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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >A Multiscale Model of a Disc Brake Including Material and Surface Heterogeneities
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A Multiscale Model of a Disc Brake Including Material and Surface Heterogeneities

机译:包含材料和表面非均质性的盘式制动器的多尺度模型

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During friction it is well known that the real contact area is much lower to the theoretical one and that it evolves constantly during braking. It influences drastically the system's performance. Conversely the system behavior modifies the loading conditions and consequently the contact surface area. This interaction between scales is well-known for the problematic of vibrations induced by friction but also for the thermomechanical behavior. Indeed, it is necessary to develop models combining a fine description of the contact interface and a model of the whole brake system. This is the aim of the present work. A multiscale strategy is propose to integrate the microscopic behavior of the interface in a macroscopic numerical model. Semi-analytical resolution is done on patches at the contact scale while FEM solution with contact parameters embedded the solution at the microscale is used. Asperities and plateaus are considered at the contact interface. FFT techniques are used to accelerate the resolution at the micro-scale. As an example the multiscale model is applied into a complex value analysis used to identify modal coupling in NVH simulations. With this model the interaction between non uniform surface and system dynamic behavior is clearly shown. The contact surface variations clearly affect the modal coupling and therefore noise propensity.
机译:众所周知,在摩擦过程中,实际接触面积要比理论接触面积低得多,并且在制动过程中,接触面积会不断变化。它会极大地影响系统的性能。相反,系统行为会改变加载条件,从而改变接触表面积。栅尺之间的这种相互作用因摩擦引起的振动问题以及热机械行为而众所周知。确实,有必要开发一种模型,该模型结合了对接触界面的良好描述和整个制动系统的模型。这是当前工作的目的。提出了一种多尺度策略,以将界面的微观行为整合到宏观数值模型中。在接触尺度上对斑块进行半分析分辨率,而使用具有嵌入微尺度尺度溶液的接触参数的FEM解决方案。在接触界面处考虑到了凹凸不平。 FFT技术用于在微尺度上加速分辨率。例如,将多尺度模型应用于复杂值分析中,以用于识别NVH模拟中的模态耦合。通过该模型,可以清楚地显示非均匀表面与系统动态行为之间的相互作用。接触面的变化显然会影响模态耦合,进而影响噪声倾向。

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