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A study on elastic properties of carbon nanocones based on a temperature-related quasi-continuum model

机译:基于温度相关的准连续模型的碳纳米碳弹性性能研究

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摘要

In the present paper, general analytical formulas for calculating the Young's modulus and Poisson's ratio of single-walled carbon nanocones (SWCNCs) at finite temperatures are derived based on the proposed temperature-related multiscale quasi-continuum (QC) model. To this end, a temperature-related higher-order Cauchy-Born (THCB) rule is employed to establish the hyper-elastic constitutive model of SWCNCs. With use of the proposed approach, the influences of the temperature, apex angle, rotation angle of cutting lines and top end radius on the Young's moduli and Poisson's ratios of SWCNCs are investigated systematically.
机译:在本文中,基于所提出的温度相关的多尺度准连续体(QC)模型,推导出用于计算杨氏模量和单壁碳纳米纳米(SWCNC)的杨氏模量和泊松比的总分析公式。 为此,采用温度相关的高阶CAUCHY(THCB)规则来建立SWCNC的超弹性本构模型。 利用所提出的方法,系统地研究了杨氏模数和泊松比和泊松比对SWCNC的比例的温度,顶角,切割线的旋转角度和顶端半径的影响。

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