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Modulus, fracture strength, and brittle vs. plastic response of the outer shell of arc-grown multi-walled carbon nanotubes

机译:电弧生长的多壁碳纳米管外壳的模量,断裂强度以及脆性与塑性响应

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The fracture strengths and elastic moduli of arc-grown multi-walled carbon nanotubes (MWCNTs) were measured by tensile loading inside of a scanning electron microscope (SEM). Eighteen tensile tests were performed on 14 MWCNTs with three of them being tested multiple times (3x, 2x, and 2x, respectively). All the MWCNTs fractured in the "sword-in-sheath'' mode. The diameters of the MWCNTs were measured in a transmission electron microscope (TEM), and the outer diameter with an assumed 0.34 nm shell thickness was used to convert measured load-displacement data to stress and strain values. An unusual yielding before fracture was observed in two tensile loading experiments. The 18 outer shell fracture strength values ranged from 10 to 66 GPa, and the 18 Young's modulus values, obtained from a linear fit of the stress-strain data, ranged from 620 to 1,200 GPa, with a mean of 940 GPa. The possible influence of stress concentration at the clamps is discussed.
机译:通过在扫描电子显微镜(SEM)内部的拉伸载荷来测量电弧生长的多壁碳纳米管(MWCNT)的断裂强度和弹性模量。在14个MWCNT上进行了18次拉伸测试,其中三个测试了多次(分别为3x,2x和2x)。所有的MWCNT都以“刀鞘”模式断裂,在透射电子显微镜(TEM)中测量MWCNT的直径,并使用假设外壳厚度为0.34 nm的外径来转换测得的载荷。位移数据与应力和应变值之间的关系;在两个拉伸载荷实验中观察到了断裂前的异常屈服;从应力的线性拟合获得的18个外壳断裂强度值介于10至66 GPa之间,而18个杨氏模量值-应变数据,范围为620至1,200 GPa,平均值为940 GPa,并讨论了夹具处应力集中的可能影响。

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