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>Laser cladding of copper with molybdenum for wear resistance enhancement in electrical contacts
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Laser cladding of copper with molybdenum for wear resistance enhancement in electrical contacts
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机译:激光熔覆铜和钼以增强电触头的耐磨性
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摘要
Laser cladding of Mo on Cu has been attempted with the aim of enhancing the wear resistance and hence increasing the service life of electrical contacts made of Cu. In order to overcome the difficulties arising from the large difference in thermal properties and the low mutual solubility between Cu and Mo, Ni was introduced as an intermediate layer between Mo and Cu. The Ni and Mo layers were laser clad one after the other to form a sandwich layer of Mo/Ni/Cu. Excellent bonding between the clad layer and the Cu substrate was ensured by strong metallurgical bonding. The hardness of the surface of the clad layer is seven times higher than that of the Cu substrate. Pin-on-disc wear tests consistently showed that the abrasive wear resistance of the clad layer was also improved by a factor of seven as compared with untreated Cu substrate. The specific electrical contact resistance of the clad surface was about 5.6 × 10-7 Ω cm2.
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机译:为了增强耐磨性并因此增加由Cu制成的电触点的使用寿命,已经尝试了Mo在Cu上的激光熔覆。为了克服由热性质的大差异和Cu和Mo之间的互溶性低引起的困难,引入Ni作为Mo和Cu之间的中间层。一层又一层地激光熔覆Ni和Mo层,以形成Mo / Ni / Cu夹层。牢固的冶金结合确保了包覆层与Cu基材之间的出色结合。包覆层表面的硬度是Cu基板的硬度的七倍。圆盘针磨损试验始终表明,与未处理的铜基材相比,覆层的耐磨性也提高了七倍。包层表面的比电接触电阻约为5.6×10-7Ωcm2。
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