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首页> 外文期刊>Journal of Physics. Condensed Matter >Mechanical properties of CNT-reinforced Ni3Al composites: the role of chirality, temperature, and volume fraction
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Mechanical properties of CNT-reinforced Ni3Al composites: the role of chirality, temperature, and volume fraction

机译:CNT加固Ni3Al复合材料的力学性能:手性,温度和体积分数的作用

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摘要

Ni3Al is an extremely significant reinforcing phase in nickel-based single crystal superalloys. As an alternative strengthening method to improve its mechanical properties, carbon nanotube (CNT)-reinforced composites have recently been synthesized in experiments. Here, in order to explore the corresponding influence factors and the underlying mechanism, tensile and compressive mechanical properties of CNT- composites are systematically investigated by using molecular dynamics simulations. It is shown that the dispersion of a minor fraction of a CNT into matrix leads to a sufficient enhancement in the stiffness of CNT- composites compared with the pure . It is demonstrated that CNT reinforcement takes effect in the elastic stage under compression while it works continuously during tension. Compared with armchair CNTs, zigzag CNTs are predicted to provide more strength for raising the elastic modulus while armchair CNTs can provide superior elongation. Particularly, CNTs are found to hinder the generation of slip bands under tensile loading owing to the robust interfacial interactions. Furthermore, quantitative analysis reveals that the impact of volume fraction of CNT is much more significant than the size effect. The role of chirality, temperature and volume fraction of CNT obtained in the present work could provide beneficial references for subsequent theoretical and experimental investigations, and shed some light on the design of CNT-reinforced composites in nanoscale engineering.
机译:Ni3Al金属是镍基单晶超合金的极显著增强相。作为替代强化方法,以提高其机械性能,碳纳米管(CNT)-reinforced复合材料最近已经在实验中合成的。在此,为了探索相应影响因素和底层机制,拉伸和CNT的复合材料的压缩性能进行了系统通过使用分子动力学模拟研究。结果表明,一个CNT的一小部分到矩阵引线到足够的增强在CNT-的刚度的分散复合材料的纯相比较。据证实,CNT增强需要下压缩弹性阶段的效果,同时它的张力时连续工作。与扶手椅的CNT相比,锯齿形的CNT被预测用于提高弹性模量,而扶手椅CNT可以提供优异的伸长率提供更大的强度。特别地,CNT被发现阻碍由于鲁棒界面相互作用拉伸载荷下滑移带的产生。此外,定量分析表明,CNT的体积分数的影响比规模效应更为显著。在目前的工作中获得的手性,温度和CNT的体积分数的作用,可以为后续的理论和实验研究提供有益的参考,并阐明了碳纳米管增强复合材料的纳米级工程设计的一些情况。

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