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The contact resistance force relationship of an intrinsically conducting polymer interface

机译:本征导电聚合物界面的接触电阻力关系

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Investigations on contact connector materials for different applications such as in the automotive industry have focused towards the increasing interest of using conducting polymers, as compared to conventional metallic contacts. The aim is to achieve overall improvements in performance as well as cost effectiveness. Currently, extrinsic conducting polymers (ECPs) are employed as conductive coats or adhesives at contact interfaces. However, frictional abrasion within the metal doped polymer (ECP) causes fretting corrosion, which leads to instability in the contact resistance. To overcome this, intrinsically conducting polymers (ICPs) are explored. Hemispherical contact coatings were fabricated using poly (3, 4-ethylenedioxythiopene) (PEDOT) or polyaniline/polyvinyl chloride (PANI/PVC) commodity blends. Contact resistances were taken using 4-wire resistance measurement techniques. The conductivities of in-house fabricated ICP contacts were found to be in the range of 10/sup -2/ S.cm/sup -1/. The response relating the change of contact resistance under varying compression force appeared to be repeatable with minimum deviation of 2%. The surface profiles of the ICP contacts were also recorded by an optical confocal system. The initial investigation results presented in this paper were used to evaluate and validate the hypothesis of employing ICP contacts to eliminate or minimize wearing and fretting effects.
机译:与常规金属触点相比,针对诸如汽车工业等不同应用的触点连接器材料的研究已集中于使用导电聚合物的兴趣日益增长。目的是实现性能和成本效益方面的整体改进。当前,外部导电聚合物(ECP)被用作接触界面处的导电涂层或粘合剂。但是,金属掺杂的聚合物(ECP)内的摩擦磨损会导致微动腐蚀,从而导致接触电阻不稳定。为了克服这个问题,探索了本征导电聚合物(ICPs)。半球形接触涂层是使用聚(3,4-乙烯二氧噻吩)(PEDOT)或聚苯胺/聚氯乙烯(PANI / PVC)商品混合物制成的。接触电阻是使用4线电阻测量技术测得的。内部制作的ICP触点的电导率范围为10 / sup -2 / S.cm/sup -1 /。在变化的压缩力下,与接触电阻的变化有关的响应似乎是可重复的,最小偏差为2%。 ICP触点的表面轮廓也通过光学共焦系统记录。本文介绍的初步调查结果用于评估和验证使用ICP触点消除或最小化磨损和微动效应的假设。

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