Rust-proof corrosion-resistant copper-aluminum composite radiator

By using cast aluminum to coat the radiator body and guide fins in the copper-aluminum composite radiator with a spray paint coating, and combining this with the design of fastening components, the problems of insufficient rust and corrosion resistance and inconvenient disassembly are solved, achieving higher rust resistance and convenient assembly and disassembly.

CN223856274UActive Publication Date: 2026-01-30SHENGCHUN JINUAN RADIATOR
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Patent Information

Application Number
CN202422772092.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2026-01-30
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

Existing copper-aluminum composite radiators lack sufficient rust and corrosion resistance and are inconvenient to disassemble and replace.

Method used

The radiator body and guide fins are made of cast aluminum and coated with paint. Combined with the design of fastening components, including first and second connecting shafts, positioning blocks, limit nuts, etc., it can be easily disassembled and improve rust and corrosion resistance.

Benefits of technology

It significantly improves the rust and corrosion resistance of radiators, extends their service life, and simplifies the radiator assembly and disassembly process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rust-proof corrosion-resistant copper-aluminum composite radiator, which belongs to the field of copper-aluminum composite radiators and comprises a radiator component and a fastening component, the radiator component comprises a plurality of radiator bodies connected with each other, and a plurality of flow deflectors are equidistantly arranged on two sides of the radiator bodies. The upper ends and the lower ends of the radiator bodies are detachably connected with end heads, heat dissipation pipes are inserted into the end heads, one ends of the heat dissipation pipes are fixedly connected with screw pipes, and the other ends of the screw pipes are fixedly connected with the flow deflectors. According to the composite radiator, the radiator assembly is matched with the fastening assembly, so that the anti-rust and anti-corrosion performance of the composite radiator can be remarkably improved, the service life of the composite radiator is prolonged, meanwhile, the composite radiator is convenient to disassemble through mutual matching of the structures, and the disassembly, assembly and replacement convenience of all parts can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to copper aluminium composite radiator field, concretely is a kind of anti-rust corrosion-resistant copper aluminium composite radiator. BACKGROUND

[0002] Copper aluminium composite radiator is a new type of high-efficiency energy-saving heating radiator, it is closely combined with copper pipe and aluminium wing profile by precision pressure process, forms unique heat dissipation element, since composite radiator needs long time and water contact, it can cause corrosion in use, affect the heat dissipation efficiency of composite radiator, based on this, it is necessary to provide a composite radiator with anti-rust corrosion resistance and long service life, in addition, the structure of the existing composite radiator is inconvenient to disassemble and replace, therefore, it is necessary to provide a radiator which is convenient to disassemble and replace. SUMMARY

[0003] The embodiment of the utility model provides a kind of anti-rust corrosion-resistant copper aluminium composite radiator, to solve the problem that the rust-proof corrosion resistance of the existing composite radiator needs to be improved, simultaneously inconvenient to disassemble

[0004] To achieve the above object, the utility model provides a kind of anti-rust corrosion-resistant copper aluminium composite radiator, including radiator assembly and fastening assembly;

[0005] Among them, the radiator assembly includes a plurality of connected radiator bodies, a plurality of flow guides are equidistantly arranged on the two sides of the plurality of radiator bodies, a paint coating is sprayed on the surfaces of the plurality of radiator bodies and flow guides, end heads are detachably connected to the upper and lower ends of the radiator bodies, a heat dissipation pipe is inserted into the end head, and a spiral pipe is fixedly connected to one end of the heat dissipation pipe.

[0006] The fastening assembly includes a first connecting shaft and a second connecting shaft inserted into the plurality of radiator bodies, the side surfaces of the first connecting shaft and the second connecting shaft are connected to positioning blocks, the surfaces of the positioning blocks are provided with insertion holes, the first connecting shaft and the second connecting shaft are inserted into the insertion holes, the positioning blocks are matched with the inner walls of the radiator bodies, and the ends of the first connecting shaft and the second connecting shaft are fixedly connected to limiting nuts.

