Investigation of the thickness of lubricant film on gold plated surface

Y.L. Zhou, J.G. Zhang
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引用次数: 3

Abstract

Lubricants for electrical contacts are usually diluted to low concentrations in order to keep boundary lubrication between contacts after solvent is volatilized. Evidence shows that the thickness and coverage of lubricants play an important role in reducing wear, preventing corrosion and blocking pores on the gold plating surface of electrical contacts. The distribution of lubricant film usually is observed by putting colorful dyes into lubricant. Average film thickness can be estimated by the weight of lubricant on the sample divided by surface area. Two new methods are introduced in this paper to measure the coverage and film thickness on a surface with much higher accuracy: (1) backscattering electron (BSE) method-by changing acceleration voltage of the scanning electron microscope (SEM) at low ratings, the film distribution can be shown visually by the BSE image; (2) three dimensional profiler (3D profiler) method-by insertion of the optical parameters of the lubricants, film thickness can be measured with accuracy. This paper illustrates and compares the advantages and disadvantages of the above four methods.
镀金表面润滑膜厚度的研究
为了在溶剂挥发后保持触点之间的边界润滑,通常将电触点的润滑剂稀释到低浓度。有证据表明,润滑剂的厚度和覆盖范围对减少电触点镀金表面的磨损、防止腐蚀和堵塞气孔具有重要作用。润滑油膜的分布通常是通过在润滑油中加入彩色染料来观察的。平均膜厚可以通过样品上润滑剂的重量除以表面积来估计。本文介绍了两种测量表面覆盖度和膜厚的新方法:(1)后向散射电子(BSE)法——通过改变扫描电子显微镜(SEM)在低额定值下的加速电压,通过BSE图像直观地显示膜的分布;(2)三维剖面仪(3D剖面仪)法——通过插入润滑油的光学参数,可以精确测量油膜厚度。本文对以上四种方法的优缺点进行了说明和比较。
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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