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Comparative Analysis of Static Loading Performance of Rigid and Flexible Road Wheel based on Finite Element Method

机译:基于有限元法的刚性柔性道路静电加载性能的比较分析

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To overcome the shortcomings of traditional rigid road wheel, such as poor damping effect and low load-bearing efficiency, a new type of flexible road wheel, having a unique suspension-bearing mode, was introduced. The three-dimensional nonlinear finite element model of rigid and flexible road wheel, considering the triple nonlinear characteristics of geometry, material and contact, is established for numerical investigation of static loading performance. The accuracy of the finite element model of the rigid and flexible road wheel is verified by static loading experiment. The static loading performance of the rigid and flexible road wheels is numerically analyzed. The influence of vertical load on maximum stress and deformation of the rigid and flexible wheels is also studied. The results show that the contact pressure uniformity of the flexible road wheel is better than that of the rigid road wheel under the static vertical load, but the maximum stress and deformation of the flexible road wheel are greater than that of the rigid road wheel. However, this problem can be solved by increasing the number of hinge sets and optimising the joints. The research results provide theoretical basis for replacing rigid road wheel with flexible road wheel, and also provide reference for structural optimisation of flexible road wheel.
机译:为了克服传统刚性道路的缺点,如缺乏阻尼效果和低承载效率,介绍了一种具有独特悬架模式的新型柔性道路。考虑到几何形状,材料和接触三重非线性特性的刚性和柔性道路的三维非线性有限元模型,是为了对静电加载性能的数值调查建立了三重非线性特性。静电载荷实验验证了刚性和柔性道路有限元模型的准确性。数值分析了刚性和柔性道路轮的静电加载性能。还研究了垂直载荷对刚性和柔性轮的最大应力和变形的影响。结果表明,柔性道路的接触压力均匀性优于静态垂直载荷下的刚性道路的接触压力均匀性,但柔性道路的最大应力和变形大于刚性道轮的最大应力和变形。然而,可以通过增加铰链组的数量并优化关节来解决这个问题。研究结果为更换柔性道路替换刚性路轮提供了理论依据,并为柔性道路的结构优化提供了参考。

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