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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >A general nonlinear global-local theory for bending and buckling analyses of imperfect cylindrical laminated and sandwich shells under thermomechanical loads
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A general nonlinear global-local theory for bending and buckling analyses of imperfect cylindrical laminated and sandwich shells under thermomechanical loads

机译:热力学载荷作用下非理想圆柱叠层和夹层壳弯曲和屈曲分析的通用非线性全局局部理论

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摘要

The accurate shell theories proposed so far have been calibrated based on linear kinematic relations. Many of them have ignored either the interlaminar stress continuity conditions at the interfaces or the transverse flexibility of the layers. Therefore, the available shell theories may encounter accuracy problems when analyzing the nonlinear behaviors, especially for sandwich shells with soft cores. Moreover, almost all of the available shell theories have been proposed employing the Love-Timoshenko assumption. Ideas of the previous global-local plate theory of the author are extended to develop the present nonlinear high-order global-local shell theory. The present theory has the advantages of: (1) suitability for non-linear analyses, (2) higher accuracy due to satisfying the complete interlaminar kinematic and transverse stress continuity conditions at the layer interfaces under thermo-mechanical loads, employing the exact Green's strain tensor of the curvilinear coordinates, considering the transverse flexibility, and releasing the Love-Timoshenko assumption, (3) less required computational time due to using the global-local technique and matrix formulations, and (4) capability of investigating the local phenomena. To enhance the accuracy of the results, compatible Hermitian elements are employed. Various comparative examples are included in the present paper to validate the theory and to examine its accuracy and efficiency.
机译:到目前为止,已提出的精确壳理论已根据线性运动关系进行了校准。他们中的许多人忽略了界面处的层间应力连续性条件或各层的横向柔韧性。因此,可用的壳理论在分析非线性行为时可能会遇到精度问题,尤其是对于具有软核的夹心壳而言。而且,几乎所有可用的壳理论都已采用Love-Timoshenko的假设提出。扩展了作者先前的全局局部板理论的思想,以发展当前的非线性高阶全局局部壳理论。本理论的优点是:(1)适用于非线性分析,(2)由于在热机械载荷下采用精确的格林应变,在层界面处满足了完整的层间运动学和横向应力连续性条件,因此具有更高的精度考虑到横向柔性并释放Love-Timoshenko假设,曲线坐标的张量;(3)由于使用了全局局部技术和矩阵公式,因此所需的计算时间更少;(4)研究局​​部现象的能力。为了提高结果的准确性,使用了兼容的Hermitian元素。本文中包含各种比较示例,以验证该理论并检查其准确性和效率。

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