Tungsten-Copper Composites for Arcing Contact Applications

Magdalena Valentina Lungu
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引用次数: 4

Abstract

The study presents the research findings on electrical contact materials based on tungsten-copper (W-Cu) composites containing 72 ± 3 wt.% W, rest Cu, and up to 1.5 wt.% Ni. Cylindrical sintered parts with 57 ± 0.5 mm in diameter and 12 ± 0.5 mm in height were manufactured by pressing, sintering, and liquid infiltration route, then were mechanically polished and processed as complex shape protection rings used as arcing contacts in high voltage circuit breakers (HVCBs). The surface elemental composition of the sintered parts was determined by wavelength dispersive X-ray fluorescence spectrometry. The density was determined by hydrostatic weighing in ethanol. The arithmetic mean surface roughness was measured by contact profilometry. The microstructure was studied by scanning electron microscopy. The electrical conductivity was measured by eddy current method. The thermal diffusivity and specific heat were determined by laser flash analysis. Instrumented indentation testing and two computational methods (Oliver & Pharr, and Martens hardness) were employed to study the mechanical properties under quadratic loading and continuous multi cycle (CMC) indentation mode. The functional behavior of the arcing contacts was assessed in terms of static and dynamic contact resistance in operation in minimum oil HVCBs of 110 kV. The properties investigation revealed highly dense contact parts with homogeneous microstructure, Vickers hardness of 260-374, elastic modulus of 185-311 GPa, as well as good electrical and thermal conductivity. The arcing contacts proved a good functional behavior. in service, too. The results endorse the developed sintered contact materials for implementation in practical applications.
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电弧接触用钨铜复合材料
本研究介绍了基于钨铜(W-Cu)复合材料的电接触材料的研究结果,该复合材料含有72±3wt .%的W,剩余的Cu和高达1.5 wt.%的Ni。采用压制、烧结、液浸等工艺制备直径为57±0.5 mm、高度为12±0.5 mm的圆柱形烧结件,经机械抛光加工成复杂形状的保护环,用于高压断路器(hvcb)的电弧触点。采用波长色散x射线荧光光谱法测定了烧结件的表面元素组成。密度用液体静力称量法测定。用接触轮廓法测量了算法平均表面粗糙度。用扫描电镜对其微观结构进行了研究。电导率采用涡流法测定。用激光闪光法测定了材料的热扩散率和比热。采用仪器压痕试验和两种计算方法(Oliver & Pharr硬度和Martens硬度)研究了二次加载和连续多循环压痕模式下的力学性能。在110kv最小含油高压断路器中,通过静、动态接触电阻对电弧触头的功能行为进行了评价。性能研究表明,接触件致密,组织均匀,维氏硬度为260 ~ 374,弹性模量为185 ~ 311 GPa,具有良好的导电性和导热性。电弧触点具有良好的功能特性。也在服役。研究结果支持所开发的烧结触点材料在实际应用中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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