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    热界面材料导热硅脂的研究进展

    Research Progress on Heat-Conducting Silicone Grease Thermal Interface Materials

    • 摘要: 随着电子器件不断微型化与集成化,其功率密度急剧提高,热量累积加剧。热界面材料能够保证封装与散热装置之间良好的热传导,使热量快速耗散,从而避免电子器件因过热而性能下降。综述了常见热界面材料导热硅脂的组成及其导热机理,总结了影响导热硅脂热导率的因素,包括导热填料的种类、形貌和粒径分布以及与聚合物基体的相容性,从导热填料的协同效应和表面改性方面介绍了提升导热硅脂热导率的方法。指出未来应从深化表面改性技术、优化导热填料复配协同效应以及加强理论预测模型构建方面进一步提高导热硅脂的综合性能。

       

      Abstract: With the continuous miniaturization and integration of electronic devices, their power density increases sharply, and heat accumulation is being exacerbated. Thermal interface materials can ensure good heat conduction between package and heat dissipation device to dissipating heat quickly, preventing performance degradation of electronic devices because of overheating. The composition and thermal conductivity mechanism of heat-conducting silicone grease, a common thermal interface material, are reviewed. The factors affecting the thermal conductivity of heat-conducting silicone grease are summarized, including the type, morphology and particle size distribution of heat-conducting fillers, and the compatibility between heat-conducting fillers and polymer matrix. The methods to enhance the thermal conductivity of heat-conducting silicone grease are introduced from aspects of the synergistic effect and surface modification of heat-conducting fillers. In the future, the comprehensive performance of heat-conducting silicone grease should be further improved by deepening surface modification technology, optimizing the synergistic effect of heat-conducting fillers and strengthening the construction of theoretical prediction model.

       

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