Fin pressing mechanism

CN224616131UActive Publication Date: 2026-08-11WEIFANG HUALONG RADIATOR
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]传统的散热片在定位夹持时,只能对单个散热器的散热片进行夹持和固定,在对散热器进行吊装和转运时,转运的数量较多,工作量较大,而且在使用时由于散热器的数量较大,每个散热器单独进行夹持固定时,其耗费的夹具成本较大,影响散热器的加工成本

Benefits of technology

[0014] This utility model provides a heat sink clamping mechanism, comprising: two opposing clamping bases, with a heat sink disposed between the two clamping bases, ensuring that the heat sink fins on the heat sink can be clamped by the clamping bases, thus maintaining and fixing the heat sink fins on the heat sink; the two clamping bases are pressed against the heat sink by a tensioning member, thereby ensuring the pressure on the heat sink and fixing the heat sink; a clamping beam slidably connected to the clamping bases, the clamping beam being close to the upper and lower ends of the heat sink, thereby being pressed against the clamping bases and fixing the heat sink by the clamping beam. The clamping beam is pressed against the upper and lower ends of the heat sink by the clamping bases, thus fixing the heat sink by the clamping beam. Furthermore, when the position of the heat sink needs to be adjusted, the position of the heat sink can be adjusted by adjusting the clamping beam. In summary, the technical effect of this utility model is that by setting up a clamping tool, the heat sink fins of multiple heat sinks can be clamped and fixed simultaneously, reducing the clamping cost of the heat sink, and effectively reducing the cost of transporting and hoisting the heat sink during hoisting.

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Abstract

This utility model relates to the technical field of radiator installation equipment and provides a radiator fin clamping mechanism, comprising: two opposing clamping bases, with a radiator disposed between the two clamping bases, and the two clamping bases clamping the radiator by a tensioning member; and a clamping beam slidably connected to the clamping bases, the clamping beam being in close contact with the upper and lower ends of the radiator, the clamping beam being pressed against the upper and lower ends of the radiator under the action of the clamping bases. Thus, this utility model, by providing a clamping tool, can simultaneously clamp and fix the radiator fins of multiple radiators, reducing the clamping cost of the radiator, and effectively reducing the cost of radiator transportation and hoisting during installation.
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Description

Technical Field

[0001] This utility model relates to the field of radiator installation equipment technology, and in particular to a radiator fin clamping mechanism. Background Technology

[0002] During the production and processing of heat sinks, the cut heat sinks need to undergo further processing, which requires positioning and clamping the heat sinks to ensure that the heat sinks can be effectively fixed during processing.

[0003] Traditional heat sink clamping can only clamp and fix a single heat sink when positioning and clamping. When hoisting and transporting heat sinks, the number of heat sinks to be transported is large, resulting in a large workload. Moreover, due to the large number of heat sinks in use, the cost of clamping and fixing each heat sink individually is high, which affects the processing cost of heat sinks.

[0004] In conclusion, the existing technology obviously has inconveniences and defects in practical use, so it is necessary to improve it. Utility Model Content

[0005] To address the aforementioned shortcomings, the purpose of this utility model is to provide a heat sink clamping mechanism that can simultaneously clamp and fix the heat sinks of multiple heat sinks by setting a clamping tool, thereby reducing the clamping cost of the heat sinks and effectively reducing the cost of transporting and hoisting the heat sinks during hoisting.

[0006] To achieve the above objectives, this utility model provides a heat sink clamping mechanism, comprising: Two opposing clamping bases are provided, and the heat sink is disposed between the two clamping bases. The two clamping bases press the heat sink together by a tensioning member. A clamping beam is slidably connected to the clamping base. The clamping beam is in close contact with the upper and lower ends of the radiator. Under the action of the clamping base, the clamping beam is pressed against the upper and lower ends of the radiator.

[0007] In one embodiment, a slide rail is provided on the contact surface between the clamping beam and the clamping base, and a slide groove is provided on the clamping base to cooperate with the slide rail. The clamping base is pressed to a predetermined position by the tensioning member.

[0008] In one embodiment, the clamping beam is provided with a rotating hole, and a control rod is rotatably inserted inside the rotating hole. Both ends of the control rod are provided with clamping members, and the rotation of the control rod controls the clamping members to clamp and fix the two sides of the radiator.

[0009] In one embodiment, the control rod has bidirectional threads at both ends, the clamping member includes a threaded hole screwed onto the control rod, the two clamping members are respectively engaged with the bidirectional threads, the bottom of the clamping member is provided with a clamping part, the clamping part is in close contact with the bottom surface of the clamping beam, and the clamping part abuts against the radiator.

