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Fivefold enhancement of yield and toughness of copper nanowires via coating carbon nanotubes

机译:涂布碳纳米管通过涂覆碳纳米管提高铜纳米线的产量和韧性的五倍

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Carbon nanotubes are outstanding reinforcements owing to their unparallel strength, while their effects on the copper nanowire are still not fully understood, hampering their broad applications. Herein, we have investigated the tensile behaviors of the nanocomposite-wire of carbon nanotube-copper using molecular dynamic simulations. For the nanocomposite, both the coated and embedded carbon nanotubes increase the Young's modulus, fracture stress and toughness of the copper nanowire. A reinforcement of over fivefold in both yield strength (5.3 times) and toughness (5.1 times) has been achieved when the carbon nanotubes are coated on the copper nanowires, as well as 1.7 times in the Young's modulus. Higher temperatures and lower loading rates reduce the reinforcement.
机译:由于其非平行强度,碳纳米管是出色的增强剂,而它们对铜纳米线的影响仍然没有完全理解,妨碍了它们广泛的应用。 在此,我们研究了使用分子动态模拟的碳纳米管铜的纳米复合材料的拉伸行为。 对于纳米复合材料,涂覆和嵌入的碳纳米管均增加荧光的模量,断裂应力和铜纳米线的韧性。 当碳纳米管涂覆在铜纳米线上时,已经实现了屈服强度(5.3倍)和韧性(5.1次)的超过五倍的加强,以及杨氏模量的1.7倍。 较高的温度和较低的装载率降低了加固。

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