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Squeal propensity characterization of brake lining materials through friction noise measurements

机译:通过摩擦噪声测量尖叫的制动衬里材料倾角表征

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Disc brake systems are a technology widely adopted within the automotive and rail industry, especially when high performance is needed. The interaction between the disc and the pads is responsible for friction-induced vibrations, leading often to squeal noise emission. Squeal vibrations are generated by the onset of an unstable mode, which is triggered by an external excitation. Local phenomena occurring at the contact interface, and resulting in friction noise, can be responsible of the dynamic excitation triggering the squeal instability. This work proposes a new approach for characterizing friction lining materials, by measuring the friction noise coming from the contact between different pad materials and a disc rotor, in order to quantify and compare the attitude of materials to trigger squeal. Then, a parametrical analysis has been carried out with the aim of highlighting the influence of the main parameters on the friction noise. When testing the same set of materials on a full brake disc system, the measured friction noise indexes resulted to be strongly correlated with the squeal occurrence, validating the proposed characterization method for the squeal propensity of lining materials. (C) 2019 Elsevier Ltd. All rights reserved.
机译:盘式制动系统是汽车和铁路行业中广泛采用的技术,特别是在需要高性能时。盘和焊盘之间的相互作用负责摩擦诱导的振动,经常导致抗噪声发射。由不稳定模式的开始产生尖叫振动,这是由外部激励触发的。在接触界面处发生的局部现象,并导致摩擦噪声,可以负责触发尖叫力不稳定的动态励磁。这项工作提出了一种新方法来表征摩擦衬里材料,通过测量来自不同垫材料和盘转子之间的接触的摩擦噪声,以便量化和比较材料的姿态触发尖叫的姿态。然后,已经进行了参数分析,目的是突出主要参数对摩擦噪声的影响。当在全刹车盘系统上测试相同的一组材料时,测量的摩擦噪声指数导致与尖叫力发生强烈相关,验证所提出的衬里材料倾斜的表征方法。 (c)2019 Elsevier Ltd.保留所有权利。

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