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A phase field model of deformation twinning: Nonlinear theory and numerical simulations

机译:变形孪晶的相场模型:非线性理论和数值模拟

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摘要

A continuum phase field theory and corresponding numerical solution methods are developed to describe deformation twinning in crystalline solids. An order parameter is associated with the magnitude of twinning shear, i.e., the lattice transformation associated with twinning. The general theory addresses the following physics: large deformations, nonlinear anisotropic elastic behavior, and anisotropic phase boundary energy. The theory is applied towards prediction of equilibrium phenomena in the athermal and non-dissipative limit, whereby equilibrium configurations of an externally stressed crystal are obtained via incremental minimization of a free energy functional. Outcomes of such calculations are elastic fields (e.g., displacement, strain, stress, and strain energy density) and the order parameter field that describes the size and shape of energetically stable twin(s). Numerical simulations of homogeneous twin nucleation in magnesium single crystals demonstrate fair agreement between phase field solutions and available analytical elasticity solutions. Results suggest that critical far-field displacement gradients associated with nucleation of a twin embryo of minimum realistic size are 4.5%–5.0%, with particular values of applied shear strain and equilibrium shapes of the twin somewhat sensitive to far-field boundary conditions and anisotropy of twin boundary surface energy.
机译:建立了连续相场理论和相应的数值求解方法来描述结晶固体中的形变孪晶。顺序参数与孪生剪切的大小相关,即与孪生相关的晶格变换。一般理论涉及以下物理学:大变形,非线性各向异性弹性行为和各向异性相边界能。该理论适用于预测非热和非耗散极限中的平衡现象,从而通过使自由能函数的增量最小化来获得外部应力晶体的平衡构型。这种计算的结果是弹性场(例如,位移,应变,应力和应变能密度)和描述能量稳定双胞胎的尺寸和形状的阶数参数场。镁单晶中均匀双核的数值模拟表明,相场解决方案与可用的解析弹性解决方案之间存在合理的一致性。结果表明,与最小实际大小的双胞胎成核相关的临界远场位移梯度为4.5%–5.0%,其中施加的剪应变和平衡形状的特定值对远场边界条件和各向异性有些敏感孪生边界表面能

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    Clayton, J. D.; Knap, J.;

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  • 年度 2011
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