[0010] In one embodiment, the tensioning member is a tensioning bolt, and the edge of the clamping base is provided with a fixing hole. The tensioning bolt passes through the fixing hole, and a fixing nut is screwed onto the top tensioning bolt. The fixing nut cooperates with the tensioning bolt to press the two clamping bases inward.

[0011] In one embodiment, the control rod has a limiting flange in the middle, and the rotating hole has a limiting groove inside that corresponds to the limiting flange.

[0012] In one embodiment, a lifting ring is provided on the outer side of the clamping base at the top.

[0013] In one embodiment, at least four fixing holes are provided, and the four fixing holes are located at both ends of the clamping base in the slide groove.

[0014] This utility model provides a heat sink clamping mechanism, comprising: two opposing clamping bases, with a heat sink disposed between the two clamping bases, ensuring that the heat sink fins on the heat sink can be clamped by the clamping bases, thus maintaining and fixing the heat sink fins on the heat sink; the two clamping bases are pressed against the heat sink by a tensioning member, thereby ensuring the pressure on the heat sink and fixing the heat sink; a clamping beam slidably connected to the clamping bases, the clamping beam being close to the upper and lower ends of the heat sink, thereby being pressed against the clamping bases and fixing the heat sink by the clamping beam. The clamping beam is pressed against the upper and lower ends of the heat sink by the clamping bases, thus fixing the heat sink by the clamping beam. Furthermore, when the position of the heat sink needs to be adjusted, the position of the heat sink can be adjusted by adjusting the clamping beam. In summary, the technical effect of this utility model is that by setting up a clamping tool, the heat sink fins of multiple heat sinks can be clamped and fixed simultaneously, reducing the clamping cost of the heat sink, and effectively reducing the cost of transporting and hoisting the heat sink during hoisting. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural schematic diagram of the present invention; Figure 2 This is a cross-sectional structural diagram of the present invention; Figure 3 This is a three-dimensional structural diagram of the clamping base of this utility model; Figure 4 This is a three-dimensional structural diagram of the control lever of this utility model; Figure 5 This is a schematic diagram of the three-dimensional structure of the clamping beam of this utility model; In the figure, 1-clamping base, 11-fixing hole, 12-slide groove, 2-tensioning bolt, 3-fixing nut, 4-clamping part, 41-threaded hole, 42-clamping part, 5-control rod, 51-limiting flange, 52-bidirectional thread, 53-limiting nut, 6-radiator, 7-clamping beam, 71-rotating hole, 72-slide rail. Detailed Implementation

[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0017] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0018] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0019] See Figure 1 and Figure 2This utility model provides a heat sink clamping mechanism, which includes two opposing clamping bases 1. A heat sink 6 is disposed between the two clamping bases 1, ensuring that the heat sink fins on the heat sink 6 can be clamped by the clamping bases 1, thus ensuring the heat sink fins on the heat sink 6 are held and fixed. The two clamping bases 1 are pressed against the heat sink 6 by a tensioning member, thereby ensuring the pressure of the heat sink 6 and fixing the heat sink 6. A clamping beam 7 is slidably connected to the clamping bases 1. The clamping beam 7 is close to the upper and lower ends of the heat sink 6, thereby pressing the clamping beam 7 by the clamping bases 1, thus fixing the heat sink 6. The clamping beam 7 is pressed against the upper and lower ends of the heat sink 6 by the clamping bases 1, thus fixing the heat sink 6. At the same time, when it is necessary to adjust the position of the heat sink 6, the position of the heat sink 6 can be adjusted by adjusting the clamping beam 7.

[0020] Preferably, it combines Figure 1 and Figure 5 To ensure that the clamping beam 7 can slide on the clamping base 1, a slide rail 72 is provided on the contact surface between the clamping beam 7 and the clamping base 1. The clamping base 1 is provided with a slide groove 12 that cooperates with the slide rail 72, ensuring that the clamping beam 7 can slide on the clamping base 1. The clamping base 1 is pressed into a predetermined position by the tensioning member, so that multiple radiators 6 can be pressed at the same time. The clamping beam 7 is provided with a rotating hole 71, and a control rod 5 is rotatably inserted inside the rotating hole 71. The two ends of the control rod 5 are provided with clamping members 4. The control rod 5 rotates to control the clamping members 4 to press and fix the sides of the radiator 6. Thus, the control rod 5 controls the clamping members 4 to fix the sides of the radiator 6, which can effectively fix the side force of the radiator 6, prevent the radiator 6 from moving laterally, and fully fix the radiator 6.

