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首页> 外文期刊>Computational Materials Science >Investigation of the local structural rearrangement of Mg67Zn28Ca5 bulk metallic glasses during tensile deformation: A molecular dynamics study
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Investigation of the local structural rearrangement of Mg67Zn28Ca5 bulk metallic glasses during tensile deformation: A molecular dynamics study

机译:Mg67Zn28Ca5块状金属玻璃拉伸变形过程中的局部结构重排研究:分子动力学研究

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Mg67Zn28Ca5 bulk metallic glass (BMG) has been proven to have the highest corrosion resistance to a simulated body fluid solution amongst all MgZnCa BMGs (Zberg et al., 2009), and further studies on its mechanical properties and deformation mechanism under uniaxial tension have been conducted using molecular dynamics (MD) simulations. This study finds the predicted yielding stress and Young's modulus derived from the stress-strain profile to be 702 MPa and 51 GPa, respectively, which are in good agreement with experimental results. The distribution of the atomic local shear strain was used to monitor the development of a shear transition zone (STZ) and the formation of a shear band during the tension. For the BMG system and the shear band region, the Honeycutt-Anderson (HA) pair analysis technique was adopted to analyze the local structural rearrangement in detail, and the free volume ratio was used to determine the extent of the increase in free volume. In the system, number 1551 and 1541 icosahedral local structures significantly decrease at strains from 0 to 0.05 and the initialization of STZs appears randomly throughout this strain range. When the strain increases further, the numbers of all HA indexes remain constant, and the extension of STZs evolves into two clear shear bands along a direction 45 degrees from the tensile direction. In the shear band region, the fraction of Ca atom is about half the Ca fraction of Mg67Zn28Ca5 BMG, and the fraction of icosahedral local structures 1551, 1541, and 1431 are relatively higher than those distributed within the whole system. Also the value of the free volume ratio in the shear band region is much larger than that in the whole system. By investigating the variation of average atomic local strain values within the shear band, a four-stage deformation mechanism of local structure rearrangement is clearly indicated, consisting of elastic deformation, STZ initialization, STZ extension, and shear band formation. (C) 2014 Elsevier B. V. All rights reserved.
机译:已证明Mg67Zn28Ca5大块金属玻璃(BMG)在所有MgZnCa BMG中对模拟体液溶液具有最高的耐腐蚀性(Zberg等,2009),并且已经对其单轴拉伸下的力学性能和变形机理进行了深入研究。使用分子动力学(MD)模拟进行。本研究发现,从应力-应变曲线得出的预测屈服应力和杨氏模量分别为702 MPa和51 GPa,与实验结果非常吻合。原子局部剪切应变的分布用于监测拉伸过程中剪切过渡区(STZ)的发展和剪切带的形成。对于BMG系统和剪切带区域,采用了Honeycutt-Anderson(HA)对分析技术来详细分析局部结构重排,并使用自由体积比确定自由体积增加的程度。在该系统中,从0到0.05的菌株,数目1551和1541的二十面体局部结构显着减少,并且STZ的初始化在整个菌株范围内随机出现。当应变进一步增加时,所有HA指数的数量保持不变,STZ的延伸沿与拉伸方向成45度的方向演变为两个清晰的剪切带。在剪切带区域,Ca原子的比例约为Mg67Zn28Ca5 BMG的Ca比例的一半,二十面体局部结构1551、1541和1431的比例相对高于整个系统中分布的比例。剪切带区域中的自由体积比的值也远大于整个系统中的自由体积比的值。通过研究剪切带内平均原子局部应变值的变化,清楚地表明了局部结构重排的四阶段变形机制,包括弹性变形,STZ初始化,STZ延伸和剪切带形成。 (C)2014 Elsevier B. V.保留所有权利。

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