A computer graphics card heat dissipation fin deep cleaning device

By designing a deep cleaning device for graphics card heatsink fins that supports the air distribution mechanism, adaptable pressing mechanism, vibration brushing mechanism, and active pressure brushing mechanism, the problem of incomplete cleaning and deformation of graphics card heatsink fins has been solved, achieving efficient and non-destructive cleaning results.

CN122141998APending Publication Date: 2026-06-05邵香英

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
邵香英
Filing Date
2026-05-08
Publication Date
2026-06-05

AI Technical Summary

Technical Problem

Existing technologies often fail to effectively remove dust from graphics card heatsink fins using conventional brush cleaning methods, and this can easily lead to fin deformation.

Method used

A deep cleaning device for computer graphics card heatsink fins was designed, comprising a support and air distribution mechanism, an adaptive pressing mechanism, a vibration brushing mechanism, and an active pressure brushing mechanism. Through the combination of high-pressure airflow and mechanical brushing, the device achieves deep cleaning and fixation of the fins.

Benefits of technology

It effectively prevents the heat dissipation fins from deforming during high-intensity brushing, ensuring cleaning results, while adapting to fins with different spacing to achieve efficient cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of heat dissipation fin cleaning, and discloses a computer graphics card heat dissipation fin deep cleaning device, which comprises a support air distribution mechanism, an adaptive fin pressing mechanism, a vibrating dust brushing mechanism and a driven brush pressing mechanism. The support air distribution mechanism is arranged to provide main support and generate and distribute airflow, thereby driving the driven brush pressing mechanism to expand and driving the adaptive fin pressing mechanism to exhaust and clean the heat dissipation fin. The adaptive fin pressing mechanism is installed at the bottom of the support air distribution mechanism to adapt to heat dissipation fins with different intervals and fix the heat dissipation fins during cleaning. The vibrating dust brushing mechanism is installed at the bottom of the support air distribution mechanism, and the driven brush pressing mechanism is installed at the bottom of the support air distribution mechanism. The computer graphics card heat dissipation fin deep cleaning device can clamp and fix the heat dissipation fin to be cleaned by means of the adaptive fin pressing mechanism, so as to implement high-tight-pressure brushing cleaning by the vibrating dust brushing mechanism, thereby effectively preventing the heat dissipation fin from being deformed in high-intensity brushing.
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