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Transient analysis of frictionally excited thermoelastic instability in multi-disk clutches and brakes

机译:多盘离合器和制动器中摩擦激励热弹性不稳定性的瞬态分析

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摘要

A 2D multilayered model has been considered to estimate the transient evolution of temperature and pressure perturbations in multi-disk clutches and brakes during operation. The model proposed by Decuzzi et al. [1] has been modified here to estimate the variation of b–perturbation growth rate—with V—relative sliding speed. It has been verified that the perturbation with the lowest critical speed has also the highest growth rate, and that low frequency perturbations are less critical than high frequency perturbations, at fixed critical speed. Therefore, when comparing perturbations with identical critical speed, those with higher wave numbers are responsible for more intense thermomechanical damages. Also, for perturbations with wave number smaller than the critical mcr, the temperature increases with m; vice versa for perturbations with wave number larger than mcr the temperature decreases with m. A reduction in thickness ratio a1/a2 between friction and metal disks has the effect of increasing the temperature and growth rate. An approximate formula for the temperature variation with time has been derived for a linearly decreasing engagement speed.
机译:已经考虑使用二维多层模型来估计运行期间多盘离合器和制动器中温度和压力扰动的瞬态演变。 Decuzzi等人提出的模型。 [1]在这里已被修改,以估计b扰动增长率(相对于V)的相对滑动速度的变化。已经证实,具有最低临界速度的扰动也具有最高的增长率,并且在固定临界速度下,低频扰动的重要性不如高频扰动。因此,当比较具有相同临界速度的扰动时,具有较高波数的扰动是造成更强烈的热机械损伤的原因。同样,对于波数小于临界mcr的摄动,温度随m增加;反之,反之亦然,对于波数大于mcr的摄动,温度随m降低。减小摩擦盘和金属盘之间的厚度比a1 / a2具有提高温度和生长速率的效果。对于线性降低的接合速度,已经得出了温度随时间变化的近似公式。

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