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Experimental Identification of Brake Lining Material Properties Subjected to Combined Static and High Frequency Loading - A Step Towards a Better Prediction of Disc Brake Squeal?

机译:制动衬里材料特性进行静态和高频负荷的制动衬砌材料的实验识别 - 朝向更好地预测盘式制动尖端的步骤?

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Brake lining material is one of the main factors influencing brake squeal. Actual simulation of brake squeal suffers on the missing of correct material parameters identified under conditions relevant for squeal. The comparison of different measurement methods for friction material characterization, e.g. compressibility tests, modal analyses or ultrasonic measurements shows that the material properties strongly vary depending on the testing conditions which are static preload, dynamic amplitude, frequency range and the loading direction. The different results obtained from these various test procedures show a nonlinear and transversely isotropic material behavior of the brake lining. In order to identify the correct material parameters for successful brake squeal simulation it is necessary to reproduce the operating conditions during the squealing state as close as possible in experimental setups. The present paper introduces a measurement technique and an identification procedure for brake lining material properties in the out-of-plane direction reproducing the load parameters typical for brake squeal. These are preloaded configurations corresponding to squeal typical brake pressures and sinusoidal dynamic loading producing displacements in the micrometer range with frequencies in kHz-range corresponding to the noise emitting oscillations. Furthermore the identified linear and nonlinear brake lining material properties are presented and discussed.
机译:制动衬里材料是影响制动器尖叫的主要因素之一。制动尖肌的实际模拟在与尖叫状况相关的条件下识别的正确材料参数遭受。摩擦材料表征不同测量方法的比较,例如,压缩性测试,模态分析或超声测量表明,材料特性根据静态预载荷,动态幅度,频率范围和装载方向的测试条件而强烈变化。从这些各种测试程序获得的不同结果显示出制动衬片的非线性和横向各向同性的材料行为。为了识别成功制动尖端模拟的正确材料参数,必须在实验设置中尽可能靠近尖叫状态再现操作条件。本文介绍了一种测量技术和制动衬砌材料特性的识别过程,用于在平面外方向上再现典型的刹车尖叫的负载参数。这些是对应于尖叫的典型制动压力和在微米范围内产生位移的正弦动态加载的预加载配置,其具有与噪声发射振荡对应的KHZ范围内的频率。此外,呈现并讨论了所识别的线性和非线性制动衬里材料特性。

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