首页> 外文会议>Electrical Contacts, 2001. Proceedings of the Forty-Seventh IEEE Holm Conference on >Comparison of coefficient of friction and contact resistance during sliding wear on clad gold-nickel surfaces
【24h】

Comparison of coefficient of friction and contact resistance during sliding wear on clad gold-nickel surfaces

机译:包层金镍表面滑动磨损期间的摩擦系数和接触电阻的比较

获取原文

摘要

This paper presents analysis of experimental sliding wear data for four hard-gold flash over gold-diffused nickel material systems (GF-DGNi). The surface hardness of the DGNi material was altered by varying both the gold surface concentration and the amount of gold reduction after the diffusion anneal. These material systems were evaluated for unlubricated and lubricated sliding wear durability. The lubricant used was a 6-ring polyphenyl ether, OS-138, that was applied by dipping the specimens in a 2.50% solution of OS-138 in a propylene glycol monomethyl ether carrier. A gold flash palladium connector pin and a strip of metal that had been clad with the gold-nickel material system were mated to form a pseudo-crossed-rod configuration for each of these sliding wear experiments. Sliding wear experiments were conducted at 50 g and 150 g normal load. The amplitude of the motion was 1.14 mm with a velocity of 1 mm/s. Each experiment was conducted for a minimum of 2000 wear cycles and five replications were made for each experimental test condition. A new sliding wear test machine and software program were developed for this test series to appropriately handle the clad metal samples and to allow simultaneous measurement of coefficient of friction and electrical contact resistance during each wear cycle.
机译:本文介绍了在扩散金的镍材料系统(GF-DGNi)上的四个硬金闪蒸的实验滑动磨损数据的分析。通过改变扩散退火后的金表面浓度和金还原量来改变DGNi材料的表面硬度。对这些材料系统进行了未润滑和润滑的滑动磨损耐久性评估。使用的润滑剂是6环聚苯醚OS-138,通过将样品浸入2.50%的OS-138在丙二醇单甲醚载体中的溶液中来施加。对于这些滑动磨损实验中的每一个,都将金闪闪发光的钯连接器销钉和一条已覆有金-镍材料系统的金属条配对,以形成伪交叉杆构型。滑动磨损实验是在50 g和150 g正常载荷下进行的。运动幅度为1.14毫米,速度为1毫米/秒。每个实验至少进行2000次磨损循环,并针对每个实验测试条件进行五次重复。针对该测试系列开发了一种新的滑动磨损测试机和软件程序,以正确处理复合金属样品,并允许在每个磨损周期内同时测量摩擦系数和电接触电阻。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号