Avila Karina E, Küchemann Stefan, Alabd Alhafez Iyad, Urbassek Herbert M
Physics Department, University Kaiserslautern, Erwin-Schrödinger-Straße, D-67663 Kaiserslautern, Germany.
Research Center OPTIMAS, University Kaiserslautern, Erwin-Schrödinger-Straße, D-67663 Kaiserslautern, Germany.
Materials (Basel). 2019 May 7;12(9):1477. doi: 10.3390/ma12091477.
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu-Zr glass at various temperatures between zero and the glass transition temperature. We find that besides the elastic modulus, the yielding point also strongly (by around 50%) decreases with increasing temperature; this behavior is in qualitative agreement with predictions of the cooperative shear model. Shear-transformation zones (STZs) show up in increasing sizes at low temperatures, leading to shear-band activity. Cluster analysis of the STZs exhibits a power-law behavior in the statistics of STZ sizes. We find strong plastic activity also during the unloading phase; it shows up both in the deactivation of previous plastic zones and the appearance of new zones, leading to the observation of pop-outs. The statistics of STZs occurring during unloading show that they operate in a similar nature as the STZs found during loading. For both cases, loading and unloading, we find the statistics of STZs to be related to directed percolation. Material hardness shows a weak strain-rate dependence, confirming previously reported experimental findings; the number of pop-ins is reduced at slower indentation rate. Analysis of the dependence of our simulation results on the quench rate applied during preparation of the glass shows only a minor effect on the properties of STZs.
利用分子动力学模拟,我们研究了在零温度至玻璃化转变温度之间的不同温度下,大尺寸铜锆玻璃样品中的纳米压痕。我们发现,除弹性模量外,屈服点也随温度升高而大幅(约50%)降低;这种行为与协同剪切模型的预测在定性上是一致的。剪切转变区(STZ)在低温下尺寸不断增大,导致剪切带活动。对STZ的聚类分析在STZ尺寸统计中呈现幂律行为。我们还发现在卸载阶段也存在强烈的塑性活动;它表现为先前塑性区的失活和新区域的出现,从而导致弹出现象的观察。卸载过程中出现的STZ统计表明,它们的运作方式与加载过程中发现的STZ类似。对于加载和卸载这两种情况,我们发现STZ的统计与定向渗流有关。材料硬度显示出较弱的应变率依赖性,证实了先前报道的实验结果;在较慢的压痕速率下,弹出的数量会减少。对我们的模拟结果对玻璃制备过程中所施加的淬火速率的依赖性分析表明,其对STZ性能的影响很小。