Anti-deformation fin radiator

By combining the plug-in base and the reinforced protective plate, along with the fin anti-vibration components and the reinforced connection components, the problems of external protection and internal structural optimization of finned heat sinks are solved, achieving higher structural stability and deformation resistance.

CN224215930UActive Publication Date: 2026-05-08HEBEI JIAAO HEATING EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI JIAAO HEATING EQUIP CO LTD
Filing Date
2025-06-12
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing anti-deformation finned radiators are not convenient for external reinforcement and internal structural optimization through plug-in assembly, resulting in insufficient structural stability.

Method used

It adopts a combination structure of plug-in base and reinforced protective plate, combined with the design of fin anti-vibration component, reinforced connection component and internal reinforcing rod, and realizes external protection and internal structural reinforcement of fin heat sink through threaded connection.

Benefits of technology

It improves the external deformation resistance and internal structural strength of the finned heat sink, enhances the overall vibration resistance, facilitates assembly, and improves structural stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-deformation fin radiator which is characterized in that reinforcing protective plates are inserted into the two sides of an insertion base, a fin bearing frame is fixedly connected to the top of the insertion base, radiating fins are arranged in the fin bearing frame, and fin shockproof assemblies are connected to the surfaces of the fin bearing frame and the radiating fins in a penetrating mode. According to the anti-deformation fin radiator, through comprehensive arrangement of a fin shockproof assembly, a reinforcing connecting assembly and an internal reinforcing rod, a penetrating rod is sequentially inserted into a fin bearing frame and cooling fins, then an upper threaded cap and a lower threaded cap are screwed up and down, and then an inserting cap is sequentially inserted into the top of the penetrating rod; according to the fin radiator, the two sets of symmetrically-distributed fin anti-vibration assemblies are connected into a whole, and finally the multiple internal reinforcing rods are in threaded connection with the interiors of the cooling fins, so that the structural strength of the fin radiator is improved and optimized, the vibration influence of the fins is fully weakened, and the internal anti-deformation capacity of the fin radiator is improved.
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Description

Technical Field

[0001] This utility model relates to the field of finned heat sink technology, specifically to an anti-deformation finned heat sink. Background Technology

[0002] Deformation-resistant finned radiators are heat dissipation devices that resist mechanical deformation (such as bending, collapse, vibration fracture, etc.) through structural optimization and material reinforcement. They are widely used in high heat flux density or harsh environments, and their core objective is to maintain long-term structural stability while dissipating heat efficiently.

[0003] A finned radiator resistant to impact deformation disclosed in announcement number CN220230222U provides convenience for installation and disassembly through the provided slide groove, slider, buckle and slot. It eliminates the need to remove multiple screws. Simply press the buckle to slide the slider out of the slide groove to complete the disassembly, saving time and effort while improving work efficiency. The provided push plate and second spring also facilitate the disassembly of the device. When the slider slides into the slide groove, it compresses the second spring. During disassembly, pressing the buckle causes the slider to pop out of the slide groove under the reaction force of the second spring, providing convenience for disassembly personnel.

[0004] However, this anti-deformation finned radiator has the following disadvantages: it is not convenient to use a plug-in assembly method to reinforce the exterior of the finned radiator; and it is not convenient to optimize the internal structure of the finned radiator. Utility Model Content

[0005] The technical problems to be solved by this utility model are as follows: it is not convenient to use plug-in assembly to reinforce the external protection of the finned heat sink; and it is not convenient to strengthen the internal structure of the finned heat sink so that the external of the finned heat sink is reinforced while the internal structure is strengthened, thereby preventing overall deformation.

[0006] The objective of this utility model can be achieved through the following technical solutions:

[0007] A deformation-resistant finned radiator includes a plug-in base with reinforcing plates inserted into both sides. A fin receiving frame is fixedly connected to the top of the plug-in base, and finned fins are disposed inside the fin receiving frame. Fin anti-vibration components are connected through the surfaces of the fin receiving frame and the finned fins. The fin anti-vibration components include a through rod, an upper threaded cap, and a lower threaded cap. A reinforcing connection component is inserted into the top surface of the through rod. The reinforcing connection component includes a plug-in cap and a reinforcing connection rod. An internal reinforcing rod is threaded to the side of the finned fin.

[0008] As a further embodiment of this utility model: both the reinforcing guard plate and the plug-in base have reinforcing threaded holes on their surfaces, and each reinforcing threaded hole is threaded with a reinforcing threaded bolt.

[0009] As a further embodiment of this utility model: there are four sets of reinforcing threaded bolts, and the four reinforcing threaded bolts are evenly distributed in a rectangular shape on the surface of the reinforcing guard plate.

[0010] As a further embodiment of this utility model: the number of heat dissipation fins is several, and the several heat dissipation fins are evenly distributed in a vertical line on both sides inside the fin receiving frame.

[0011] As a further embodiment of this utility model: the through rod is connected through the fin receiving frame and the surface of the heat dissipation fins, the top of the through rod is threaded with an upper threaded cap, and the bottom of the through rod is threaded with a lower threaded cap.

