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A basic theoretical study of the temperature rise in sliding contact with multiple contacts

机译:多触点滑动接触温升的基础理论研究

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The objectives of this paper are to develop a theoretical solution for the temperature rise due to sliding contact between surfaces with multiple, interacting asperities and to use this solution to examine the effects of the important contact area and system parameters. A solution based on the Green's function method is developed for the basic problem of two half-space regions in sliding contact with any arbitrarily specified arrangement of rectangular asperities. Studies are conducted to demonstrate the effects of the contact area parameters, namely the number, size, spacing and orientation of the contacts, as well as sliding velocity. Results indicate that the contact temperatures are extremely sensitive to the number and relative spacing between contacts, where subdivision of a single contact into separated pieces significantly reduces the contact temperature rises. The orientation of the contacts relative to the sliding direction is shown to have only a small influence on temperature. The shape of the contacts also has only a small influence, except in the case of contact patches with large aspect ratios where significantly lower surface temperatures can occur. Sliding speed is shown to be extremely important in that increased speed causes both higher temperature levels and greater interaction between contacts due to the convective effect. The current paper is intended to describe the basic solution methodology for calculating temperature rises due to multiple, interacting contacts and to show some fundamental trends for a selected set of regularly arranged contact area distributions.
机译:本文的目的是为由于具有多个相互作用的粗糙面的表面之间的滑动接触而引起的温度升高建立理论解决方案,并使用该解决方案来检查重要的接触面积和系统参数的影响。针对两个半空间区域与任何任意指定的矩形凹凸结构滑动接触的基本问题,开发了一种基于格林函数方法的解决方案。进行研究以证明接触面积参数的影响,即接触件的数量,大小,间距和方向以及滑动速度。结果表明,接触温度对接触点的数量和相对间距极为敏感,其中将单个接触点细分为独立的部分会显着降低接触点温度的升高。触点相对于滑动方向的方向显示出对温度的影响很小。触头的形状也只具有很小的影响,除了具有大的长宽比的触头贴片的情况外,其中可能发生明显较低的表面温度。滑动速度被证明是极其重要的,因为对流效应导致速度的增加导致较高的温度水平和触点之间的较大相互作用。本白皮书旨在描述用于计算由于多个相互作用的接触而引起的温度升高的基本解决方案方法,并针对选定的一组规则排列的接触面积分布显示一些基本趋势。

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