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首页> 外文期刊>Journal of thermal stresses >Fourier finite element model for prediction of thermal buckling in disc clutches and brakes
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Fourier finite element model for prediction of thermal buckling in disc clutches and brakes

机译:傅里叶有限元模型预测盘式离合器和制动器的热屈曲

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摘要

Numerical analyses are performed on thermal buckling of annular rings using a reduced Fourier method. The stress stiffness matrix is derived from the geometric nonlinearity in the Green strains with a predefined circumferential wave number. The method is first validated through the commercial software Abaqus using an axisymmetric model. It is then implemented to solve more general nonaxisymmetric problems with multiple waves along thecircumference. It is shown that there exists a particular wave number with which the buckling temperature reaches a minimum. This research has potential applications in automotive clutch and brake designs against thermal buckling.
机译:使用简化的傅立叶方法对环形环的热屈曲进行了数值分析。应力刚度矩阵是从格林应变中具有预定周波数的几何非线性中得出的。该方法首先通过商业软件Abaqus使用轴对称模型进行验证。然后实施它来解决沿周向具有多个波的更一般的非轴对称问题。结果表明,存在一个特定的波数,屈曲温度达到该波数最小。这项研究在汽车离合器和制动器设计中具有抗热屈曲的潜力。

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