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Spectral analysis of the acoustical performance of winter tires for different road textures, test speeds and tire state-of-wear

机译:冬季轮胎在不同道路纹理,测试速度和轮胎磨损状态下的声学性能的频谱分析

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Under winter conditions, in which ice or snow may be present on the road, different tire designs may be used to provide suitable friction levels. One alternative is to have studs embedded in the tire tread to increase friction. Another alternative is to use a studless tire with materials and tread pattern optimized for winter conditions. There is also a hybrid alternative, which is the use of small hard particles instead of regular studs. When considering the acoustical performance, these three different alternatives have different properties; especially, the studded tires behave substantially different. Results from CPX measurements at different speeds and different road sections indicated that the studded tires spectral response is different in two major aspects: (ⅰ) a plateau instead of a decreasing trend is found for frequencies higher than 4 kHz, and (ⅱ) overall increased noise levels, resulting in a spectrum that is shifted upwards. This paper analyses how the frequency spectra of winter tires are affected by different road surfaces, test speeds and tire wear. It also attempts to relate the observed behaviour to different contact and noise generation mechanisms to provide a better understanding of the acoustical performance of such tires.
机译:在冬季条件下,道路上可能会结冰或积雪,可以使用不同的轮胎设计来提供合适的摩擦力水平。一种替代方案是将钉头嵌入轮胎胎面以增加摩擦。另一种选择是使用无钉轮胎,其材料和胎面花纹针对冬季条件进行了优化。还有一种替代方案,即使用小的硬质颗粒代替规则的螺柱。考虑声学性能时,这三种不同的选择具有不同的属性。特别是,带钉轮胎的性能大不相同。 CPX在不同速度和不同路段的测量结果表明,钉钉轮胎的光谱响应在两个主要方面有所不同:(ⅰ)对于高于4 kHz的频率,发现平稳期而非下降趋势,并且(ⅱ)总体上上升噪声水平,导致频谱向上偏移。本文分析了冬季轮胎的频谱如何受到不同路面,测试速度和轮胎磨损的影响。它还尝试将观察到的行为与不同的接触和噪音产生机制相关联,以更好地理解此类轮胎的声学性能。

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