[0007] As a preferred scheme of the utility model, a plurality of first bolts are fixedly connected to the lower ends of the end heads, a plurality of connecting holes are formed in the upper and lower ends of the radiator bodies, the first bolts are inserted into the connecting holes, and the side surfaces of the first bolts are threadedly connected to first nuts.

[0008] As one preferred scheme of the utility model, the side of the heat radiator body is provided with a through hole, the first connecting shaft and the second connecting shaft are inserted into the through hole.

[0009] As one preferred scheme of the utility model, the opposite inner walls of the two heat radiator bodies are fixedly connected with two T-shaped blocks.

[0010] As one preferred scheme of the utility model, one end of the first connecting shaft is fixedly connected with a second bolt, one end of the second connecting shaft is provided with a second screw hole, and the second bolt is screwed into the second screw hole.

[0011] As one preferred scheme of the utility model, the two sides of the positioning block are provided with two T-shaped grooves, and the two T-shaped blocks are clamped in the T-shaped grooves.

[0012] As one preferred scheme of the utility model, the heat radiator body and the flow guide piece are made of cast aluminum, and the heat pipe is made of cast copper.

[0013] Compared with the prior art, the utility model has the beneficial effects that:

[0014] 1. When the copper-aluminum composite heat radiator is used, the heat radiator body made of cast aluminum can not only enhance the rust and corrosion resistance, but also further improve the rust and corrosion resistance by cooperating with the surface paint coating. In addition, the presence of the flow guide piece can guide the water on the surface of the heat radiator body, avoiding rust caused by water accumulation. The copper heat pipe can avoid rust. Compared with the composite heat radiator structure in the prior art, the utility model can significantly improve the rust and corrosion resistance of the heat radiator by the cooperation of the above structure, thereby prolonging the service life of the composite heat radiator.

[0015] 2. When the composite heat radiator is disassembled, the second bolt is taken out from the second screw hole, the first connecting shaft and the second connecting shaft are taken out from the heat radiator body, the first bolt is taken out from the connecting hole, and the heat radiator body and the end are disassembled, thereby the heat radiator body can be disassembled. Compared with the composite heat radiator in the prior art, the utility model can disassemble each part by the cooperation of the above structure, thereby improving the convenience of disassembling and replacing each part. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a whole structure schematic view of the utility model;

[0017] Figure 2 It is a heat radiator body structure disassembly view of the utility model;

[0018] Figure 3The heat dissipation pipe structure schematic diagram of the utility model discloses shows that the heat dissipation pipe structure is simple and convenient to use.

[0019] Figure 4 The utility model discloses fastening assembly structure disassembly drawing.

[0020] In the drawing: 100, radiator assembly;101, radiator body;102, deflector;103, paint spraying coating;104, end;105, heat dissipation pipe;106, screw pipe;111, first bolt;112, connecting hole;113, first nut;121, communication hole;131, T-shaped block;200, fastening assembly;201, first connecting shaft;202, second connecting shaft;203, positioning block;204, plug-in hole;205, limit nut;211, second bolt;212, second screw hole;221, T-shaped groove. DETAILED DESCRIPTION

[0021] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0022] Please refer to Figures 1-4 The utility model provides a kind of anti-rust corrosion-resistant copper-aluminum composite radiator, including radiator assembly 100 and fastening assembly 200;

[0023] Among them, radiator assembly 100 includes several connected radiator bodies 101, and the both sides of several radiator bodies 101 are equidistantly provided with several deflectors 102, and the surface of several radiator bodies 101 and deflectors 102 is sprayed with paint spraying coating 103, and the upper and lower ends of radiator body 101 are detachably connected with end 104, end 104 is inserted with heat dissipation pipe 105 in its interior, and one end of heat dissipation pipe 105 is fixedly connected with screw pipe 106;

[0024] Fastening assembly 200, fastening assembly 200 includes first connecting shaft 201 and second connecting shaft 202 inserted in the interior of several radiator bodies 101, and the side surface of first connecting shaft 201 and second connecting shaft 202 is connected with positioning block 203, the surface of positioning block 203 is provided with plug-in hole 204, and first connecting shaft 201 and second connecting shaft 202 are inserted in the interior of plug-in hole 204, positioning block 203 and the inner wall of radiator body 101 are adapted, and one end of first connecting shaft 201 and second connecting shaft 202 is fixedly connected with limit nut 205.

