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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Research on fretting Regimes of gold-plated copper alloy electrical contact material under different vibration amplitude and frequency combinations
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Research on fretting Regimes of gold-plated copper alloy electrical contact material under different vibration amplitude and frequency combinations

机译:不同振幅和频率组合下镀金铜合金电触头材料微动区的研究

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摘要

Gold-plated copper alloy electrical contact materials are widely used in electrical interconnection to meet the requirements of high quality and high reliability for aviation and aerospace engineering. Not much is known about the fretting failure mechanism of such materials when placed in an environment with a high-frequency vibration. This paper investigates the fretting wear and corrosion behavior of gold-plated copper alloy contacts experimentally under different vibration amplitude and frequency combinations. Three typical degradation features are summarized. Relative surface morphology, element distribution, and wear track of worn surfaces are also analyzed. The fretting map, which can discriminate the fretting regimes with vibration amplitude and frequency combinations, is presented. The map can be clearly divided into the infinite electrical contact life zone, the oxidation-dominated failure zone, and the transient unstable conductivity failure zone. The appropriate sliding velocity is the critical condition for the sharply degradation of contact resistance after the gold coating has worn out. The results show that the dynamic contact resistance is significantly influenced by the coarser and irregular profile features of wear track induced by higher sliding speed, as well as the high resistive oxides debris or oxide metal mixture. (C) 2014 Elsevier B.V. All rights reserved.
机译:镀金铜合金电触头材料广泛用于电气互连中,以满足航空和航天工程的高质量和高可靠性要求。当将这种材料置于具有高频振动的环境中时,对这种材料的微动破坏机理了解不多。本文研究了在不同振动幅度和频率组合下镀金铜合金触点的微动磨损和腐蚀行为。总结了三个典型的降级功能。还分析了相对表面形态,元素分布和磨损表面的磨损轨迹。提出了微动图,该微动图可以通过振动幅度和频率组合来区分微动状态。该图可以清楚地分为无限电接触寿命区域,氧化占主导的失效区域和瞬态不稳定电导率失效区域。合适的滑动速度是金涂层磨损后接触电阻急剧降低的关键条件。结果表明,动态接触电阻受较高的滑动速度以及高电阻氧化物碎片或氧化物金属混合物引起的磨损轨迹的较粗糙和不规则轮廓特征的显着影响。 (C)2014 Elsevier B.V.保留所有权利。

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