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首页> 外文期刊>IEICE Transactions on Electronics >Contact Resistance Characteristics of Improved Conductive Elastomer Contacts for Contaminated Printed Circuit Board in SO_2 Environment
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Contact Resistance Characteristics of Improved Conductive Elastomer Contacts for Contaminated Printed Circuit Board in SO_2 Environment

机译:SO_2环境中污染的印制电路板改进的导电弹性体触点的接触电阻特性

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摘要

Characteristics of conductive elastomer that is composed of silicone rubber and dispersed carbon black particles show conductive and elastic properties in one simple material. This material has been widely applied to make-break contacts of panel switches and connectors of liquid crystal panels. However, since surface state of the contact is very soft, it is difficult to remove contaminant films of contaminated opposite side contact surface and to obtain low contact resistance owing to break the film. This is an important problem to be solved not only for the application of make-break switching contact but also static connector contacts. This study has been conducted to examine some complex structures of the elastomer which indicate removal characteristics for contaminant films and low contact resistance. As specimens, six different types of elastomer contacts composed of different type of dispersed materials as carbon and metal fibers, metal mesh, and plated surfaces were used. The contacts of opposite side were Au and Sn plated contact surface on a printed circuit board (PCB) which is usually used in the static connector and make-break contacts. In order to contaminate contact surfaces of PCB, the surfaces were subjected to exposure in an SO_2 gas environment. The elastomeric contacts contained hard materials showed lower contact resistance than only dispersed carbon particles in the elastomer matrix for both contaminated PCB contact surfaces.
机译:由硅橡胶和分散的炭黑颗粒组成的导电弹性体的特性在一种简单的材料中显示出导电和弹性。这种材料已广泛应用于面板开关和液晶面板的连接器的常开触点。但是,由于接点的表面状态非常柔软,因此难以除去被污染的相反侧的接触面的污染膜,并且由于破裂而难以获得低的接触电阻。这不仅是通断开关触点的应用,而且是静态连接器触点都需要解决的重要问题。进行这项研究是为了检查弹性体的一些复杂结构,这些结构表明污染物膜的去除特性和低接触电阻。作为样本,使用了六种不同类型的弹性体触点,它们由不同类型的分散材料组成,例如碳和金属纤维,金属网和电镀表面。相对侧的触点是印刷电路板(PCB)上的Au和Sn镀层触点表面,通常用于静态连接器和速断触点。为了污染PCB的接触表面,使表面在SO_2气体环境中暴露。对于两个受污染的PCB接触面,包含硬质材料的弹性体接触点的接触电阻都比仅分散在弹性体基质中的碳颗粒低。

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