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FEA STUDY OF BELT ANGLE EFFECT TO CORNERING STIFFNESS AND PLY STEER

机译:带角对刚度和层板转向的影响的有限元研究

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摘要

Performance of vehicle turn and lane change can he evaluated by cornering stiffness. One of many factors affecting the cornering stiffness is belt angle. In 1998, Koishj et al [S] published the findings of cornering stiffness when belt angle is at 0 and 20 degrees, using a finite element code PAM-SHOCK. Results from two cases only are not enough completing the parametric study. With better hardware and software available today than before, the same tire model is re-visited, using new form of numerical procedure - a mixed Eulerian/Langrangian formulation called steady state transport analysis in ABAQUS. Cornering stiffness at the range of 0 to 40 degree belt angle with 5 degree increment is calculated. The results show that three distinct regions exist. At Region 1, in which the belt angle ranges from 0-10 degrees, the cornering stiffness increases as the belt angle increases. The cornering stiffness maximizes out and remains flat at Region II, when belt angle is between 10 to 25 degrees. Cornering stiffness decreases as the be ft angle increases in Region III. Where the belt angle is larger than 25 degree. The existence of Region II may explain the fact that manufacturers prefer around 20 degree belt angle for their tire designs: maximum cornering stiffness and its insensitivity to the belt angle variation. The plot of the predicted ply steer in this study agrees reasonably well with a published experimental data.
机译:可以通过转弯刚度评估车辆转弯和变道的性能。影响转弯刚度的许多因素之一是皮带角度。 1998年,Koishj等人[S]发表了使用有限元代码PAM-SHOCK在皮带角度为0和20度时的转弯刚度的发现。仅两个案例的结果不足以完成参数研究。如今,有了比以前更好的硬件和软件,就可以使用新的数值程序形式重新访问相同的轮胎模型-混合的欧拉/朗朗日公式在ABAQUS中称为稳态传输分析。计算皮带角度在0到40度之间以5度为增量的转弯刚度。结果表明存在三个不同的区域。在区域1中,皮带角度为0-10度,转弯刚度随皮带角度的增加而增加。当皮带角度在10至25度之间时,转弯刚度最大化,并在II区保持平坦。转弯刚度随着区域III中的beft角的增加而降低。皮带角度大于25度的地方。 II区的存在可能解释了以下事实:制造商更喜欢在轮胎设计中使用20度左右的带束角:最大的转弯刚度及其对带束角变化的不敏感性。这项研究中预测的帘线转向图与已发布的实验数据相当吻合。

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