[0021] Additionally, see Figure 2 and Figure 4 To ensure that the clamping member 4 can be controlled by rotating the control lever 5, and that the clamping members 4 at both ends can move in opposite directions, a bidirectional thread 52 can be provided at both ends of the control lever 5. The clamping member 4 includes a threaded hole 41 screwed onto the control lever 5. The two clamping members 4 respectively cooperate with the bidirectional thread 52, thereby ensuring the unidirectional rotation of the control lever 5 and controlling the two clamping members 4 to move in opposite directions. The bottom of the clamping member 4 is provided with a clamping part 42, which is in close contact with the bottom surface of the clamping beam 7 and abuts against the radiator 6. By rotating the control lever 5, the clamping part 42 is pressed against the radiator 6, thereby clamping and fixing the radiator 6, and realizing the positioning and clamping of the radiator 6.

[0022] Further, see Figure 3 , Figure 4 and Figure 5 The tensioning component can be a tensioning bolt 2. The edge of the clamping base 1 is provided with a fixing hole 11. The tensioning bolt 2 passes through the fixing hole 11. The top tensioning bolt 2 is screwed with a fixing nut 3. The fixing nut 3 cooperates with the tensioning bolt 2 to press the two clamping bases 1 inward, thereby fixing the clamping base 1 and preventing the radiator 6 from being misaligned, which would affect the installation effect of the radiator 6. The control rod 5 is provided with a limiting flange 51 in the middle. The inside of the rotating hole 71 is provided with a limiting groove corresponding to the limiting flange 51, which prevents the control rod 5 from axially moving inside the rotating hole 71, which would affect the pressing effect of the clamping component 4 on the radiator 6.

[0023] Even better, in order to ensure the hoisting effect of the entire device, a lifting ring (not shown in the figure) can be provided on the outside of the clamping base 1 at the top, and at least four fixing holes 11 are provided. The four fixing holes 11 are located at both ends of the clamping base 1 located in the slide groove 12 to ensure the fixing force of the radiator 6.

[0024] When using, combine Figures 1-5 When it is necessary to fix the radiator 6, place all the radiators 6 that need to be pressure-fixed on the clamping beam 7 on the bottom clamping base 1, and then fix the top clamping base 1 and clamping beam 7 on the top. Fix the radiator 6 by tightening bolts 2 and fixing nuts 3. Then, by turning the limit nut 53, press the clamping part 4 to the side of the radiator 6 to position and fix the radiator 6.

[0025] Of course, there may be other embodiments of this utility model. Without departing from the spirit and essence of this utility model, those skilled in the art can make various corresponding changes and modifications based on this utility model, but these corresponding changes and modifications should all fall within the protection scope of the appended claims of this utility model.

Claims

1. A fin pressing mechanism characterized by comprising: include: Two opposing clamping bases are provided, and the heat sink is disposed between the two clamping bases. The two clamping bases press the heat sink together by a tensioning member. A clamping beam is slidably connected to the clamping base. The clamping beam is in close contact with the upper and lower ends of the radiator. Under the action of the clamping base, the clamping beam is pressed against the upper and lower ends of the radiator.

2. The fin pressing mechanism according to claim 1, wherein The contact surface between the clamping beam and the clamping base is provided with a slide rail, and the clamping base is provided with a slide groove that cooperates with the slide rail. The clamping base is pressed into a predetermined position by the tensioning member.

3. The fin compacting mechanism according to claim 1, wherein The clamping beam is provided with a rotating hole, and a control rod is rotatably inserted inside the rotating hole. Both ends of the control rod are provided with clamping components. The rotation of the control rod controls the clamping components to clamp and fix the two sides of the radiator.

4. The fin compacting mechanism according to claim 3, wherein The control rod has bidirectional threads at both ends. The clamping member includes a threaded hole screwed onto the control rod. The two clamping members are respectively engaged with the bidirectional threads. The bottom of the clamping member is provided with a clamping part. The clamping part is in close contact with the bottom surface of the clamping beam and abuts against the radiator.

5. The fin compacting mechanism according to claim 1, wherein The tensioning component is a tensioning bolt. The edge of the clamping base has a fixing hole, and the tensioning bolt passes through the fixing hole. The top tensioning bolt is screwed with a fixing nut. The fixing nut cooperates with the tensioning bolt to press the two clamping bases inward.

6. The fin compacting mechanism according to claim 3, wherein The control rod has a limiting flange in the middle, and the rotating hole has a limiting groove inside that corresponds to the limiting flange.

7. The fin compactor mechanism of claim 1, wherein A lifting ring is provided on the outer side of the clamping base at the top.

8. The fin compacting mechanism according to claim 5, wherein At least four fixing holes are provided, and the four fixing holes are located at both ends of the clamping base in the slide groove.