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Effects of modulation periods on mechanical properties of V/VN nano-multilayers

机译:调制周期对v / Vn纳米多层力学性能的影响

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摘要

Metal/ceramic nano-multilayers, which possess the advantages of both metal and ceramics, have attracted intensive attention. In this work, the mechanical properties of V/VN nano-multilayers with different modulation periods (lambda s) were investigated using molecular dynamics simulations. The relationships between the microstructures and stress-strain (sigma-epsilon) curves during in-plane tension and out-of-plane compression were explored, and the effects of lambda were discussed. It shows that: (i) three kinds of V/VN nano-multilayers with different interfacial structures have different stabilities during deformation; (ii) dislocations nucleate firstly from the interfaces, propagate on {111} planes in VN layers, and deposit on the adjacent interface, and finally shift to V layers with the increase of applied strain; (iii) the nano-multilayer with larger lambda has larger elastic modulus, elastic limit and lattice integrity, and strain hardening and cracks would appear in the nano-multilayers with lambda > 42.90 angstrom.
机译:金属/陶瓷纳米多层具有金属和陶瓷的优点,引起了密集的关注。在这项工作中,使用分子动力学模拟研究了具有不同调节周期(Lambda S)的V / VN纳米多层的机械性能。探讨了在面内张力和面内压缩过程中的微结构和应力 - 菌株(Sigma-epsilon)曲线之间的关系,并讨论了λ的效果。结果表明:(i)具有不同界面结构的三种V / VN纳米多层在变形期间具有不同的稳定性; (ii)首先从界面中核解脱位,在VN层中的{111}平面上传播,并在相邻的界面上沉积,并最终随着应用菌株的增加而转移到V层; (iii)具有较大Lambda的纳米多层具有较大的弹性模量,弹性极限和格子完整性,并且应变硬化和裂缝将出现在纳米多层具有Lambda> 42.90埃的纳米。

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