Thermal and thermomechanical buckling of CNT-reinforced composite sandwich cylindrical shells including elasticity of tangential edge restraint

H. Tung, P. T. Hiếu
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引用次数: 1

Abstract

This paper presents an analytical approach to investigate the buckling of sandwich cylindrical shells subjected to uniform temperature rise and external lateral pressure. Two sandwich models corresponding to carbon nanotube reinforced composite (CNTRC) face sheets and core layer are considered. The properties of all constitutive materials are assumed to be temperature dependent and effective properties of CNTRC are determined according to an extended rule of mixture. Governing equations are established using first order shear deformation theory and solved employing two-term form of deflection along with Galerkin method for simply supported edge shells. In order to account for practical situations of in-plane boundary condition, the elasticity of tangential constraint of boundary edges is included. Owing to temperature dependence of material properties, critical thermal loads are determined adopting an iteration process. Numerous parametric studies are carried out and interesting remarks are given. The study reveals that sandwich shell model with CNTRC core layer and homogeneous skins has considerably strong capacity of buckling resistance. Numerical results also indicate that tangential edge constraint has significant effects on critical loads, especially at elevated temperature. In addition, in the case of thermal load, an intermediate volume percentage of carbon nanotubes can confer the highest critical temperatures of sandwich shells.
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碳纳米管增强复合材料夹芯圆柱壳的热屈曲和热力学屈曲,包括切向边缘约束弹性
本文提出了一种分析夹层圆柱壳在均匀温升和外侧压力作用下的屈曲问题的方法。考虑了碳纳米管增强复合材料(CNTRC)表面层和芯层的两种夹层模型。假定所有本构材料的性能都与温度有关,并根据扩展的混合规则确定CNTRC的有效性能。采用一阶剪切变形理论建立了简支边壳的控制方程,并采用两项挠度形式和伽辽金法进行了求解。为了考虑平面内边界条件的实际情况,考虑了边界边缘切向约束的弹性。由于材料性能对温度的依赖性,采用迭代法确定临界热载荷。进行了大量的参数研究,并给出了有趣的评论。研究表明,具有CNTRC芯层和均质表皮的夹层壳模型具有较强的抗屈曲能力。数值结果还表明,切向边约束对临界载荷有显著影响,特别是在高温条件下。此外,在热负荷的情况下,碳纳米管的中等体积百分比可以赋予三明治壳的最高临界温度。
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