In the present study a three-dimensional finite element model was used in order to evaluate the tensile and bending rigidities and, subsequently, Young's moduli of non-chiral and chiral single-walled carbon nanotubes. A comprehensive study on the influence of the nanotube wall thickness on the Young's modulus results was also carried out using data reported in the literature.
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UNIV CALIF BERKELEY, LAWRENCE BERKELEY LAB, DIV MAT SCI, BERKELEY, CA 94720 USAUNIV CALIF BERKELEY, LAWRENCE BERKELEY LAB, DIV MAT SCI, BERKELEY, CA 94720 USA
BENEDICT, LX
LOUIE, SG
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UNIV CALIF BERKELEY, LAWRENCE BERKELEY LAB, DIV MAT SCI, BERKELEY, CA 94720 USAUNIV CALIF BERKELEY, LAWRENCE BERKELEY LAB, DIV MAT SCI, BERKELEY, CA 94720 USA
LOUIE, SG
COHEN, ML
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UNIV CALIF BERKELEY, LAWRENCE BERKELEY LAB, DIV MAT SCI, BERKELEY, CA 94720 USAUNIV CALIF BERKELEY, LAWRENCE BERKELEY LAB, DIV MAT SCI, BERKELEY, CA 94720 USA