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Single-walled and multiwalled carbon nanotubes viewed as elastic tubes with the effective Young's moduli dependent on layer number - art. no. 233407

机译:单壁和多壁碳纳米管被视为弹性管,有效杨氏模量取决于层数-艺术没有。 233407

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摘要

The complete energy expression of a deformed single-walled carbon nanotube (SWNT) is derived in the continuum limit from the local density approximation model proposed by Lenosky [Nature (London) 355, 333 (1992)] and is shown to be consistent with the classic shell theory by which Young's modulus, the Poisson ratio, and the effective wall thickness of SWNT's are obtained as Y=4.70 TPa, nu=0.34, and h=0.75 Angstrom, respectively. The elasticity of a multiwalled carbon nanotube (MWNT) is investigated as the combination of the above SWNT's of layer distance d=3.4 Angstrom and the effective Young's modulus of the MWNT is found to be an apparent function of the number of layers, N, varying from 4.70 to 1.04 TPa for N=1 to infinity. [References: 32]
机译:变形的单壁碳纳米管(SWNT)的完整能量表达是在连续极限中从Lenosky [Nature(London)355,333(1992)]提出的局部密度近似模型得出的,并且证明与经典壳理论,根据该理论,杨氏模量,泊松比和SWNT的有效壁厚分别为Y = 4.70 TPa,nu = 0.34和h = 0.75埃。研究了多壁碳纳米管(MWNT)的弹性,因为上述SWNT's的层距为d = 3.4埃,而MWNT的有效杨氏模量是层数N的表观函数,变化是对于N = 1到无穷大,从4.70到1.04 TPa。 [参考:32]

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