CNC machining black anodized heatsinks
Customize Aluminum Heatsink
CNC machining black anodized heatsink , mainly used for motherboard. The grooved design of the surface increasing the dissipation area. Customized lengths, colors and holes are accepted.
Features
- Highly Performance heatsinks.
- Light and highly conductive thermal dissipation.
- Available in various dimensions and shapes.
- Heat pipe applicable, aluminum / copper stacked fin, or aluminum extruded / die-casting parts.
- With complex fin structure, easily shaped, and applied to different thermal requirements.
- Available in coating thermal adhesive / pad.
Material
6061 / 6063
Main Processing
CNC Milling → Stamping → Drilling → Tapping
Surface Treatment
Hairline Process / Sand-Blasting or Abrasive / Anodizing / Ultrasonic Cleaning / Vibrating Finishing.
Other Process
Riveting or Clinching.
Thermal Adhesive or Thermal Grease.
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More DetailsHow can advanced heatsink design impact the reliability of industrial computing systems?
Advanced heatsink design is critical for industrial computing reliability. Our black anodized heatsinks with grooved surface technology increase heat dissipation area by up to 30%, preventing thermal throttling and extending component lifespan. This translates to fewer system failures and reduced downtime in mission-critical applications. Contact us to discuss how our custom thermal solutions can enhance your industrial computer performance.
Our customization capabilities allow for precise tailoring of dimensions, hole configurations, and surface treatments to meet your specific thermal requirements. The comprehensive manufacturing process includes CNC milling, stamping, drilling, and tapping, followed by professional surface treatments including hairline processing, sand-blasting, anodizing, ultrasonic cleaning, and vibrating finishing. Additional options include heat pipe compatibility, aluminum/copper stacked fin configurations, and thermal adhesive/pad applications, making these heatsinks the ideal cooling solution for demanding industrial computing environments where reliability and performance are paramount.