The Effect of Surface Segregation of Mg on the Contact Resistance of Al-0.5-Percent Mg

M. Braunovic, L. Pomathiod, J. Bailon
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引用次数: 5

Abstract

Silver and Ag-W (10 weight percent W) were operated in a 5.I-A (peak) 308-V (peak) full-wave rectified dc circuit. The experimental switching system was operated 1.5 times per minute; the opening and closing velocities were 4 x 10-2 and 3 x 10-4 cm/s, respectively; the fully open contact spacing was 200 µm; and the contacts were closed for 3 s. The opening and closing of the contacts were controlled by a heater-bimetal combination attached to the moving contact. The following contact pairs were used: Ag versus Ag, Ag-W versus Ag-W and Ag versus Ag-W. All combinations of contact material and contact polarity were used. The experimental results showed that there was always a net transfer of contact material from the cathode to the anode. The volume of material transferred was strongly dependent upon whether the anode was the moving (hotter) or the fixed (cooler) contact: the greater erosion occurring when the anode was the hotter contact. For Ag versus Ag contacts thc erosion pattern resulted inone pip on the anode and one crater on the cathode. For Ag-W versus AgW contacts the presence of the small percentage of W resulted in multiple pip and crater formations. The experiments with the Ag versus Ag-W showed that the cathode electrode material determined the erosion pattern observed, i.e., when the Ag-W was the cathode, multiple pip and crater'formations occurred, but when Ag was the cathode, only a single pip and crater structure was observed. The presence of the W either in the cathode or in the anode decreased the observed erosion. These experimental results are discussed in terms of how the presence of W affects the emission characteristics of the cathode region and also affects the movement of the arc roots.
Mg表面偏析对al - 0.5% Mg接触电阻的影响
银和Ag-W(重量百分之十W)在5。I-A(峰值)308-V(峰值)全波整流直流电路。实验开关系统每分钟运行1.5次;打开和关闭的速度分别为4 × 10-2和3 × 10-4 cm/s;全开触点间距为200µm;触点关闭了3秒。触点的开启和关闭由附在移动触点上的加热器-双金属组合控制。使用了以下接触对:Ag对Ag, Ag- w对Ag- w, Ag对Ag- w。使用了接触材料和接触极性的所有组合。实验结果表明,接触材料从阴极到阳极始终存在净转移。转移的材料体积在很大程度上取决于阳极是移动(更热)还是固定(更冷)的接触:当阳极是更热的接触时,会发生更大的侵蚀。对于银对银触点,腐蚀模式导致阳极上有一个突起,阴极上有一个凹坑。对于Ag-W和AgW接触,小比例W的存在导致了多个弹坑的形成。Ag与Ag- w的实验表明,阴极电极材料决定了所观察到的侵蚀模式,即当Ag- w为阴极时,形成多个突起和坑状结构,而当Ag为阴极时,只观察到单个突起和坑状结构。阴极或阳极中W的存在减少了所观察到的侵蚀。这些实验结果讨论了W的存在如何影响阴极区的发射特性,也影响电弧根的运动。
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