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Finite Element Modeling with Embed Rebar Elements and Steady State Rolling Analysis for Rolling Resistance Test of Pneumatic Tire

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Finite element model of tire rolling resistance test on the drum was developed using 3D steady state rolling analysis coupling with pre-inflation of 2D axisymmetric tire analysis. The complex components of the radial tires composing tread, sidewall, ply layers, steel belts, and lead wires were modeled using rebar elements which were embed into the rubber element using the tying equation. The Mooney-Rivlin hyperelastic constitutive model was employed to describe the large deformation behavior of tread and sidewall, while other components such as plies, steel belts and bead wires were assigned the linear isotropic material. The tire rolling resistance system was modeled by inflation of slick tire and compression on the drum for the footprint analysis regarding the rolling resistance test. The tire’s steady state characteristics such as footprint contact pressure, rolling resistance force, and time response characteristic of tires were predicted instead the experiment of the prototype.
机译:使用3D稳态轧制分析耦合,开发了滚筒轮胎滚动阻力试验的有限元模型,与2D轴对称轮胎分析的预充气。使用钢筋元件建模使用钢筋元件建模径向轮胎的复合部件,使用钢筋元件使用绑定方程嵌入橡胶元件。使用Mooney-Rivlin超弹性本构模型来描述胎面和侧壁的大变形行为,而另外的其他部件如帘布,钢带和珠子线被分配线性各向同性材料。轮胎滚动电阻系统是通过膨胀轮胎的膨胀和滚筒压缩的建模,用于滚动阻力测试的占地面积。轮胎的稳态特性,如足迹接触压力,滚动阻力和轮胎的时间响应特性,而是原型的实验。

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