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Analytical modelling of hysteresis heating in rolling contact of rubber covered rollers

机译:橡胶包覆辊滚动接触中的磁滞加热的解析模型

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摘要

In a previous paper, an approximate model for the contact between a rubber covered roller and a rigid roller was developed as analytical functional relationships connecting geometric parameters and material properties of the rubber to nip properties such as maximum contact pressure, etc. in a two-dimensional relationship. The results from that development are used in this work, with the objective to provide a means of estimating the temperature rise due to hysteresis heating. In the heat conduction modelling, one-dimensional steady state heat conduction is assumed. The heat source is a power input coming from internal friction developed during the rolling contact. The power input is expressed by the hysteresis in the rubber represented by a loss angle of the material together with the peripheral speed and some parameters taken from the previously developed contact model. The temperature distribution is calculated in accordance with temperature and heat flow boundary conditions.
机译:在先前的论文中,开发了橡胶包覆辊和刚性辊之间接触的近似模型,作为分析功能关系,将橡胶的几何参数和材料特性与辊隙特性(例如最大接触压力等)连接成两部分,尺寸关系。该开发的结果用于这项工作,目的是提供一种估算由于滞后加热而引起的温度升高的方法。在热传导模型中,假设为一维稳态热传导。热源是来自滚动接触期间产生的内部摩擦的功率输入。输入的功率由橡胶中的滞后来表示,该滞后由材料的损耗角,圆周速度以及从先前开发的接触模型获得的一些参数表示。根据温度和热流边界条件计算温度分布。

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