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在具有汤川相互作用的简单模型中,纳米通道在[111]方向诱导的高部分负泊松比效应

High Partial Auxeticity Induced by Nanochannels in [111]-Direction in a Simple Model with Yukawa Interactions.

作者信息

Tretiakov Konstantin V, Pigłowski Paweł M, Narojczyk Jakub W, Bilski Mikołaj, Wojciechowski Krzysztof W

机构信息

Institute of Molecular Physics, Polish Academy of Sciences, Smoluchowskiego 17/19, 60-179 Poznan, Poland.

Institute of Applied Mechanics, Poznań University of Technology, Jana Pawła II 24, 60⁻965 Poznań, Poland.

出版信息

Materials (Basel). 2018 Dec 14;11(12):2550. doi: 10.3390/ma11122550.

Abstract

Computer simulations using Monte Carlo method in the isobaric-isothermal ensemble were used to investigate the impact of nanoinclusions in the form of very narrow channels in the [ 111 ] -direction on elastic properties of crystals, whose particles interact via Yukawa potential. The studies were performed for several selected values of Debye screening length ( ( κ σ ) - 1 ). It has been observed that introduction of the nanoinclusions into the system reduces the negative value of Poisson's ratio towards [ 110 ] [ 1 1 ¯ 0 ] , maintaining practically constant values of Poisson's ratio in the directions [ 100 ] and [ 111 ] . These studies also show that concentration of particles forming the nanoinclusions in the system has a significant effect on the value of Poisson's ratio in the [ 110 ] [ 1 1 ¯ 0 ] -direction. A strong (more than fourfold) decrease of Poisson's ratio in this direction was observed, from - 0.147 ( 3 ) (system without inclusions) to - 0.614 ( 14 ) (system with nanoinclusions) at κ σ = 10 when the inclusion particles constituted about 10 percent of all particles. The research also showed an increase in the degree of auxeticity in the system with increasing concentration of nanoinclusion particles for all the screening lengths considered.

摘要

使用等压等温系综中的蒙特卡罗方法进行计算机模拟,以研究沿[111]方向呈非常窄通道形式的纳米夹杂物对晶体弹性性质的影响,该晶体的粒子通过 Yukawa 势相互作用。针对德拜屏蔽长度((κσ)-1)的几个选定值进行了研究。已观察到,将纳米夹杂物引入系统会使泊松比在[110][1 1¯0]方向上的负值减小,而在[100]和[111]方向上泊松比的值基本保持不变。这些研究还表明,系统中形成纳米夹杂物的粒子浓度对[110][1 1¯0]方向上的泊松比值有显著影响。当κσ = 10 且夹杂物粒子约占所有粒子的 10%时,观察到该方向上泊松比大幅下降(超过四倍),从-0.147(3)(无夹杂物系统)降至-0.614(14)(有纳米夹杂物系统)。研究还表明,对于所考虑的所有屏蔽长度,随着纳米夹杂物粒子浓度的增加,系统中的负泊松比程度增大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ac1/6315580/0414a6df621c/materials-11-02550-g001.jpg

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