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Isogeometric Analysis for Tire Simulation at Steady-State Rolling

机译:稳态轧制轮胎仿真的异步分析

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摘要

The use of isogeometric analysis (IGA) in industrial applications has increased in the past years. One of the main advantages is the combination of finite element analysis (FEA) with the capability of representing the exact geometry by means of non-uniform rational B-splines (NURBS). This framework has proven to be an efficient alternative to standard FEA in solid mechanics and fluid dynamics, in cases in which sensitivity to geometry is found. The numerical simulation of rolling tires requires a proper discretization for the curved boundaries and complex cross sections, which often leads to the use of higher-order or cylindrical elements. As remeshing operations are numerically costly in tire models, IGA stands as an attractive alternative for the modeling of rolling tires. In this contribution, an arbitrary Lagrangian Eulerian formulation is implemented into IGA to provide the basic tools for the numerical analysis of rolling bodies at steady-state conditions. The solid basis of the formulation allows the employment of standard material models, but tire constructive elements, such as reinforcing layers, require special attention. Streamlines are constructed based on the locations of the integration points, and therefore, linear and nonlinear viscoelastic models can be implemented. Numerical examples highlight the advantage of the new approach of requiring fewer degrees of freedom for an accurate description of the geometry.
机译:在过去几年中,工业应用中的异诊分析(IgA)的使用增加。主要优点之一是有限元分析(FEA)的组合,其能力通过非均匀的Rational B样条(NURBS)表示精确的几何形状。该框架已被证明,在找到对几何体的敏感性的情况下,在固体力学和流体动力学中的标准FEA是一种有效的替代品。轧制轮胎的数值模拟需要适当的离散化对弯曲边界和复杂的横截面,这通常导致使用高阶或圆柱形元件。由于倒闭操作在轮胎模型中具有数值昂贵的昂贵,因此IGA代表滚动轮胎建模的有吸引力的替代方案。在这一贡献中,采用任意拉格朗日欧拉欧洲配方实施到IGA中,为稳态条件下的滚动体数值分析提供基本工具。制剂的固体基础允许采用标准材料模型,但是轮胎建设元件,例如加强层,需要特别注意。基于集成点的位置构建流线,因此,可以实现线性和非线性粘弹性模型。数值示例突出了需要更少的自由度的新方法,以获得几何形状的准确描述。

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