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Research on the Relationship between Driving Vibration Noise and Tire-Road Contact Pressure

机译:行驶振动噪声与轮胎-道路接触压力关系的研究

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Tire-road noise contains two aspects, one is aerodynamic noise, another is vibration noise that the traffic noise affects a large proportion of it. It is obvious that reduction of vibration noise can greatly improve the quality of sound environment in town. The primary task of vibration noise reduction study is to get clear on the generation mechanism of driving vibration noise. According to previous researches, the contact conditions between tire and road surface have a significant effect on driving vibration noise. Especially, there must be a link, having not been rigorously studied, between the tire-road contact pressure and vibration noise. Based on the above, the relationship between driving vibration noise and tire-road contact pressure is established in this paper. Through field experiments, it proves that the driving vibration noise of micro-surface is higher than that of SMA-10 (stone matrix asphalt). Meanwhile, the movement progresses of wheel on these two different pavement surfaces and the contact pressure are simulated via DEM (discrete element model), which shows that the volatility of tire-road contact pressure of micro-surface is greater than that of SMA-10. Both the field experiment and DEM demonstrate that the higher volatility of tire-road contact pressure leads the higher driving vibration noise, which can serve as the theoretical foundation of follow-up study.
机译:轮胎噪声包含两个方面,一个是空气动力学噪声,另一个是交通噪声影响很大一部分的振动噪声。显然,减少振动噪声可以大大改善城镇的声音环境质量。振动降噪研究的首要任务是弄清驱动振动噪声的产生机理。根据以前的研究,轮胎和路面之间的接触条件对驱动振动噪声有重大影响。特别是,在轮胎-道路接触压力和振动噪声之间必须存在未经严格研究的联系。在此基础上,建立了行驶振动噪声与轮胎-路面接触压力的关系。通过现场试验证明,微表面的驱动振动噪声高于SMA-10(石基质沥青)。同时,通过DEM(离散元模型)模拟了车轮在这两个不同路面上的运动进程以及接触压力,表明微观表面的轮胎-道路接触压力的波动性大于SMA-10。 。现场试验和DEM均表明,轮胎-路面接触压力的较高波动性导致较高的行驶振动噪声,可为后续研究提供理论依据。

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