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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Inter-laminar stress recovery procedure for doubly-curved, singly-curved, revolution shells with variable radii of curvature and plates using generalized higher-order theories and the local GDQ method
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Inter-laminar stress recovery procedure for doubly-curved, singly-curved, revolution shells with variable radii of curvature and plates using generalized higher-order theories and the local GDQ method

机译:使用广义高阶理论和局部GDQ方法对曲率半径可变的双曲,单曲,旋转壳和板的层间应力恢复程序

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摘要

The stress and strain recovery procedure already applied for solving doubly-curved structures with variable radii of curvature has been considered in this article using an equivalent single layer approach based on a general higher-order formulation, in which the thickness functions of the in-plane displacement parameters are defined independently from the ones through the shell thickness. The theoretical model considers composite structures in such a way that employs the differential geometry for the description of doubly-curved, singly-curved, revolution with variable radii of curvature and degenerate shells. Furthermore, the structures at hand can be laminated composites made of a general stacking sequence of orthotropic generically oriented plies. The governing static equilibrium equations are solved in their strong form using the local generalized differential quadrature (GDQ) method. Moreover the generalized integral quadrature (GIQ) is exploited for the evaluation of the stress resultants of the model under study. Several numerical applications are presented and the local GDQ results are compared with finite element method (FEM) commercial codes.
机译:本文已经考虑了已经采用的应力和应变恢复程序来解决曲率半径可变的双曲线结构,该方法使用了基于一般高阶公式的等效单层方法,其中面内厚度函数位移参数的定义与通过壳体厚度的参数无关。该理论模型考虑了复合结构,该结构采用微分几何来描述具有可变曲率半径和简并壳的双曲线,单曲线旋转。此外,手边的结构可以是由正交各向异性一般定向层的一般堆叠顺序制成的层压复合材料。使用局部广义微分正交(GDQ)方法以强形式求解控制静态平衡方程。此外,利用广义积分正交(GIQ)来评估所研究模型的应力结果。介绍了几种数值应用程序,并将本地GDQ结果与有限元方法(FEM)商业代码进行了比较。

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