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The thermal effect on axially compressed buckling of a double-walled carbon nanotube

机译:双层碳纳米管轴向压缩屈曲的热效应

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The thermal effect on axially compressed buckling of a double-walled carbon nanotube is studied in this paper. The effects of temperature change, surrounding elastic medium and van der Waals forces between the inner and outer nanotubes are taken into account. Using continuum mechanics, an elastic double-shell model with thermal effect is presented for axially compressed buckling of a double-walled carbon nanotube embedded in an elastic matrix under thermal environment. Based on the model, an explicit formula for the critical axial stress is derived in terms of the buckling modes of the shell and the parameters that indicate the effects of temperature change, surrounding elastic medium and the van der Waals forces. Based on that, some simplified analysis is carried out to estimate the critical axial stress for axially compressed buckling of the double-walled carbon nanotube. Numerical results for the general case are obtained for the thermal effect on axially compressed buckling of a double-walled carbon nanotube. It is shown that the axial buckling load of double-walled carbon nanotube under thermal loads is dependent on the wave number of axially buckling modes. And a conclusion is drawn that at low and room temperature the critical axial stress for infinitesimal buckling of a double-walled carbon nanotube increase as the value of temperature change increases, while at high temperature the critical axial stress for infinitesimal buckling of a double-walled carbon nanotube decrease as the value of temperature change increases.
机译:研究了双壁碳纳米管轴向压缩屈曲的热效应。考虑了内外纳米管之间温度变化,周围弹性介质和范德华力的影响。利用连续力学,提出了一种具有热效应的弹性双壳模型,用于在热环境下轴向压缩屈曲嵌入弹性矩阵的双壁碳纳米管。基于该模型,根据壳体的屈曲模式和指示温度变化,周围弹性介质和范德华力的参数的参数,得出了临界轴向应力的明确公式。在此基础上,进行了一些简化的分析,以估算双壁碳纳米管轴向压缩屈曲的临界轴向应力。获得了对双壁碳纳米管轴向压缩屈曲的热效应的一般情况的数值结果。结果表明,双壁碳纳米管在热载荷作用下的轴向屈曲载荷与轴向屈曲模数有关。得出的结论是,在低温和室温下,双壁碳纳米管的无穷屈曲的临界轴向应力随温度变化值的增加而增加,而在高温下,双壁碳纳米管无穷屈曲的临界轴向应力则增加。碳纳米管随着温度变化值的增加而减少。

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