首页> 外文会议>Proceedings of the Forty-First IEEE holm conference on electrical contacts(Electrical Contacts-1995) >Corrosion Control and Lubrication of Plated Noble Metal Connector Contacts
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Corrosion Control and Lubrication of Plated Noble Metal Connector Contacts

机译:电镀贵金属连接器触点的腐蚀控制和润滑

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There is considerable interest in the corrosion control and lubrication of separable electronic connectors and other contact-containing devices. This originates in the desire to minimize the use of costly noble metals, like gold, palladium, and their alloys, without sacrifice in reliability. When the application is in aggressive environments, pore corrosion limits the reliability of the connector. Also, there may be many engagements and separations of the connector during its lifetime which can result in a wearing out of the noble metal finish. Numerous surface treatments have been proposed for corrosion control including barrier coatings which restrict access of air to the contact, and chemical modifications of the finish such as chromating. This paper is a study of barrier coatings and a chromating treatment with the objective of identifying those characteristics which improve the performance of the contact finish (gold plate and gold flashed palladium, both on a nickel underplate). Polyphenylether-microcrystalline wax mixtures were used in a laboratory modelling study where the oil-wax ratio and the coating thickness were varied. Performances in a corrosive-high humidity environment, in wear, and during fretting (with the additional variable of surface roughness) were determined. It was found that gold finishes, even as thin as 0.1 micrometer, when treated with suitable coatings can approach the corrosion performance of much thicker platings.
机译:人们对可分离电子连接器和其他包含触点的装置的腐蚀控制和润滑非常感兴趣。这源于希望在不牺牲可靠性的情况下,尽量减少使用昂贵的贵金属(如金,钯及其合金)。当应用在腐蚀性环境中时,孔腐蚀会限制连接器的可靠性。而且,连接器在其使用寿命期间可能会有许多啮合和分离,这可能会导致贵金属涂层的磨损。已经提出了许多用于腐蚀控制的表面处理方法,包括限制空气进入接触件的阻隔涂层,以及涂层的化学改性,例如铬酸盐化。本文是对阻隔涂层和铬酸盐处理的研究,目的是确定那些可改善接触涂层性能的特性(在镍底板上均镀金和镀金的钯)。聚苯醚-微晶蜡混合物用于实验室模型研究中,其中油蜡比和涂层厚度各不相同。确定了在腐蚀性高湿环境中,磨损中以及微动过程中的性能(附加的表面粗糙度变量)。发现使用合适的涂层处理后的金饰层,即使薄至0.1微米也可以达到更厚的镀层的腐蚀性能。

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