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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Phase field dislocation dynamics (PFDD) modeling of non-Schmid behavior in BCC metals informed by atomistic simulations
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Phase field dislocation dynamics (PFDD) modeling of non-Schmid behavior in BCC metals informed by atomistic simulations

机译:原子仿真通知BCC金属中非施密行为的相位脱位动态(PFDD)建模

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摘要

Body-Centered Cubic (BCC) metals exhibit anomalous mechanical properties such as twinning/anti-twinning and tension/compression asymmetry, which are attributed to asymmetric behavior of screw dislocations. Unlike Face-Centered Cubic (FCC) metals, the Critical Resolved Shear Stress (CRSS) of BCC metals deviates from the Schmid law. We use a mesoscale modeling approach called Phase Field Dislocation Dynamics (PFDD) to understand the critical factors that control this non-Schmid behavior and reproduce atomistic predictions of the CRSS (Peierls stress). All inputs to the PFDD model are obtained from Molecular Statics (MS) simulations. Multiple pathways for modeling the non-Schmid behavior are investigated by incorporating the representative dislocation properties into different energy terms in the PFDD model. One way to understand non-Schmid behavior is to incorporate stress components projected on inclined planes into the external energy term within PFDD. Alternatively, we propose that non-Schmid behavior can also be accounted for by considering the variation of the (110) unstable stacking fault energy and the dislocation core width as a function of the applied tensorial stress field. The CRSS predicted using PFDD modeling is in excellent agreement with MS predictions.
机译:以体为中心的立方(BCC)金属表现出异常的机械性能,例如孪生/抗孪氮和张力/压缩不对称性,其归因于螺杆脱位的不对称行为。与面向中心的立方(FCC)金属不同,BCC金属的临界剪切应力(CRS)偏离了施密法。我们使用称为相位字段位错动态(PFDD)的Messcale建模方法来了解控制该非施联行为的关键因素并再现CRS的原子造型预测(Peierls应力)。 PFDD模型的所有输入都是从分子计(MS)仿真获得的。通过将代表性位错属性纳入PFDD模型中的不同能量术语来研究用于建模非施密行为的多种途径。理解非施密行为的一种方法是将投影压力分量纳入PFDD内的外部能量术语。或者,我们提出了通过考虑(110)不稳定的堆叠故障能量和位错核心宽度的变化也可以考虑非施密行为作为所应用的张力字段的函数。使用PFDD建模预测的CRSS与MS预测的始终如一。

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