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In-plane anisotropy and twin boundary effects in vanadium nitride under nanoindentation

机译:纳米压痕下氮化钒的面内各向异性和孪晶边界效应

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摘要

Twin boundaries (TBs) have been observed in and introduced into nonmetallic materials in recent years, which brought new concepts for the design of new structural materials. However, the roles of TB on the mechanical properties and strengthening/softening of transition metal nitrides remain unclear. To investigate the TB effects and the in-plane anisotropy, nanoindentations on VN (111) films with and without TB were simulated with molecular dynamics, in which a cylindrical indenter was used, and its longitudinal axis were assigned along <112> and <110>, respectively. We found that the effect of the indenter orientation is insignificant in the elastic stage, but significant in the following inelastic deformation. Different deformation mechanisms can be found for inelastic deformation, such as twinning and dislocation glide. The migration of TB can be observed, which may release the internal stress, resulting in softening; while the dislocation locking and pileup at TB can enhance the strength. We also found that the strengthening/softening induced by TB depends on the deformation mechanisms induced by indenter directions.
机译:近年来,在非金属材料中观察到并引入了孪晶界(TB),这为设计新的结构材料带来了新的概念。但是,TB在过渡金属氮化物的机械性能和强化/软化方面的作用仍不清楚。为了研究TB效应和面内各向异性,使用分子动力学模拟了带有和不带有TB的VN(111)膜上的纳米压痕,其中使用了圆柱形压头,其纵轴沿<112>和<110指定>。我们发现压头方向的影响在弹性阶段微不足道,但在随后的非弹性变形中却很显着。对于非弹性变形,可以找到不同的变形机制,例如孪晶和位错滑移。可以观察到TB的迁移,这可能释放内部应力,从而导致软化。 TB的位错锁定和堆积可以增强强度。我们还发现,TB引起的强化/软化取决于压头方向引起的变形机制。

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