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MODELING HIGH-FREQUENCY TIRE TREAD VIBRATION AS A GROUP OFTRAVELING BENDING WAVES

机译:将高频胎面振动建模为一组行进弯曲波

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摘要

Tire noise is one of the major causes of road traffic noise. The high-frequency component dominates tire radiation noise, which is caused by tire tread bending vibration excited by rough road surface textures. As a result of such complicated phenomena, including very complicated tread vibration modes in the high-frequency range, heavy damping, and non-periodic patterns of the road surface texture, the modal analysis approach may appear to have a low potential for analyzing this problem. Based on the above considerations, we attempted to model the tread vibration phenomenon as a group of traveling bending waves excited at an array of pavement chippings. By setting the tread shoulders as reflecting lines, the interference effect of diagonally propagating direct and reflected waves is clarified. The vibration propagation speed and decay rate were estimated through shaker tests. The shape of the probability distribution function of the chippings intervals affects the traveling wave patterns. These observations will help engineers to develop less noisy tires.
机译:轮胎噪音是道路交通噪音的主要原因之一。高频分量占主导地位的轮胎辐射噪声是由粗糙的路面纹理激发的轮胎胎面弯曲振动引起的。由于这种复杂的现象,包括在高频范围内非常复杂的胎面振动模式,较大的阻尼以及路面纹理的非周期性模式,模态分析方法似乎对分析该问题的潜力很低。 。基于以上考虑,我们尝试将胎面振动现象建模为在路面碎屑阵列处激发的一组行进弯曲波。通过将胎面肩部设置为反射线,可以明确斜向传播的直接波和反射波的干扰效果。振动传播速度和衰减率通过振动筛测试估算。碎片间隔的概率分布函数的形状会影响行波模式。这些观察结果将有助于工程师开发噪音较小的轮胎。

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