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首页> 外文期刊>International Journal for Numerical and Analytical Methods in Geomechanics >Gradient plasticity modelling of strain localization in granular materials
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Gradient plasticity modelling of strain localization in granular materials

机译:颗粒材料应变局部化的梯度可塑性建模

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摘要

The flow stress in the yield surface of plastic constitutive equation is modified with a higher order gradient term of the effective plastic strain to model the effect of inhomogeneous deformation in granular materials. The gradient constitutive model has been incorporated into the finite element code ABAQUS and used to simulate biaxial shear tests on dry sand. It is shown that the shape of the post-peak segment of the load displacement curve predicted by the numerical analysis is dependent on the mesh size when gradient term is not used. Use of an appropriate gradient coefficient is shown to correct this and predict a unique shape of the load displacement curve regardless of the mesh size. The gradient coefficient required turns out to be approximately inversely proportional to the mesh elemental area. Use of the strain gradient term is found to diffuse the concentration of plastic strains within shear band resulting in its consistent width. The coefficient of the higher gradient term appears as a function of the grain size, the mean confining stress, and the plastic softening modulus.
机译:用有效塑性应变的高阶梯度项修改塑性本构方程的屈服面中的流应力,以模拟颗粒材料中非均匀变形的影响。梯度本构模型已被纳入有限元代码ABAQUS中,并用于模拟在干砂上的双轴剪切试验。结果表明,当不使用梯度项时,通过数值分析预测的载荷位移曲线的峰后段的形状取决于网格尺寸。示出了使用适当的梯度系数来校正该问题并预测载荷位移曲线的独特形状,而与网格大小无关。结果证明所需的梯度系数与网格基本面积成反比。发现使用应变梯度项可以分散剪切带内塑性应变的浓度,从而产生一致的宽度。较高梯度项的系数表现为晶粒尺寸,平均围压和塑性软化模量的函数。

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