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Importance of the Wheel Vertical Dynamics in the Squeal Noise Mechanism on a Scaled Test Bench

机译:车轮垂直动力学在比例测试台上的啸声机理中的重要性

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This paper investigates the influence of the wheel vertical dynamics in the mechanism of squeal noise on a scaled test bench. To this purpose, sustained oscillations are first studied on a single degree of freedom oscillator, considering both a decreasing slope of the friction curve and a vertical excitation. Their relative importance to sustain the oscillations is discussed. Then, a mathematical model of a quarter scale test bench is developed in the frequency domain. Using this model, it is shown that the squeal noise resulting from the excitation of the bending modes of the wheel is sustained because these bending modes are associated with variations of the vertical contact force. Results are further confirmed by experiments conducted on a scaled test bench.
机译:本文研究了车轮垂直动力学对比例测试台上的尖叫声机理的影响。为此,首先考虑摩擦曲线的斜率减小和垂直激励,在单自由度振荡器上研究持续振荡。讨论了它们对维持振荡的相对重要性。然后,在频域中建立了四分之一规模试验台的数学模型。使用该模型表明,由于车轮的弯曲模式的激发而产生的啸叫声得以维持,因为这些弯曲模式与垂直接触力的变化有关。在规模化的试验台上进行的实验进一步证实了结果。

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