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首页> 外文期刊>International Journal of Plasticity >A continuum dislocation-based model of wedge microindentation of single crystals
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A continuum dislocation-based model of wedge microindentation of single crystals

机译:基于连续脱位的单晶的楔形微观型模型

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Recent Electron Backscatter Diffraction (EBSD) experiments have revealed the emergence of heterogeneous dislocation microstructures forming under a wedge indenter in fcc crystals, where micro-meter dislocation patterns challenge the predictions of traditional models of plasticity. In order to explain the formation of these features and develop a relationship between the force displacement curve and the dislocation substructure, we present here a model of wedge indentation based on the continuum theory of dislocations. The model accounts for large deformation kinematics through the multiplicative split of the deformation gradient tensor, where the incompatible plastic component of deformation results from the flux of dislocations on different and interacting slips systems. Constitutive equations for dislocation fluxes are determined from a dissipative variational principle. As a result, each dislocation density satisfies an initial boundary value problem with convective-diffusive character, which is coupled to the macroscopic stress and displacement fields governing the deformation process. Solution to the self consistent continuum formulation is found using the finite element method. Computer simulations mimic the experimental conditions of wedge micro-indentation experiments into Ni single-crystals used by Kysar et al. (2010a). A comparison of overall dislocation density distribution and macroscopic mechanical response shows good overall agreement with the experimental results in terms of the detailed features of dislocation patterns and lattice rotations as well as the macroscopic force-displacement response.
机译:最近的电子反向散射衍射(EBSD)实验揭示了在FCC晶体中楔形压紧在FCC晶体下形成的异质位错微观结构的出现,其中微米脱位模式挑战了传统的可塑性模型的预测。为了解释这些特征的形成,并在此处发挥力位移曲线和位错子结构之间的关系,我们在这里存在基于脱位的连续性理论的楔形压痕模型。通过变形梯度张量的乘法分裂,该模型考虑了大变形运动学,其中变形的不相容塑性分量由不同脱位的磁通量产生不同和相互作用的滑动系统。用于位错通量的组成方程由耗散变分原理确定。结果,每个位错密度满足具有对流漫射性的初始边界值问题,其耦合到控制变形过程的宏观应力和位移场。使用有限元方法发现自一致连续素制剂的溶液。计算机模拟模拟了Kysar等人使用的Ni单晶的楔形微压痕实验的实验条件。 (2010A)。整体位错密度分布和宏观机械响应的比较显示了脱位模式和晶格旋转的详细特征的实验结果以及宏观力 - 位移响应的良好总体协议。

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