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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Dislocation microstructures and strain-gradient plasticity with one active slip plane
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Dislocation microstructures and strain-gradient plasticity with one active slip plane

机译:具有一个有效滑动面的位错微结构和应变梯度塑性

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We study dislocation networks in the plane using the vectorial phase-field model introduced by Ortiz and coworkers, in the limit of small lattice spacing. We show that, in a scaling regime where the total length of the dislocations is large, the phase field model reduces to a simpler model of the strain-gradient type. The limiting model contains a term describing the three-dimensional elastic energy and a strain-gradient term describing the energy of the geometrically necessary dislocations, characterized by the tangential gradient of the slip. The energy density appearing in the strain-gradient term is determined by the solution of a cell problem, which depends on the line tension energy of dislocations. In the case of cubic crystals with isotropic elasticity our model shows that complex microstructures may form in which dislocations with different Burgers vector and orientation react with each other to reduce the total self-energy.
机译:在小晶格间距的限制下,我们使用Ortiz及其同事介绍的矢量相场模型研究平面中的位错网络。我们显示,在位错总长度较大的缩放比例体系中,相场模型简化为应变梯度类型的简单模型。极限模型包含一个描述三维弹性能的项和一个应变梯度项,描述了几何上必要的位错的能量,其特征是滑移的切向梯度。应变梯度项中出现的能量密度由晶胞问题的解决方案确定,该问题取决于位错的线张力能量。对于具有各向同性弹性的立方晶体,我们的模型表明,可能形成复杂的微结构,其中具有不同Burgers矢量和取向的位错会相互反应,从而降低总自能。

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