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Effect of fretting amplitude and frequency on the fretting corrosion behaviour of tin plated contacts

机译:微动振幅和频率对镀锡触点微动腐蚀行为的影响

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The fretting corrosion behaviour of tin plated copper alloy contacts at 3, 10 and 20 Hz and at two different track lengths (fretting amplitude) of +/- 5 and +/- 25 mu m is studied. The change in contact resistance as a function of fretting cycles, surface profile of the contact zone, extent of fretting damage, extent of oxidation and elemental distribution across the contact zone were used to assess the fretting corrosion behaviour. The time to reach a threshold value of contact resistance of 0.1 Omega is found to be early for the track length of +/- 5 mu m compared to that of +/- 25 mu m, at all the three frequencies. For a given track length, this threshold value reaches early at 20 Hz. The roughness and the nature of surface profile suggest considerable amount of oxidation have occurred at the track length of 25 pm compared to that of 5 gm. The surface morphology of the fretted zone reveals severe damage of the contact zone for samples with a track length of 25 lim at all the three frequencies. A pictorial model is proposed to describe the evolution of change in area of the contact zone. Based on the length and width of the contact zone, the fretted area is calculated. The change is fretted area as a function fretting frequency and track length is analyzed. Delamination wear is found to be operative at both track lengths and at all three frequencies. EDX line scanning also indicates higher levels of oxidation at the track length of +/- 25 mu m compared to that of 5 mu m. The variation in the atomic ratios of tin, copper and oxygen of the oxide debris present at the centre and edges of the fretted zone is plotted as an area plot as a function of experimental conditions. The debris is predominantly oxides of copper for the track length of +/- 25 mu m whereas they are mostly oxides of tin for the track length of +/- 5 mu m at all the three frequencies. The narrow and deep surface profile, lower R-a values, overlapping of the tin and copper lines in the EDX line scan and the predominance of oxides of tin support the view that the chances of accumulation of wear debris at the contact zone is very high at the track length of 5 gm. The study concludes that tin plated contacts could encounter an early failure even at shorter track lengths of +/- 5 mu m, if there is sufficient accumulation of the wear debris at the contact zone. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究了镀锡铜合金触点在3 Hz,10 Hz和20 Hz以及在+/- 5和+/- 25μm的两个不同轨迹长度(微动振幅)下的微动腐蚀行为。接触电阻随微动循环,接触区的表面轮廓,微动损伤程度,氧化程度和整个接触区元素分布的变化而变化,以评估微动腐蚀行为。在所有三个频率下,对于轨道长度为+/- 5μm的情况,发现接触电阻达到阈值0.1Ω的时间要早​​于+/- 5μm。对于给定的轨道长度,此阈值以20 Hz提前到达。粗糙度和表面轮廓的性质表明,与5 gm的轨道长度相比,在轨道长度为25 pm时已发生大量氧化。在所有三个频率下,具有迹线长度为25 lim的样品,微细区的表面形态揭示了接触区的严重损坏。提出了一种图形模型来描述接触区面积变化的演变。根据接触区域的长度和宽度,计算出微细区域。该变化是微动面积随微动频率和轨迹长度而变化的函数。发现分层磨损在两个轨道长度和所有三个频率上均有效。 EDX线扫描还表明,在轨道长度为+/- 25微米的情况下,其氧化水平高于5微米。存在于微细区的中心和边缘的氧化物碎片的锡,铜和氧的原子比的变化被绘制为面积图作为实验条件的函数。在所有这三个频率上,对于+/- 25微米的轨道长度,碎片主要是铜的氧化物,而对于+/- 5微米的轨道长度,碎片主要是锡的氧化物。窄而深的表面轮廓,较低的Ra值,EDX线扫描中锡线和铜线的重叠以及锡氧化物的占优势,支持了这样一种观点,即在接触区域,磨损碎片在接触区积累的机会非常高。轨道长度为5克。研究得出的结论是,如果在接触区有足够的磨损碎屑堆积,即使在+/- 5μm的较短轨道长度下,镀锡接触件也可能会出现早期故障。 (c)2006 Elsevier B.V.保留所有权利。

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