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Molecular dynamics simulation for orientation dependence of deformations in monocrystalline AlN during nanoindentation

机译:纳米内狭窄期间单晶AlN变形的取向依赖性的分子动力学模拟

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Molecular dynamics simulations were performed for the nanoindentations using a virtual cylindrical indenter on monocrystalline aluminum nitride (AlN) with the indentation surface orientations of [0001], [10 (1) over bar0], [(1) over bar2 (1) over bar0] and [(1) over bar 01 (2) over bar], respectively, to investigate the orientation dependence of the material. Vashishta potential was used to model the interactions between Al-Al, N-N, and Al-N atoms in the specimens. Simulation results indicated that the deformation mechanism varies with surface orientations at the initial inelastic stage. In the specimens with the surface orientations of [0001] and [10 (1) over bar0] phase transformation plays a predominant part, in the case of [(1) over bar2 (1) over bar0] dislocation slip dominates the inelastic deformation, whereas in the case of [(1) over bar 01 (2) over bar] both phase transformation and dislocation slip act a leading role. However, the phase transformation and dislocation slip occur in all the samples during the further indentation. We found two paths of B4 to B1 phase transitions. Path I includes two steps: Al and N atoms move along the [0001] axis by an anti-parallel vertical motion, followed by horizontal relative movement of the two types of atoms. Path II is similar to Path I, but the sequence of relative movement of Al and N atoms is different. Path I occurs in the cases of [0001] and [(1) over bar 01 (2) over bar] orientations, while Path II in the cases of the other two orientations.
机译:使用虚拟圆柱形氮化物(ALN)上的虚拟圆柱形压痕进行分子动力学模拟,其中缩进表面取向,[10(1)上方的条形),[(1)在Bar0上方的Bar2(1) [(1)分别在杆01(2)上,以研究材料的取向依赖性。 Vashishta潜力用于在样本中模拟Al-Al,N-N和Al-N原子之间的相互作用。仿真结果表明,变形机制在初始非弹性阶段的表面取向变化。在具有[0001]的表面取向的标本中和[10(1)上方的律条形系]相变起到主要部分,在[(1)上方的条形图上,位错汗偏移偏移偏移,而在[(1)在酒吧01(2)上方的情况下]相变和位错滑移起到主导作用。然而,在进一步压痕期间,在所有样品中发生相变和位错滑。我们发现B4到B1相转换的两条路径。路径I包括两个步骤:Al和N原子通过反平行垂直运动沿α轴移动,然后通过两种类型的原子的水平相对运动。路径II类似于路径I,但是Al和N原子的相对运动序列是不同的。路径我发生在[0001]的情况下和[(1)上方的条形图01(2))取向,而在其他两个取向的情况下的路径II。

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