This paper presents an overview of recent experimental and numerical investigations on industrial railway brakes. The goal of the present study is to discuss the relevance of the mechanical modeling strategy for squeal prediction. Specific experimental set-ups based on transient and controlled braking tests are designed for this purpose. Measurements are performed on it to investigate the dynamic behavior of TGV squeal noise and its squeal characterization through experiments. It will be demonstrated that it is possible to build consistent and efficient finite element models to simulate squeal events in TGV brake systems. The numerical strategy will be presented, including not only the modeling of the TGV brake system and the stability analysis, but also the transient nonlinear dynamic and computational process based on efficient reduced basis. This complete numerical strategy allows us to perform relevance squeal prediction on industrial railway brakes. This study comes within the scope of a research program AcouFren that is supported by ADEME (Agence De l'Environnement et de la Maîtrise de l'Energie) concerning the reduction of the squeal noise generated by high power railway disc brakes.
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机译:本文介绍了最近的实验和工业铁路刹车数值调查的概述。本研究的目的就是要讨论尖叫预测机械建模策略的相关性。具体的实验基于瞬态和调校控制的制动测试被设计用于此目的。测量是在它进行调查TGV鸣音及试验尖叫表征的动态行为。这将表明,它是不可能建立统一,有效的有限元模型来模拟高速列车制动系统尖叫事件。数值策略将被呈现,不仅包括TGV制动系统的建模和稳定性分析,而且瞬态非线性动态和基于高效的降低的基础的计算过程。这个完整的数字战略使我们能够对相关产业的铁路刹车尖叫预测执行。该研究是由ADEME支持的研究项目AcouFren的范围内(法新社DE L'环境公司等德拉MAITRISE DE L'科特布斯)关于高功率铁路盘式制动器所产生的尖叫噪音的降低。
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