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Strain-gradient elastic-plastic material models and assessment of the higher order boundary conditions

机译:应变梯度弹塑性材料模型和高阶边界条件的评估

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摘要

A gradient elastic material model exhibiting gradient kinematic and isotropic hardening is addressed within a thermodynamic framework suitable to cope with nonlocal-type continua. The Clausius-Duhem inequality is used, in conjunction with the concepts of energy residual, insulation condition and locality recovery condition, to derive all the pertinent restrictions upon the constitutive equations, including the PDEs and the related higher order (HO) boundary conditions that govern the gradient material behaviour. Through a suitable limiting procedure, the HO boundary conditions are shown to interpret the action, upon the body's boundary surface, of idealized extra HO constraints capable to impede the onset of strain as a nonlocality source and to react with a double traction (of dimension moment/area), work-conjugate of the impeded strain. The HO boundary conditions for the internal moving elastic/plastic boundary are also provided. A number of variational principles are proved. A few simple illustrative numerical examples are worked out.
机译:在适用于处理非局部类型连续体的热力学框架内,解决了呈现梯度运动学和各向同性硬化的梯度弹性材料模型。将Clausius-Duhem不等式与能量残差,绝缘条件和局部恢复条件的概念结合使用,得出本构方程的所有相关限制,包括PDE和相关的高阶(HO)边界条件渐变材料的行为。通过适当的限制程序,显示了HO边界条件,以解释在人体边界表面上理想的额外HO约束的作用,该约束可以阻止应变作为非局部性源的发生并以双牵引(尺寸矩)发生反应/区域),受阻应变的功共轭。还提供了内部运动弹性/塑性边界的HO边界条件。证明了许多变分原理。给出了一些简单的说明性数值示例。

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