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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Prediction of electrical contact resistance failure of Ag/Ag plated contact subjected to complex fretting-reciprocating sliding
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Prediction of electrical contact resistance failure of Ag/Ag plated contact subjected to complex fretting-reciprocating sliding

机译:Ag / Ag电镀触点的电接触电阻预测经受复杂的往复式滑动

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摘要

Electronic connectors are extensively used in the car industry. However, due to engine vibration, fretting wear damage can decay the electrical contact resistance. In addition to small fretting oscillations, the connectors are subjected to clipping/unclipping, which also affects the Electrical Contact Resistance (ECR) endurance (i.e., Nc fretting cycles when Delta R > Delta Rc = 4 m Omega). To investigate this complex tribological process, an homogeneous Ag-Ni / Ag-Ni (2 mu m) contact was subjected to constant fretting sliding (delta(g)* = +/- 9 mu m) combined with intermittent millimetric reciprocating sliding. The analysis showed that, by transferring silver material from the reciprocating track to the fretting scar, ECR endurance was linearly increased. The larger the reciprocating stroke (D from 0.25 mm to 1.5 mm), the greater the endurance. Besides, if the N-f fretting period between reciprocating sliding sequences was too long, the positive effect of the reciprocating was reduced. Expressing both reciprocating silver transfer kinetics and fretting wear rates, a global model of ECR endurance is proposed. (C) 2016 Elsevier B.V. All rights reserved.
机译:电子连接器广泛用于汽车行业。但是,由于发动机振动,微动磨损损坏可以衰减电接触电阻。除了小的微动振荡之外,连接器还经受剪切/未剪切,这也影响电接触电阻(ECR)耐久性(即,当Delta r>ΔRc=4mΩ=4mΩ时)。为了研究这种复杂的摩擦学过程,对均相的Ag-Ni / Ag-Ni(2μm)接触进行恒定的微动滑动(Delta(g)* = +/-9μm),与间歇毫米往复滑动相结合。分析表明,通过将银材料从往复式轨道转移到微动瘢痕,ECR耐久性被线性增加。往复行程(D 0.25mm至1.5mm)越大,耐久性越大。此外,如果往复滑动序列之间的N-F膛线期过长,则往复运动的正效应减少。提出了一种表达往复银转移动力学和烦恼磨损率,提出了一种全球ECR耐久性模型。 (c)2016年Elsevier B.v.保留所有权利。

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