材料科学
微观结构
热导率
复合材料
钨
铜
电阻率和电导率
复合数
冶金
电气工程
工程类
作者
Ahmad Hamidi,H. Arabi,S. Rastegari
标识
DOI:10.1016/j.ijrmhm.2021.105685
摘要
Molten copper infiltration through tungsten skeleton produces WCu composites with versatile applications. In this research, the compressibility and sintering of three W powders with different particle sizes (fine: 1.2 μm, medium: 6 μm, coarse: 8.5 μm) were studied, and 80 vol%W composite specimens were produced from the various primary tungsten powders. The microstructure and electrical conductivity of composites were examined, and a model was successfully developed to establish a relationship between microstructural aspects and electrical conductivity. In addition, the WCu composites were exposed to a high-velocity oxyacetylene flame to evaluate the thermal erosion resistance. Results showed that in addition to density, microstructural aspects have significant effects on conductivity and thermal erosion resistance of WCu composites. The larger copper channels in WCu composites provided higher conductivity and also higher erosion resistance. In addition, the uniformity of channels walls had the same effects. These microstructural aspects affected on evaporation of the copper phase and the transpiration cooling.
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