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Fretting behaviour of tinned connectors under grease lubrication

机译:油脂润滑下镀锡连接器的微动行为

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Fretting is a well known phenomena due to unwanted micro displacements leading to drastic electrical contact resistance increase. Much work has been done to understand and evaluate the critical parameters in view of finding solutions to alleviate the problem. Several paths have been proposed involving for example connector design and surface modification. The simplest surface modification process is depositing an organic thin film with specific properties. The effect of liquid lubricants on fretting of electrical contacts has been well studied and the lubrication efficiency has been shown to depend on the degradation modes of the contacts which involve the nature and type of metallic surface (Au, Ni, Sn, Ag, plating thickness). Another type of lubrication involves semi liquid films such as greases. While much work has been done on the effect of greases on the fretting-wear of mechanical devices, less has been devoted to electrical contacts. In such field the grease films must also maintain a low electrical resistance for durations corresponding to field service. The work presented here was performed with a standard fretting device imposing controlled constant amplitude sine vibrations under constant normal load to pin on flat tinned contacts. This laboratory test allows comparing the behaviour of different types of greases for a given set of experimental conditions. Different commercial greases are compared involving different thickeners and different base oils. Tests at room temperature show little variations in the electrical behaviour of the grease coated contacts. Nevertheless wear particles dispersion seems to vary. A very high increase of contact resistance is observed in some cases after heat treatment 10 days at 150°C. Polymerization was observed to occur with one of the formulations and it is suggested that the base oil/thickener choice might be unfavourable to contact application.
机译:微动是一种众所周知的现象,由于不希望有的微位移导致电接触电阻急剧增加。为了找到缓解问题的解决方案,已经做了很多工作来理解和评估关键参数。已经提出了几种路径,包括例如连接器设计和表面修改。最简单的表面改性工艺是沉积具有特定性能的有机薄膜。液体润滑剂对电触点微动的影响已得到很好的研究,润滑效率已显示出取决于触点的降解模式,该模式涉及金属表面的性质和类型(Au,Ni,Sn,Ag,镀层厚度) )。另一种润滑方式涉及半液体薄膜,例如油脂。尽管在润滑脂对机械设备的微动磨损的影响方面已做了大量工作,但对电触点的投入却很少。在这样的现场,油脂膜还必须在与现场服务相对应的持续时间内保持低电阻。此处介绍的工作是使用标准微动装置执行的,该装置在恒定法向载荷下施加受控的恒定振幅正弦振动,以固定在平坦的镀锡触点上。该实验室测试可以比较给定一组实验条件下不同类型润滑脂的性能。比较了不同的商业润滑脂,其中涉及不同的增稠剂和不同的基础油。室温下的测试表明,涂有油脂的触点的电性能几乎没有变化。然而,磨损颗粒的分散性似乎有所不同。在某些情况下,在150°C下热处理10天后,观察到接触电阻的增加非常大。观察到其中一种配方发生了聚合反应,这表明基础油/增稠剂的选择可能不利于接触应用。

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