MWCNT高度对Au/MWCNT复合材料电触点性能影响的机电研究

A. Lewis, M. Down, Hong Liu, Liudi Jiang, J. McBride
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引用次数: 0

摘要

Au/MWCNT复合材料已被证明是一种有用的电接触材料。在这项工作中,我们研究了MWCNT森林高度对电学和力学性能的影响。研究了三种高度的MWCNT林(30、50和80 μm,均为溅射的500 nm Au层)。结果表明,30 μm和50 μm复合材料的电学和力学性能相当,而当高度增加到80 μm时,性能变化很大。随着MWCNT高度的增加,复合材料的有效硬度降低,这意味着对于给定的接触压力,较高的MWCNT森林的最终接触面积将更大。更大的面积加上更高的抗冲击能力,预计将导致更长的寿命。更软的复合材料与更大的接触面积的结果是熔融金属桥现象已被证明随着MWCNT高度的增加而增加。通过对实验数据的讨论,确定了溅射金厚度为500 nm时MWCNT的最佳高度。通过分析Au:MWCNT的厚度比,可以推断出其他Au厚度的最佳值。将这些数据与我们的模型相结合,也可以估计与其他接触材料的最佳厚度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electromechanical investigation into the influence of MWCNT height on the performance of Au/MWCNT composites for electrical contacts
Au/MWCNT composites have been shown to be a useful contact material for electrical contacts. In this work we have investigated the influence of the MWCNT forest height on both the electrical and mechanical properties. Three heights of MWCNT forest have been investigated (30, 50 and 80 μm, all a sputtered 500 nm Au layer). It is shown that the electrical and mechanical behavior of the 30 and 50 μm composites is quite comparable, whereas there is a large change in the performance where the height is increased to 80 μm. As the MWCNT height is increased the effective hardness of the composite reduces which means that for a given contact pressure, the resultant contact area will be larger for taller MWCNT forests. A larger area combined with a higher resilience to impact is expected to result in larger lifetimes. A consequence of the softer composite with larger contact area is that the molten-metal bridge phenomenon has been shown to increase with MWCNT height. Experimental data is discussed to identify the optimum MWCNT height where the sputtered Au thickness is 500 nm. By analyzing the Au:MWCNT thickness ratio, it is possible to infer the optimum value for other thickness of Au. Combining this data with our model, it is also possible to estimate optimum thicknesses with other contact materials.
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