
CN214292108U