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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >An investigation of fretting wear behaviour of nickel coatings for electrical contacts application in dry and lubricated conditions
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An investigation of fretting wear behaviour of nickel coatings for electrical contacts application in dry and lubricated conditions

机译:在干燥和润滑条件下用于电触点应用的镍涂层的微​​动磨损行为的研究

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摘要

Fretting remains a major cause of connector failure and can impair reliability of complex system. Much work is devoted to minimise the effects of cyclic displacements in the contact interface. One of the options is to choose proper materials for the final layer and eventually select an underlayer. Another option is to apply a lubricant compatible with the electrical function of the connecting device. Its effect must be the reduction of friction with the preservation of conduction. In this work we have investigated the properties of nickel electrodeposited on cuprous coupons submitted to an imposed sine displacement fretting test (1 Hz, 25 μm, 2.5 N). The contacts are of the sphere on plane type. The plating conditions are shown to have a large effect on the microstructure, roughness and composition of the nickel coatings. Consequently the fretting behaviours of the compared coating are different. Fretting degradation is evaluated for our application as the number of cycles for which the build-up of oxidised debris gives a value of electrical resistance superior to a threshold. During the fretting test the rough nickel with large grains is observed to be prone to very high friction and partial slip. Fretting of the smoother coating with small grains is characterised by gross slip. Contacts were lubricated with solutions of perfluorinated polyether (PFPE). It is shown that a strong friction reduction takes place and that the fretting degradation is postponed. Surface analysis shows that fluorine is grafted in the interface and protects the interface. The electrodeposition process and the properties of the nickel coating are shown to have an effect on the lubricant behaviour in the contact interface. These results show the strong potential of lubricated nickel for applications in the field of electrical devices.
机译:微动仍然是连接器故障的主要原因,并且可能损害复杂系统的可靠性。为了减少接触界面中的周期性位移的影响,做了很多工作。选项之一是为最后一层选择合适的材料,然后最终选择一个底层。另一种选择是使用与连接设备的电气功能兼容的润滑剂。其效果必须是在保持传导的同时减少摩擦。在这项工作中,我们研究了在正弦位移微动测试(1 Hz,25μm,2.5 N)下进行电沉积在亚铜试片上的镍的性能。触点是平面上的球形。电镀条件对镍涂层的微​​观结构,粗糙度和组成有很大影响。因此,所比较的涂层的微动行为是不同的。对于我们的应用,微动降解被评估为循环次数,在这些循环中,氧化碎屑的堆积使电阻值超过阈值。在微动试验中,观察到粗大的粗镍容易产生很高的摩擦和偏滑。具有小晶粒的光滑涂层的微动特征是明显的滑移。接触点用全氟聚醚(PFPE)溶液润滑。结果表明,摩擦力大大降低,微动降解得以推迟。表面分析表明,氟接枝在界面中并保护界面。示出了电沉积过程和镍涂层的性质对接触界面中的润滑剂行为具有影响。这些结果表明,润滑镍在电气设备领域的应用潜力很大。

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