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Contact pressure distribution of radial tire in motion with camber angle

机译:子午线运动中子午线轮胎接触压力分布

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摘要

Theoretical and experimental study is conducted on the contact pressure distribution of a radial tire in motion under various camber angles. Tire construction is modeled by a spring bedded elastic ring, consisted of sidewall springs and a composite belt ring. The contact area is assumed to be a trapezoidal shape, varying with camber angles and weighted load. The basic equation in a quasi-static form is derived for the deformation of a running belt with a constant velocity by the aid of Lagrange-Euler transformation. Galerkin' s method and stepwise calculation are applied for solving the basic equation and the mechanical boundary condition along both sides of the contact belt part subjected to shearing forces transmitted from the sidewall spring. Experimental results on the contact pressure, measured by pressure sensors embedded in the surface of the drum tester, correspond well with the calculated ones for the test tire under various camber angles, running velocities, and weighted loads. These results indicate that a buckling phenomenon of the contact belt in the widthwise direction occurs due to the effect of camber angle.
机译:对在不同外倾角下运动的子午线轮胎的接触压力分布进行了理论和实验研究。轮胎构造是通过一个弹簧弹性环来建模的,该弹性环由胎侧弹簧和复合带束环组成。假定接触面积为梯形,随外倾角和加权载荷而变化。借助Lagrange-Euler变换,得出了用于定速运动皮带变形的准静态形式的基本方程。运用Galerkin的方法和逐步计算法,求解了从侧壁弹簧传递来的剪力作用下,沿接触带部分两侧的基本方程和机械边界条件。由嵌入在鼓式测试仪表面的压力传感器测得的接触压力的实验结果与在各种外倾角,行驶速度和加权载荷下测试轮胎的计算结果非常吻合。这些结果表明,由于弯度角的影响,发生了接触带在宽度方向上的弯曲现象。

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