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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Rapid tyre/road separation: An experimental study of adherence forces and noise generation
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Rapid tyre/road separation: An experimental study of adherence forces and noise generation

机译:快速轮胎/道路分离:附着力和产生噪音的实验研究

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摘要

Adhesion forces in the tyre/road contact interface significantly influence the contact dynamics and resulting noise generation for certain tyre/road combinations. Hence, an experimental setup was built where tyre tread samples are loaded and rapidly unloaded in the direction normal to a wearing course sample from an ISO10844-road. Time records of contact forces and sound pressures are acquired during the separation. The separation process in terms of the contact forces and noise generation is described and interpreted. There is good repeatability in the general character of the time signals for a given geometry, but variations occur requiring statistical analysis, as the initial conditions (on smaller length scales) are only approximately repeated. The measured adherence force depends strongly on load, load duration, and unloading rate, in a way supported by theories for contact of rough surfaces. The total sound pressure level of the noise generated during separation is directly related to the level of the adherence force, but the distribution of energy in 1/3-octave bands cannot be estimated from the adherence force record alone, as they also depend on the exact contact geometry. The details of the contact geometry are also very decisive for the magnitude of the adherence force.
机译:轮胎/道路接触界面中的粘附力会显着影响接触动力学,并导致某些轮胎/道路组合产生噪音。因此,建立了一个实验装置,在该装置中,沿与ISO10844-road的磨损过程样本垂直的方向加载和快速卸载了轮胎胎面样本。在分离过程中获取接触力和声压的时间记录。描述并解释了根据接触力和噪声产生的分离过程。对于给定的几何形状,时间信号的一般特征具有良好的可重复性,但是由于初始条件(在较小的长度范围内)仅近似重复,因此会发生变化,需要进行统计分析。所测得的附着力在很大程度上取决于载荷,载荷持续时间和卸载速率,其方式由粗糙表面接触的理论所支持。分离过程中产生的噪声的总声压级与附着力的大小直接相关,但是不能仅从附着力记录中估计1/3倍频程带中的能量分布,因为它们还取决于附着力。精确的接触几何。接触几何形状的细节对于粘附力的大小也非常重要。

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