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Friction-induced vibration and noise generation of instrument panel material pairs

机译:摩擦产生的仪表板材料对的振动和噪声产生

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This study investigated the effect of various parameters of the friction-velocity relationship on the friction-induced vibration of simulated instrument panel components. The effect of subsystem stiffness and damping on the system response was also studied. A simple discretized model was utilized with subsystem properties that were intended to realistically model values of low, medium, and high stiffness components. Specifically, the metric of mean squared velocity was used as an indicator of the noise generated during the stick-slip process. It was found that the difference between the static and the asymptotic kinetic value of friction was the most important friction parameter in determining the resulting behavior. As stiffness and damping are increased, the mean squared velocity decreases. Additionally, results from single excursion tests on a variety of instrument panel material pairs showed good correlation between mean squared velocity and the difference in static and kinetic friction.
机译:这项研究调查了摩擦速度关系的各种参数对模拟仪表板部件的摩擦引起的振动的影响。还研究了子系统刚度和阻尼对系统响应的影响。一个简单的离散化模型与子系统属性一起使用,旨在对低,中和高刚度分量的值进行实际建模。具体而言,将均方速度的度量用作粘滑过程中产生的噪声的指标。发现摩擦的静态和渐近动力学值之间的差异是确定最终行为的最重要的摩擦参数。随着刚度和阻尼的增加,均方速度降低。此外,对各种仪表板材料对的单次偏移测试结果表明,均方根速度与静摩擦和动摩擦之间的差异具有良好的相关性。

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