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Double bonded Cooper-Naghdi micro sandwich cylindrical shells with porous core and CNTRC face sheets: Wave propagation solution

机译:双粘结Cooper-Naghdi微夹芯圆柱形壳,具有多孔芯和CNTRC面板:波传播溶液

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摘要

In this paper, wave propagation of double-bonded Cooper-Naghdi micro sandwich cylindrical shells with porous core and carbon nanotube reinforced composite (CNTRC) face sheets are investigated subjected to multi-physical loadings with temperature dependent material properties. The governing equations of motion are derived by Hamilton's principle. Then, the influences of various parameters such as wave number, CNT volume fraction, temperature change, Skempton coefficient, material length scale parameter, porosity coefficient on the phase velocity of double-bonded micro sandwich shell are taken into account. It is seen that by increasing of Skempton coefficient, the phase velocity decreases for higher wave number and the results become approximately the constant. Also, by increasing of the material length scale parameter, the cut of frequency increases, because the stiffness of micro structure increases. The obtained results for this article can be used to detect, locate and quantify crack.
机译:在本文中,研究了具有多孔芯和碳纳米管增强复合物(CNTRC)面板的双粘结Cooper-Naghdi微夹层圆柱形壳体的波传播进行多物理载荷,具有温度依赖性材料。汉密尔顿原则源于汉密尔顿的管理方程。然后,考虑了各种参数,例如波数,CNT体积分数,温度变化,铜碎片系数,材料长度比例,孔隙率系数,对双键微夹心壳相速度的孔隙率系数。可以看出,通过增加铜米系数,相速度降低了更高的波数,结果变为大致常数。而且,通过增加材料长度比例参数,频率的切割增加,因为微结构的刚度增加。本文的获得结果可用于检测,定位和量化裂缝。

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