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Role of Interlayer Interaction in the Mechanical Properties of a Multiwalled Carbon Nanotube and a Singlewalled Carbon Nanotube Bundle

机译:层间相互作用在多壁碳纳米管和单壁碳纳米管束的力学性能中的作用

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Nowadays carbon nanotubes (CNTs) have earned an important place in various fields of science and technology. The presence of the CNT fibers in the matrix can enhance the strength and quality of the composite materials to a large extent. So the exact knowledge of the mechanical properties of the fibers is very much important in building up of composite materials for specific use. As the CNTs have a natural tendency to form bundles or ropes or appear in the form of MWCNTs, we have studied the mechanical characteristics of a four membered single- wall carbon nanotube bundle and a four walled MWCNT in defect free condition and also with several Stone-Wales defects introduced into them. The interlayer interaction in the two cases behaves differently giving different nature of tensile and compressive properties. Their breaking and buckling modes are also different.
机译:如今,碳纳米管(CNTs)在科学和技术的各个领域都占有重要地位。基质中CNT纤维的存在可以在很大程度上增强复合材料的强度和质量。因此,对于特定用途的复合材料的构建,确切了解纤维的机械性能非常重要。由于CNT具有形成束或绳索或以MWCNT形式出现的自然趋势,因此我们研究了四元单壁碳纳米管束和四壁MWCNT在无缺陷条件下以及与数种石材一起的机械特性。 -将威尔士缺陷引入其中。两种情况下的层间相互作用表现出不同的特性,从而赋予了不同的拉伸和压缩特性。它们的断裂和屈曲模式也不同。

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