[0025] In a specific embodiment, the heat dissipation assembly 100 cooperates with the fastening assembly 200 to significantly improve the rust and corrosion resistance of the composite heat dissipation device, thereby prolonging the service life of the composite heat dissipation device. At the same time, the above structure cooperates with each other to facilitate disassembly of the composite heat dissipation device, thereby improving the convenience of disassembly and replacement of each component. When the heat dissipation assembly 100 is in use, the plurality of heat dissipation bodies 101 made of cast aluminum cooperate with the flow guide fins 102 to not only enhance their own rust and corrosion resistance, but also have a flow guiding effect on the accumulated water on the surface of the heat dissipation body 101, thereby avoiding rust caused by accumulated water. In addition, the paint coating 103 can further improve the rust prevention effect of the composite heat dissipation device. When disassembling the composite heat dissipation device, the first connecting shaft 201 and the second connecting shaft 202 are first removed from the plurality of heat dissipation bodies 101, and the first bolt 111 is removed from the connecting hole 112, thereby disassembling the end 104 and the heat dissipation body 101, and disassembling the plurality of heat dissipation bodies 101 to improve the convenience of disassembly and replacement of each component.

[0026] Referring to Figure 2 and Figure 3 , the lower end of the end 104 is fixedly connected with a plurality of first bolts 111, and the upper and lower ends of the heat dissipation body 101 are both provided with a plurality of connecting holes 112. The plurality of first bolts 111 are inserted into the connecting holes 112, and the side surface of the first bolt 111 is threadedly connected with a first nut 113.

[0027] In a specific embodiment, the first bolt 111 is inserted into the connecting hole 112, and cooperates with the first nut 113 to enhance the connection strength between the end 104 and the heat dissipation body 101, and facilitates disassembly of the end 104.

[0028] Referring to Figures 2-4 , the side of the plurality of heat dissipation bodies 101 is provided with a communication hole 121, and the first connecting shaft 201 and the second connecting shaft 202 are both inserted into the communication hole 121.

[0029] In a specific embodiment, the communication hole 121 facilitates the insertion and connection of the first connecting shaft 201 and the second connecting shaft 202, thereby improving the disassembly convenience of the heat dissipation body 101.

[0030] Referring to Figure 2 and Figure 3 , the inner walls of the opposite sides of the two heat dissipation bodies 101 are both fixedly connected with two T-shaped blocks 131.

[0031] In a specific embodiment, the T-shaped block 131 is used to limit the first connecting shaft 201 and the second connecting shaft 202.

[0032] Referring toFigure 4 One end of the first connecting shaft 201 is fixedly connected with the second bolt 211, and one end of the second connecting shaft 202 is provided with the second screw hole 212, and the second bolt 211 is threadedly connected in the second screw hole 212.

[0033] In a specific embodiment, the second bolt 211 is threadedly connected in the second screw hole 212, and the cooperation of the limiting nut 205 can enhance the fastening strength of the radiator body 101, and the first connecting shaft 201 and the second connecting shaft 202 can be disassembled by removing the second bolt 211.

[0034] Please refer to Figure 4 Both sides of the positioning block 203 are provided with two T-shaped grooves 221, and the two T-shaped blocks 131 are clamped in the T-shaped grooves 221.

[0035] In a specific embodiment, the T-shaped block 131 clamped in the T-shaped groove 221 can improve the positioning and fastening effect of the positioning block 203 on the radiator body 101.

[0036] Please refer to Figure 2 and Figure 3 The plurality of radiator bodies 101 and the flow guide pieces 102 are made of cast aluminum, and the heat dissipation pipes 105 are made of cast copper.

