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An Application of Shape Optimization to Brake Squeal Phenomena

机译:形状优化在制动尖叫现象中的应用

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摘要

The present paper describes an application of non-parametric shape optimization to disc brake squeal phenomena. A main problem is defined as complex eigenvalue problem in which the real part of the complex eigenvalue causing the brake squeal is chosen as an objective cost function. The Fre'chet derivative of the objective cost function with respect to the domain variation, named as the shape derivative of the objective cost function, is evaluated using the solution of the main problem and the adjoint problem. A selection criterion of the adoptive mode number in component mode synthesis (CMS), which is used in the main problem, is presented in order to reduce the computational error in complex eigenvalue pairs. A scheme to solve the shape optimization problem is presented using an iterative algorithm based on the H~1 gradient method for reshaping. For an application of the optimization method, a numerical example of a practical disc brake model is presented. The numerical result illustrates that the real part of the target complex eigenvalue monotonously decreases until it reach zero.
机译:本文介绍了非参数形状优化在碟刹尖叫声中的应用。一个主要问题被定义为复特征值问题,其中选择导致制动尖叫的复特征值的实部作为目标成本函数。使用主要问题和伴随问题的解来评估目标成本函数相对于域变化的Fre'chet导数,称为目标成本函数的形状导数。提出了主要问题中使用的组件模式合成(CMS)中的代用模式编号的选择准则,以减少复杂特征值对中的计算误差。提出了一种基于H〜1梯度法的变形算法,以解决形状优化问题。对于优化方法的应用,给出了实用的盘式制动器模型的数值示例。数值结果表明,目标复数特征值的实部单调递减,直至达到零。

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