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Simulation of elastoplastic deformation of isotropic material using a nonlocal yield criterion and Lattice Particle Model

机译:使用非局部屈服准则和格子粒子模型模拟各向同性材料的弹塑性变形

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A nonlocal yield criterion for Lattice Particle Model (LPM) is proposed to model the elastoplastic deformation of isotropic materials in this paper. Some basic concepts about LPM are reviewed and detailed derivation are provided. Analytical solution for the local and nonlocal coefficients in the LPM can be obtained. Implicit method combined with force incremental force method is adopted to simulate elastoplastic deformation for isotropic materials. 3D uniaxial tensile test, multiaxial tensile test, and shearing test of specimens with various geometries are simulated using the proposed nonlocal yield criterion with LPM in 3D using simple cubic packing pattern. By comparing LPM simulation results and ABAQUS simulation results, good accuracy has been verified for the LPM method to predict elastoplastic deformation of isotropic materials.
机译:提出了一种非局部屈服准则,用于模拟各向同性材料的弹塑性变形。审查了有关LPM的一些基本概念,并提供了详细的推导。可以获得LPM中局部和非局部系数的解析解。采用隐式法和力增量法相结合的方法来模拟各向同性材料的弹塑性变形。使用建议的非局部屈服准则和LPM在3D中使用简单的立方堆积模式,模拟了各种几何形状的试样的3D单轴拉伸试验,多轴拉伸试验和剪切试验。通过比较LPM模拟结果和ABAQUS模拟结果,已证明LPM方法预测各向同性材料的弹塑性变形具有良好的准确性。

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