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Proper Radial Spokes of Non-Pneumatic Tire for Vertical Load Supporting by Finite Element Analysis

机译:通过有限元分析垂直载荷支撑的非充气轮胎的适当径向辐条

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摘要

This research aimed to develop the 3D finite element model of non-pneumatic tire (NPT) for designing the proper radial spoke. The NPT was cut using waterjet cutting technique to prepare the appropriate test specimens. The hyperelastic constitutive models were used to model the deformation behavior of these NPT components. The rebar elements were used to model steel belt layers of the non-pneumatic tire, while the tying equation was used to tie the degree of freedom between belt layers and rubber elements. The NPT model was assigned to contact the rigid surface at the load of 14, 16, 18, 20 and 22 kN. The deformation analysis result of NPT model was compared with the physical experiment which obtained the average error of 9.29 %. The vertical stiffness of the NPT model was 810.66 N/mm; therefore the error was 6.81 % when it was compared to the experimental result. The validated NPT model was then used to search for the proper spoke thickness. The spoke thickness of 5 mm was found to be the proper thickness which given the identical vertical stiffness as the pneumatic tire.
机译:该研究旨在开发非充气轮胎(NPT)的3D有限元模型,用于设计适当的径向辐条。使用Waterjet切割技术切割NPT以制备合适的试样。超级塑性本构模型用于模拟这些NPT组分的变形行为。钢筋元素用于模拟非充气轮胎的钢带层,而绑定方程用于系在带层和橡胶元件之间的自由度。分配了NPT模型,以在14,16,18,20和22kN的载荷下接触刚性表面。与获得9.29%的平均误差的物理实验比较了NPT模型的变形分析结果。 NPT模型的垂直刚度为810.66N / mm;因此,与实验结果进行比较时,误差为6.81%。然后使用验证的NPT模型来搜索适当的辐条厚度。发现辐条厚度为5毫米,赋予适当的厚度,其给出了相同的垂直刚度作为充气轮胎。

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