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A Meshless Method Based on the Nonsingular Weight Functions for Elastoplastic Large Deformation Problems

机译:基于弹塑性大变形问题的非垂直重量函数的无丝石方法

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In this study, based on a nonsingular weight function, the improved element-free Galerkin (IEFG) method is presented for solving elastoplastic large deformation problems. By using the improved interpolating moving least-squares (IMLS) method to form the approximation function, and using Galerkin weak form based on total Lagrange formulation of elastoplastic large deformation problems to form the discretilized equations, which is solved with the Newton-Raphson iteration method, we obtain the formulae of the IEFG method for elastoplastic large deformation problems. In numerical examples, the influences of the penalty factor, scale parameter of influence domain and weight functions on the computational accuracy are analyzed, and the numerical solutions show that the IEFG method for elastoplastic large deformation problems has higher computational efficiency and accuracy.
机译:在本研究中,基于非垂直体重函数,提出了改进的无元素Galerkin(IEFG)方法,用于求解弹塑性大变形问题。 通过使用改进的内插移动最小二乘(IML)方法来形成近似函数,并且基于弹性塑料大变形问题的总拉伸形式的Galerkin弱形式,以形成与牛顿 - 拉文迭代法解决的分歧式方程 ,我们获得IEFG方法的公式,用于弹塑性大变形问题。 在数值例子中,分析了惩罚系数,影响结构域的规模参数和重量函数对计算准确度的影响,数值解决方案表明,用于弹塑性大变形问题的IEFG方法具有更高的计算效率和准确性。

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