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A New Silver-Based Graded Composite as Electrical Contact Material

机译:一种新型的银基渐变复合材料作为电触头材料

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摘要

Silver metal oxides (Ag/MeO) are extensively used as electrical contact materials in switching systems. A contact material with ideal operating parameters is very difficultly fabricated by conventional manufacturing techniques. In this paper, a new electrical contact material characterized by graded distributions of different oxides in Ag matrix was fabricated in order to optimize the distributions of operating parameters in material bulk instead of to enhance synchronously properties of that on contact surface. Two selected metal oxides, NiO and SnO2, were doped into Ag matrices, of which one surface layer NiO 12wt% was doped and another SnO2 12wt%, and the concentrations of NiO and SnO2 were varied gradually in bulk. The electrical contact test results show that the average operating number of NiO doped surface layer of graded Ag composite as contact surface is 4600 under 20A current and 220V AC voltage without melted welding while that of samples doped uniformly with NiO is 2200 under the same testing conditions. However, the average loss of mass due to arc erosion of graded samples is higher than that of uniform samples. We conclude that the functionally graded material (FGM) concept has potential application for electric contact materials.
机译:银金属氧化物(Ag / MeO)被广泛用作开关系统中的电接触材料。具有理想操作参数的接触材料很难通过常规制造技术来制造。本文制备了一种新型的电接触材料,其特征在于Ag基质中不同氧化物的梯度分布,以优化材料体积中的工作参数分布,而不是增强接触表面上的同步性能。将两种选择的金属氧化物NiO和SnO2掺杂到Ag基体中,其中一个表面层掺杂了12wt%的NiO,另一个掺杂了12wt%的SnO2,并且NiO和SnO2的浓度逐渐变化。电接触测试结果表明,在相同的测试条件下,20A电流和220V AC电压(不熔化焊接)下,梯度Ag复合材料作为接触表面的NiO掺杂表面层的平均工作数量为4600,而均匀掺杂NiO的样品的平均工作数量为2200。 。但是,由于分级样品的电弧腐蚀造成的平均质量损失高于均匀样品。我们得出结论,功能梯度材料(FGM)概念在电接触材料中具有潜在的应用。

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