[0012] As a further embodiment of this utility model: there are six fin shock-absorbing components and six reinforcing connection components, and the six fin shock-absorbing components and six reinforcing connection components are evenly distributed in a straight line on the surface of the fin receiving frame.

[0013] As a further embodiment of this utility model: the plug cap is inserted into the top surface of the through rod, and a reinforcing connecting rod is fixedly connected to the top of the plug cap.

[0014] As a further embodiment of this utility model: there are several internal reinforcing rods, and these internal reinforcing rods are evenly distributed in a straight line on the side of the heat dissipation fins.

[0015] The beneficial effects of this utility model are:

[0016] 1. By combining the plug-in base and the reinforcing plate, the reinforcing plate is inserted into both sides of the plug-in base from above, and then the reinforcing threaded bolts are tightened for assembly. The reinforcing plate is tightly attached to the side of the fin support frame to form an outer protective shell, which effectively prevents corrosion from external forces, strengthens the overall structure, facilitates assembly, and improves the deformation resistance of the outer side of the finned heat sink.

[0017] 2. By comprehensively configuring the fin anti-vibration components, reinforcing connection components, and internal reinforcing rods, the through rods are sequentially inserted into the fin receiving frame and the heat dissipation fins. Then, the upper and lower threaded caps are tightened. Next, the plug caps are sequentially inserted into the top of the through rods, so that the two symmetrically distributed fin anti-vibration components are connected as a whole. Finally, several internal reinforcing rods are threaded into the inside of the heat dissipation fins, thereby improving and optimizing the structural strength of the finned heat sink, effectively reducing the vibration impact of the fins, and improving the internal anti-deformation capability of the finned heat sink. Attached Figure Description

[0018] The present invention will be further described below with reference to the accompanying drawings.

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0020] Figure 2 This is a schematic diagram of the disassembled structure of the heat sink fins of this utility model;

[0021] Figure 3 This is a schematic diagram of the disassembled structure of the reinforcing protective plate of this utility model;

[0022] Figure 4 This is a schematic diagram showing the disassembled structure of the finned shockproof assembly and the reinforcing connection assembly of this utility model.

[0023] In the diagram: 1. Insertion base; 2. Reinforced protective plate; 3. Fin receiving frame; 4. Heat dissipation fins; 5. Fin anti-vibration assembly; 501. Through rod; 502. Upper threaded cap; 503. Lower threaded cap; 6. Reinforced connection assembly; 601. Insertion cap; 602. Reinforced connection rod; 7. Internal reinforcing rod; 8. Reinforced threaded bolt. Detailed Implementation

[0024] 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 skilled in the art without creative effort are within the protection scope of the present utility model.

[0025] like Figure 1-4 As shown, an anti-deformation finned radiator includes a plug-in base 1, with reinforcing protective plates 2 plugged into both sides of the plug-in base 1. The combined arrangement of the plug-in base 1 and the reinforcing protective plates 2 facilitates assembly and improves the external anti-deformation capability of the finned radiator. A fin support frame 3 is fixedly connected to the top of the plug-in base 1. A heat dissipation fin 4 is arranged inside the fin support frame 3. A fin anti-vibration component 5 is connected through the surfaces of the fin support frame 3 and the heat dissipation fin 4. The fin anti-vibration component 5 includes a through rod 501, an upper threaded cap 502, and a lower threaded cap 503. A reinforcing connection component 6 is plugged into the top surface of the through rod 501. The reinforcing connection component 6 includes a plug-in cap 601 and a reinforcing connection rod 602. An internal reinforcing rod 7 is threadedly connected to the side of the heat dissipation fin 4. The combined arrangement of the fin anti-vibration component 5, the reinforcing connection component 6, and the internal reinforcing rod 7 improves the internal anti-deformation capability of the finned radiator.

[0026] like Figure 3As shown, both the reinforcing guard plate 2 and the plug-in base 1 have reinforcing threaded holes on their surfaces, and the interior of each reinforcing threaded hole is threaded with a reinforcing threaded bolt 8. The reinforcing threaded bolt 8 serves to fix the reinforcing guard plate 2 onto the plug-in base 1.

[0027] like Figure 1 and 3 As shown, there are four sets of reinforcing threaded bolts 8. The four reinforcing threaded bolts 8 are evenly distributed in a rectangular shape on the surface of the reinforcing guard plate 2. The setting of the four reinforcing threaded bolts 8 improves the stability of the reinforcing guard plate 2.

[0028] like Figure 1 As shown, there are several heat dissipation fins 4. These heat dissipation fins 4 are evenly distributed vertically in a straight line on both sides of the fin receiving frame 3. The evenly distributed heat dissipation fins 4 achieve the function of heat dissipation.

