首页> 外文会议>Proceedings of the Forty-First IEEE holm conference on electrical contacts(Electrical Contacts-1995) >A Statistical Comparison of a Clad Material and Gold Flashed Palladium-Nickel Under Various Fretting Conditions
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A Statistical Comparison of a Clad Material and Gold Flashed Palladium-Nickel Under Various Fretting Conditions

机译:不同微动条件下复合材料与闪蒸钯镍合金的统计比较

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This paper presents a statistical comparison of gold flashed palladium-nickel and a clad material under fretting conditions. The clad material used in this experiment is a 10 μ-inch outer layer of ASTM B-522 (69Au-25Ag-6Pt), a 20 μ-inch intermediate layer of ASTM B-731 (60Pd-40Ag) and a nickel diffusion barrier.rnThe variables used in the analysis are the material systems, fret amplitudes, current flowing through the contact, and relative humidity level. Three different material systems were used in the research project. They are: gold flashed palladium-nickel mated to itself, the clad material mated to itself and the clad material system mated to gold flashed palladium-nickel. The fret amplitude was changed between 20 and 50 microns. Current flowing through the contact was changed between 10 and 100 milliamp. Relative humidity was controlled at 40% or 80%.rnThe comparison of the material systems was accomplished using an analysis of variance technique and contrasts were used to compare the variables. This technique showed the all clad system to have the best fretting performance of the three material systems. An increase in relative humidity resulted in an increase in fretting performance. In addition, an increase in current flow or fret amplitude was found to cause a decrease in fretting performance for all three material systems.
机译:本文介绍了微动条件下闪金钯镍和复合材料的统计比较。此实验中使用的复合材料是ASTM B-522(69Au-25Ag-6Pt)的10μ英寸外层,ASTM B-731(60Pd-40Ag)的20μ英寸中间层和镍扩散阻挡层分析中使用的变量是材料系统,品格振幅,流经触点的电流和相对湿度水平。该研究项目使用了三种不同的材料系统。它们是:与自身配合的闪金钯镍合金,与自身配合的包覆材料以及与闪金钯镍合金配合的包覆材料体系。品格振幅在20至50微米之间变化。流经触点的电流在10到100毫安之间变化。相对湿度控制在40%或80%。rn使用方差分析技术完成材料系统的比较,并使用对比来比较变量。该技术表明全包覆系统在三种材料系统中均具有最佳的微动性能。相对湿度的增加导致微动性能的提高。此外,发现所有三种材料系统的电流或品格振幅增加都会导致微动性能降低。

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