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首页> 外文期刊>Journal of Elasticity >Plastic Flow as an Energy Minimization Problem. Numerical Experiments
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Plastic Flow as an Energy Minimization Problem. Numerical Experiments

机译:作为能量最小化问题的塑性流。数值实验

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In this approach, the plastic part of the deformation field, traditionally described by regular mappings, is interpreted as localized yielding along flow surfaces, with a kinematics analogous to that of crack formation. The resulting deformation is structured, being composed of a bulk and a surface part, respectively due to the elastic distortion of massive material portions and to localized yielding. There is an energetic competition between these two contributions in the energy functional, whose minimization is sought under irreversibility conditions for the inelastic phenomena. Numerical experiments are performed with a regularized variational approach. Paradigmatic examples show that plastic strain concentrates in coarse bands, but the bands may coalesce to form a plastic region, depending upon the shape and size of the body, the presence of pre-existing defects (voids, holes, notches) and the values of the governing parameters.
机译:在这种方法中,传统上由规则映射描述的变形场的塑性部分被解释为沿流动表面的局部屈服,其运动学类似于裂纹的形成。由于块状材料部分的弹性变形和局部屈服,所产生的变形是结构化的,分别由体积和表面部分组成。能量函数中的这两个贡献之间存在着激烈的竞争,在非弹性现象的不可逆条件下寻求使其最小化。数值实验是采用规则变分方法进行的。范例研究表明,塑性应变集中在较粗的带中,但是这些带可能会聚结以形成塑性区域,这取决于物体的形状和大小,是否存在预先存在的缺陷(空隙,孔洞,缺口)以及其值。控制参数。

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