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NUMERICAL IMPLEMENTATION OF FINITE STRAIN ELASTO-PLASTICITY WITHOUT YIELD SURFACE

机译:无屈服面有限应变弹塑性的数值实现

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摘要

In the present study, the finite element (FE) implementation of elasto-plasticity without a yield surface is discussed. For that purpose, the method of perturbing the deformation gradient tensor is employed to calculate approximate tangent moduli. The development of a user subroutine that enables one to use the proposed model within the FE program ABAQUS is covered. A number of exemplary numerical simulations is conducted in order to check the performance of this subroutine. Material parameter values determined for different materials are utilized. Finally, the presented constitutive equation is examined upon its ability to capture the shear-softening process.
机译:在本研究中,讨论了无屈服面的弹塑性有限元(FE)实现。为此,采用扰动变形量张量的方法来计算近似切线模量。涵盖了用户子例程的开发,该子例程使人们能够在FE程序ABAQUS中使用建议的模型。为了检查该子程序的性能,进行了许多示例性的数值模拟。利用针对不同材料确定的材料参数值。最后,根据本构方程捕获剪切软化过程的能力对其进行了检验。

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