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Investigation on Intragranular Stress of Mg Including Several Twin-bands Using Dislocation-based Crystal Plasticity and Phase-field Models

机译:基于位错的晶体塑性和相场模型的MG内部晶宫内应力研究

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A coupled model based on crystal plasticity and phase-field theories that express both plastic anisotropy of HCP metals and expansion/shrinkage of twin-bands is proposed in the present study. In this model, the difference of the hardening rate in each slip system is expressed by changing their dislocation mobility as a numerical parameter defined in the crystal plasticity framework. The stress calculated via crystal plasticity analysis becomes to the driving force of multi-phase-filed equations that express the evolution of twin bands of several variants, which include both the growth and shrinkage. Solving this equation set, the rate of twinning/detwinning and the mirror-transformed crystal basis in the twinned/detwinned phase are obtained and then, crystal plasticity analysis is carried out again. Using the present model, a uniaxial cyclic loading simulation along [0001 ] direction on the specimen including two variants of twin-bands is carried out by means of finite element method (FEM). The results show that the detwinning stress decreases with increase of the pre-tensioned strain. This is caused by a residual compression stress resulting from the twin shearing that occurs in the vicinity of two twin boundaries approaching each other.
机译:在本研究中提出了一种基于表达HCP金属塑性各向异性的晶体塑性和相域理论的耦合模型,并在本研究中提出了双带的膨胀/收缩率。在该模型中,通过将其位移迁移率改变为在晶体塑性框架中定义的数值参数来表示每个滑移系统中的硬化速率的差异。通过晶体塑性分析计算的应力变为多相归档方程的驱动力,其表达几种变体的双带的演变,其包括生长和收缩。求解该等式集,获得孪晶/剥离的速率和镜面变化的晶体基于孪晶相中的晶体基础,然后再次进行晶体塑性分析。使用本模型,通过有限元方法(FEM)进行包括两个双频带的两个变体的样本上的单轴循环加载模拟。结果表明,脱绒应力随着预张紧菌株的增加而降低。这是由由彼此接近的两个双界附近发生的双剪切产生的残余压缩应力引起的。

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