[0037] In a specific embodiment, the cast aluminum radiator body 101 and the flow guide piece 102 cooperate with the cast copper heat dissipation pipe 105 to significantly improve the anti-rust and corrosion resistance of the composite radiator, thereby assisting in prolonging the service life of the composite radiator.

[0038] Working principle: in use, the plurality of cast aluminum radiator bodies 101 cooperate with the flow guide pieces 102 to not only enhance the anti-rust and corrosion resistance of the radiator body 101, but also have a flow guiding effect on the accumulated water on the surface of the radiator body 101 to avoid rust caused by accumulated water, and the existence of the paint coating 103 can further improve the anti-rust effect of the composite radiator. When disassembling the composite radiator, first remove the first connecting shaft 201 and the second connecting shaft 202 from the plurality of radiator bodies 101, and remove the first bolt 111 from the connecting hole 112 to disassemble the end 104 and the radiator body 101, thereby disassembling the plurality of radiator bodies 101, thereby improving the disassembly convenience of each component.

[0039] It is to be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0040] While the embodiments of the present application have been illustrated and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made therein without departing from the spirit and scope of the application, which is defined by the appended claims and their equivalents.

Claims

1. A rust-proof and corrosion-resistant copper-aluminum composite heat sink, characterized in that, Include: The radiator assembly (100) includes several connected radiator bodies (101), several flow guides (102) are arranged equidistantly on both sides of the several radiator bodies (101), the surfaces of the several radiator bodies (101) and flow guides (102) are sprayed with a paint coating (103), the upper and lower ends of the radiator body (101) are detachably connected with an end (104), a heat dissipation pipe (105) is inserted into the end (104), one end of the heat dissipation pipe (105) is fixedly connected with a spiral pipe (106); The fastening assembly (200) includes a first connecting shaft (201) and a second connecting shaft (202) inserted into the inside of the several radiator bodies (101), the side surfaces of the first connecting shaft (201) and the second connecting shaft (202) are connected with a positioning block (203), the surface of the positioning block (203) is provided with an insertion hole (204), the first connecting shaft (201) and the second connecting shaft (202) are inserted into the inside of the insertion hole (204), the positioning block (203) and the inner wall of the radiator body (101) are matched, and one end of the first connecting shaft (201) and the second connecting shaft (202) is fixedly connected with a limiting nut (205).

2. The rust-proof and corrosion-resistant copper-aluminum composite radiator according to claim 1, characterized in that: The lower end of the end (104) is fixedly connected with several first bolts (111), the upper and lower ends of the radiator body (101) are provided with several connecting holes (112), and the first bolts (111) are inserted into the connecting holes (112).

3. The rust-proof and corrosion-resistant copper-aluminum composite radiator of claim 1, wherein: The side of the several radiator bodies (101) is provided with a communication hole (121), and the first connecting shaft (201) and the second connecting shaft (202) are inserted into the communication hole (121).

4. The rust-proof and corrosion-resistant copper-aluminum composite radiator of claim 1, characterized in that: The inner walls of the opposite sides of two of the radiator bodies (101) are fixedly connected with two T-shaped blocks (131).

5. The rust-proof and corrosion-resistant copper-aluminum composite radiator of claim 1, characterized in that: One end of the first connecting shaft (201) is fixedly connected with a second bolt (211), one end of the second connecting shaft (202) is provided with a second threaded hole (212), and the second bolt (211) is threadedly connected in the second threaded hole (212).

6. The rust-proof and corrosion-resistant copper-aluminum composite radiator of claim 4, characterized in that: Both sides of the positioning block (203) are provided with two T-shaped grooves (221), and the two T-shaped blocks (131) are clamped in the T-shaped grooves (221).

7. The rust-proof and corrosion-resistant copper-aluminum composite radiator of claim 1, characterized in that: The several radiator bodies (101) and the flow guides (102) are made of cast aluminum, and the heat dissipation pipe (105) is made of cast copper.