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Analysis of brake squeal noise using the finite element method: A narametric study

机译:制动器尖叫声的有限元分析:一项奈米研究

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Brake squeal noise has been under investigation by automotive manufacturers for decades due to consistent customer complaints and high warranty costs. J.D. Power surveys consistently show brake noise as being one of the most critical vehicle quality measurements. Furthermore, the development of methods to predict noise occurrence during the design of a brake system has been the target of many researchers in recent years.This paper summarizes the application of complex eigenvalue analysis in a finite element model of a commercial brake system. The effect of the operational parameters (friction coefficient, braking pressure and brake temperature) and wear on the dynamic stability of the brake system is examined. After identifying unstable frequencies and the behavior of the brake system under different conditions, the performance of some control methods are tested. Changes in material properties and the application of brake noise insulators are presented and their effects discussed.The results show that the effect of brake temperature changes the coupling mechanisms between rotor and pad, which in some cases can be useful in order to reduce the instabilities and generated noise. Wear is an operational condition that has an strong effect on the system instability, since stiffness properties of brake pads are influenced by the changes on geometry and on the friction material, leading to high-frequency noise generation when the system is in the end of its lifetime. Application of brake insulators requires a detailed investigation of the system since, for some cases, an increase on the system damping does not balance changes on stiffness, leading the system to instability and noise.
机译:由于持续不断的客户投诉和高昂的保修成本,汽车制造商一直在研究刹车尖叫声。 J.D.动力调查始终显示制动噪音是最关键的车辆质量测量之一。此外,近年来,在制动系统设计中预测噪声发生的方法的开发已成为许多研究人员的目标。本文总结了复杂特征值分析在商用制动系统的有限元模型中的应用。检查了运行参数(摩擦系数,制动压力和制动温度)和磨损对制动系统动态稳定性的影响。在确定不稳定的频率和制动系统在不同条件下的行为后,对某些控制方法的性能进行了测试。结果表明,制动温度的影响改变了转子与制动衬块之间的耦合机制,在某些情况下可以减少不稳定性和产生不稳定性。产生的噪音。磨损是一种对系统不稳定性有强烈影响的运行状况,因为制动衬块的刚度特性会受到几何形状和摩擦材料变化的影响,从而导致系统处于使用寿命末期时产生高频噪声一生。制动绝缘子的应用需要对系统进行详细研究,因为在某些情况下,系统阻尼的增加无法平衡刚度的变化,从而导致系统不稳定和产生噪音。

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