碳化钨增强铜合金复合材料的电阻率和力学性能:实验研究

B. M. Girish, B. Basawaraj, B. Satish, D. Somashekar
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引用次数: 0

摘要

介绍了Cu-WC复合材料的电学、力学和物理性能。铜由于其高的导电性和导热性、低成本和易于制造而被广泛用作电触点材料。采用液体冶金的方法,利用覆盖氧化铝的钢制搅拌器以500转/分的转速搅拌熔融合金以获得涡流,制备了WC含量为0 - 8%的铜合金复合材料。实验结果表明,随着复合材料中WC含量的增加,复合材料的密度也随之增加,这与采用混合规律计算的结果一致。随着基体中WC浓度的增加,Cu-WC复合材料的硬度和极限抗拉强度提高,但塑性降低。对复合材料的极限拉伸强度和硬度进行了模型分析,发现材料预测Paul模型的近似力学与实验结果一致。实验值与利用p.g. Klemens模型估算的复合材料电阻率的理论结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrical Resistivity and Mechanical Properties of Tungsten Carbide Reinforced Copper Alloy Composites: Experimental Investigation
The electrical, mechanical, and physical properties of Cu-WC composites are described in this paper. Copper is widely used as a material for electrical contacts on account of its high electrical and thermal conductivities, low cost and ease of fabrication. By stirring molten alloy to obtain vortex using a steel stirrer covered with alumina and rotating at 500 rpm, composites of copper alloy containing 0–8 weight percent WC were manufactured utilising the liquid metallurgical approach. The experimental results demonstrated that as the WC content in the composites increases, the density of the composites increases, which is consistent with the values calculated using the mixtures rule.  Cu–WC composites' hardness and ultimate tensile strength improved as the WC concentration in the matrix increased, while ductility decreased. For ultimate tensile strength and hardness, a model analysis of composites was performed, and it was discovered that the approximate mechanics of materials prediction Paul model is consistent with experimental results. The experimental values were consistent with the theoretical results of electrical resistivity of composites estimated using the P.G Klemens model.
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