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A Modification of the Calculation Model for the Prediction of the Wear of Silver-Coated Electrical Contacts with Consideration of Third Bodies

机译:考虑第三体的银涂层电触头磨损预测计算模型的修正

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Silver coatings are used in electrical contacts, in order to protect them from fretting corrosion and enhance their performance. A silver coating suffers fretting wear. Before the wear through of the silver coating, the electrical contact resistance of the contacts remains low and stable, so that the contacts can function reliably. Consequently, a precise forecast of the wear process of silver coatings is of immense interest and significance for both research and industrial applications. With regard to the forecast of the wear process of a thick silver coating, one of the main challenges is that the linear wear rate of coatings decreases disproportionally with increasing coating thickness. Moreover, many phases exist during the whole wear process and the surface conditions change accordingly. The prediction of the wear process of a thick silver coating is based on Archard's equation, but various aspects should be taken into account, in order to make a precise prediction. Firstly, the geometrical form of contacts should be considered. Then the topography which is represented by roughness and changed by deformation after the contact of the two parts should be analyzed. Thirdly, after long-term sliding, the third bodies generated in the contact interface influence the wear process greatly. This paper focuses on the third step and significantly improves the prediction precision.
机译:银涂层用于电触点,以保护它们免受微动腐蚀并增强其性能。银涂层会产生微动磨损。在银涂层磨损之前,触点的电接触电阻保持较低且稳定,因此触点可以可靠地工作。因此,准确预测银涂层的磨损过程对研究和工业应用都具有极大的意义和意义。关于厚银涂层的磨损过程的预测,主要挑战之一是涂层的线性磨损率随涂层厚度的增加成比例地降低。而且,在整个磨损过程中存在许多相,并且表面条件相应地改变。厚银涂层的磨损过程的预测是基于Archard方程,但是为了做出精确的预测,应该考虑各个方面。首先,应考虑接触的几何形式。然后,应分析由两部分接触后由粗糙度表示并随变形而变化的形貌。第三,在长期滑动之后,在接触界面中产生的第三体极大地影响了磨损过程。本文着重于第三步,显着提高了预测精度。

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