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首页> 外文期刊>Journal of Mechanical Science and Technology >Pasternak foundation effect on the axial and torsional waves propagation in embedded DWCNTs using nonlocal elasticity cylindrical shell theory
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Pasternak foundation effect on the axial and torsional waves propagation in embedded DWCNTs using nonlocal elasticity cylindrical shell theory

机译:基于非局部弹性圆柱壳理论的帕斯捷尔纳克基础对嵌入式DWCNT中轴向和扭转波传播的影响

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摘要

The axial and torsional wave propagation in a double-walled carbon nanotube (DWCNT) embedded on elastic foundations are investigated using nonlocal continuum shell theory. The effects of the surrounding elastic medium are considered using the spring constant of the Winkler-type and the shear constant of the Pasternak-type. The van der Waals (vdW) forces between the inner and the outer nanotubes are taken into account. The dynamic response of the carbon nanotube is formulated on the basis of nonlocal elasticity shell theory. The cut-off frequencies are obtained and it has been concluded that the cut-off frequencies are independent of small scale coefficient and shear modulus of the elastic medium. It has been found that the phase velocity sharply decreases by increasing the axial half wave number and approaches a constant value. It has also been concluded that the maximum phase velocity predicted by nonlocal theory is located between 5 and 10 nanometers while for local theories the phase velocity sharply decreases in this interval and approaches a constant value. Results show that the effect of Pasternak-type on phase velocity is significant but the effect of Winkler-type is not really considerable.
机译:使用非局部连续体壳理论研究了嵌入弹性基础上的双壁碳纳米管(DWCNT)中的轴向和扭转波传播。使用Winkler型的弹簧常数和Pasternak型的剪切常数来考虑周围弹性介质的影响。考虑在内外纳米管之间的范德华力(vdW)。碳纳米管的动态响应是基于非局部弹性壳理论制定的。获得了截止频率,并且得出的结论是,截止频率与弹性介质的小比例系数和剪切模量无关。已经发现,通过增加轴向半波数,相速度急剧下降并且接近恒定值。还得出结论,由非局部理论预测的最大相速度位于5到10纳米之间,而对于局部理论,相速度在此间隔内急剧下降并接近恒定值。结果表明,帕斯捷尔纳克型对相速度的影响是显着的,但温克勒型的影响并不明显。

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