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Stamping parts mass production

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Aluminum Alloy CNC Radiator

Time:2026-04-20 Views:0

  Aluminum Alloy CNC Radiator, with "precision configuration, efficient adaptation and controllable quality" as the core, relies on high-quality aluminum alloy materials and CNC precision processing technology, combined with scientific and reasonable hardware configuration and detailed design, to create high-performance heat dissipation products suitable for multiple fields and scenarios. The configuration balances practicality, stability and adaptability, covering all dimensions such as material, processing, heat dissipation and interface. It not only meets the heat dissipation needs of different equipment, but also ensures long-term stable operation. It is widely used in electronics, communication, new energy, industrial equipment and other fields, highlighting the product's high-end configuration strength and refined design level.

  The core material configuration is excellent. 6061 and 6063 aviation-grade aluminum alloys are selected as the main materials, with high material purity and no impurities. The density is only 2.7g/cm³, which has both lightweight and high-strength advantages. The tensile strength reaches 205-300MPa, with excellent toughness. It is not easy to deform or crack after precision processing. At the same time, the thermal conductivity is as high as 201-237W/(m·K), with excellent heat conduction efficiency, providing a solid foundation for efficient heat dissipation. The material has undergone strict anti-oxidation and anti-corrosion treatment, effectively extending the service life of the radiator, adapting to different complex working conditions, and balancing durability and economy.

  The CNC processing configuration is precise and strict. High-precision CNC numerical control processing equipment is adopted, equipped with imported servo system and precision guide rail, with a positioning accuracy of ±0.005mm and a processing tolerance controlled within ±0.1mm, ensuring the size of every structure and every hole is accurate. The core processing configuration includes CNC milling, CNC drilling, precision bending and other processes. The heat dissipation fins formed by milling have uniform spacing and precise thickness, maximizing the heat dissipation area; the drilling process accurately controls the hole diameter and position, adapting to various installation and interface needs, and can be directly assembled without additional trimming, improving assembly efficiency.

  The heat dissipation configuration is efficient and diverse, adopting a dual heat dissipation structure of "fins + heat pipes". The heat dissipation fins adopt an integrated forming process, with a thickness of 0.8-1.2mm and a spacing of 1.5-3.0mm, arranged regularly and orderly, greatly improving heat dissipation efficiency; combined with oxygen-free copper heat pipes with a purity of 99.99%, it has excellent heat conduction performance, which can quickly conduct heat to the fins to achieve efficient heat dissipation. At the same time, a cooling fan can be selected according to needs, with adjustable fan speed, adapting to different heat dissipation loads, ensuring that the equipment can maintain a stable temperature under different working conditions and avoid overheating damage.

  The interface and detail configuration meet practical needs, with reserved interface holes of various specifications, adapting to the installation and connection needs of different equipment. The edges of the holes are smooth without burrs, with excellent sealing performance, effectively isolating the entry of dust and moisture. The surface treatment configuration is diversified, optional anodizing, precision wire drawing, electrostatic spraying and other processes. Anodizing forms a dense oxide film, improving corrosion resistance and thermal conductivity; wire drawing process creates high-end metallic texture, and spray plastic process adapts to the protection needs of different scenarios. In addition, it is equipped with a reinforced installation bracket, which is easy to install and firmly fixed, adapting to different installation scenarios, balancing practicality and safety, and fully meeting the heat dissipation and configuration needs of various equipment.