[0029] like Figure 3 As shown, the through rod 501 is connected through the surface of the fin receiving frame 3 and the heat dissipation fin 4. The top of the through rod 501 is threaded with an upper threaded cap 502, and the bottom of the through rod 501 is threaded with a lower threaded cap 503. The upper threaded cap 502 and the lower threaded cap 503 serve to firmly fix the through rod 501 to the fin receiving frame 3.

[0030] like Figure 1 As shown, there are six fin vibration damping components 5 and six reinforcing connection components 6. The six fin vibration damping components 5 and six reinforcing connection components 6 are evenly distributed in a straight line on the surface of the fin receiving frame 3. The combination of fin vibration damping components 5 and reinforcing connection components 6 connects the structures, thereby strengthening the structure and improving the deformation resistance.

[0031] like Figure 1 As shown, the plug cap 601 is inserted into the top surface of the through rod 501. The top of the plug cap 601 is fixedly connected to the reinforcing connecting rod 602. The plug cap 601 facilitates the connection of the two through rods 501.

[0032] like Figure 2 As shown, there are several internal reinforcing rods 7, which are evenly distributed in a straight line on the side of the heat dissipation fins 4. The arrangement of these internal reinforcing rods 7 enhances the internal structural strength of the heat dissipation fins 4.

[0033] The working principle of this utility model is as follows: the reinforcing protective plate 2 is inserted into both sides of the plug-in base 1 from above, and then the reinforcing threaded bolt 8 is tightened for assembly. The reinforcing protective plate 2 is tightly attached to the side of the fin receiving frame 3 to form an outer protective shell, thereby effectively preventing corrosion from external forces and strengthening the overall structure.

[0034] Insert the through rod 501 into the fin receiving frame 3 and the heat dissipation fin 4 in sequence, then tighten the upper thread cap 502 and the lower thread cap 503. Then insert the plug cap 601 into the top of the through rod 501 in sequence, so that the two symmetrically distributed fin anti-vibration components 5 are connected into a whole. Finally, thread several internal reinforcing rods 7 into the inside of the heat dissipation fin 4, thereby improving and optimizing the structural strength of the finned heat sink and effectively reducing the vibration impact of the fins.

[0035] The above description provides a detailed account of one embodiment of the present invention. However, this description is merely a preferred embodiment and should not be construed as limiting the scope of the present invention. All equivalent variations and improvements made within the scope of the claims of the present invention should still fall within the patent coverage of the present invention.

Claims

1. A deformation-resistant finned radiator, comprising a plug-in base (1), characterized in that: The plug-in base (1) is fitted with reinforcing guard plates (2) on both sides. The top of the plug-in base (1) is fixedly connected with a fin support frame (3). The fin support frame (3) is provided with heat dissipation fins (4). The surfaces of the fin support frame (3) and the heat dissipation fins (4) are connected through a fin shock absorber assembly (5). The fin shock absorber assembly (5) includes a through rod (501), an upper threaded cap (502) and a lower threaded cap (503). A reinforcing connection assembly (6) is inserted on the top surface of the through rod (501). The reinforcing connection assembly (6) includes a plug cap (601) and a reinforcing connection rod (602). The side of the heat dissipation fins (4) is threaded with an internal reinforcing rod (7).

2. The anti-deformation finned radiator according to claim 1, characterized in that, The surfaces of the reinforcing guard plate (2) and the plug-in base (1) are provided with reinforcing threaded holes, and the interior of each reinforcing threaded hole is threaded with a reinforcing threaded bolt (8).

3. The anti-deformation finned radiator according to claim 2, characterized in that, There are four sets of the reinforcing threaded bolts (8), and the four reinforcing threaded bolts (8) are evenly distributed in a rectangular shape on the surface of the reinforcing guard plate (2).

4. The anti-deformation finned radiator according to claim 1, characterized in that, There are several heat dissipation fins (4), and the several heat dissipation fins (4) are evenly distributed in a vertical line on both sides inside the fin receiving frame (3).

5. The anti-deformation finned radiator according to claim 1, characterized in that, The through rod (501) is connected through the fin receiving frame (3) and the heat dissipation fin (4) to the surface. The top of the through rod (501) is threaded with an upper thread cap (502), and the bottom of the through rod (501) is threaded with a lower thread cap (503).

6. The anti-deformation finned radiator according to claim 1, characterized in that, There are six of each of the fin shock absorber (5) and the reinforcing connection assembly (6), and the six fin shock absorber (5) and the reinforcing connection assembly (6) are evenly distributed in a straight line on the surface of the fin receiving frame (3).

7. The anti-deformation finned radiator according to claim 1, characterized in that, The plug cap (601) is inserted into the top surface of the through rod (501), and a reinforcing connecting rod (602) is fixedly connected to the top of the plug cap (601).

8. A finned heat sink with anti-deformation properties according to claim 1, characterized in that, There are several internal reinforcing rods (7), and these internal reinforcing rods (7) are evenly distributed in a straight line on the side of the heat dissipation fins (4).

Citation Information

Patent Citations

  • Fin type radiator capable of preventing impact deformation

    CN220230222U