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压力浸渗法制备的金刚石/Cu复合材料在中性盐雾环境中的腐蚀行为

Corrosion Behavior of Pressure Infiltration Diamond/Cu Composites in Neutral Salt Spray.

作者信息

Xie Zhongnan, Guo Hong, Zhang Ximin, Huang Shuhui

机构信息

State Key Laboratory of Nonferrous Metals and Processes, GRINM Group Co., Ltd., Beijing 101400, China.

GRIMAT Engineering Institute Co., Ltd., Beijing 101400, China.

出版信息

Materials (Basel). 2020 Apr 14;13(8):1847. doi: 10.3390/ma13081847.

Abstract

Diamond particle-reinforced copper matrix composites (Diamond/Cu) are recognized as promising electronic packaging materials due to their excellent thermophysical properties. It is necessary to investigate the reliability of Diamond/Cu composites under extreme environmental conditions. The corrosion behavior of Diamond/Cu composites was studied in a 5 wt% NaCl neutral salt spray. Surface morphology, thermal conductivity, bending strength, corrosion rate, and corrosion depth resulting from corrosion were researched in this paper. The results showed that the corrosion phenomenon mainly occurs on the copper matrix, and the diamond and interface products do not corrode. The corrosion mechanism of Diamond/Cu composites was micro-galvanic corrosion. The corrosion product formed was CuCl(OH). The salt spray environment had a great influence on the composite surface, but the composite properties were not significantly degenerated. After a 168-h test, the bending strength was unaltered and the thermal conductivity of gold-plated composites showed a slight decrease of 1-2%. Surface gold plating can effectively improve the surface state and thermal conductivity of Diamond/Cu composites in a salt spray environment.

摘要

金刚石颗粒增强铜基复合材料(Diamond/Cu)因其优异的热物理性能而被认为是很有前景的电子封装材料。研究Diamond/Cu复合材料在极端环境条件下的可靠性很有必要。本文研究了Diamond/Cu复合材料在5 wt% NaCl中性盐雾中的腐蚀行为。研究了腐蚀后的表面形貌、热导率、弯曲强度、腐蚀速率和腐蚀深度。结果表明,腐蚀现象主要发生在铜基体上,金刚石和界面产物不发生腐蚀。Diamond/Cu复合材料的腐蚀机理为微电偶腐蚀。形成的腐蚀产物为CuCl(OH)。盐雾环境对复合材料表面有很大影响,但复合材料性能没有明显退化。经过168小时的试验后,弯曲强度未发生变化,镀金复合材料的热导率略有下降1-2%。表面镀金可以有效改善盐雾环境中Diamond/Cu复合材料的表面状态和热导率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62e3/7215741/d233a91888be/materials-13-01847-g001.jpg

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