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Deformation Behaviour of Single Linear Surface Defect Nickel Nanowire at Different Temperatures Studied by Molecular Dynamics Simulations

机译:分子动力学模拟研究不同温度下单线性表面缺陷镍纳米线的变形行为

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The mechanical properties and deformation mechanism of nickel nanowire of dimension 100 ? (x-axis) x 1000 ? (y-axis) x 100 ? (z-axis) containing a single linear surface defect is studied at different temperatures using molecular dynamics simulations. The defect is created by deleting a row of atoms on the surface and is inclined at 25° to the loading axis. The tensile test is carried out at 0.01 K, 10 K, 100 K and 300 K temperature and 10~8 s~(-1) strain rate. To determine the effect of temperature on the stress-strain curves, fracture and failure mechanism, a thorough investigation has taken place. Maximum strength of 21.26 GPa is observed for NW deformed at 0.01 K temperature and the strength decreased with increase in temperature. Through slip lines, the deformation relief pattern taken place by developing the extrusion areas along with intrusion over the surface defect area in all NWs deformed at respective temperatures. Further it is observed that fracture strains decrease with increase in temperature. After yielding, stacking faults associated with dislocations are generated by slip on all four {111} planes. Different type of dislocations with both intrinsic and extrinsic stacking faults are noticed. Out of all dislocation densities, Shockley partial dislocation densities has recorded a maximum value.
机译:尺寸100的镍纳米线的力学性能和变形机理。 (x轴)x 1000? (y轴)x 100?使用分子动力学模拟在不同温度下研究含有单线性表面缺陷的Z轴)。通过删除表面上的一排原子来产生缺陷,并且在25°倾斜到装载轴。拉伸试验以0.01k,10k,100k和300k温度和10〜8 s〜(-1)应变速率。为了确定温度对应力 - 应变曲线,断裂和破坏机制的影响,已经进行了彻底的调查。观察到21.26GPa的最大强度,对于0.01k温度,NW变形,强度随温度的增加而降低。通过滑动线,通过在各自温度下变形的所有NW的表面缺陷区域以及在表面缺陷区域上以及在各个温度下变形的表面缺陷区域的侵扰来进行变形浮雕图案。此外,观察到骨折菌株随温度的增加而降低。屈服后,与脱位相关联的堆叠故障由所有四个{111}平面滑动产生。注意到不同类型的脱位和外部堆叠故障。出于所有脱位密度,震撼部分位错密度录得最大值。

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