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Nonlinear static and dynamic analysis of composite layered plates and shells using finite strip methods

机译:有限条法法求解复合材料层合板壳的非线性静动力分析

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摘要

In this thesis, a new concept of finite strip elements is introduced. Lagrangian, Hermitian and spline-type interpolations have been used independently along the two axes of the plate mid-plane. Different plate-bending theories; Mindlin, Reissner and Kirchhoff theories have been applied in the derivations of the new finitestrip elements, for isotropic and composite materials. The new elements have also been extended to work as faceted shell elements for the analysis of cylindrical shells, folded plates and stiffened plates. An efficient modular programming package based on those elements was designed, and it is capable of performing linear and non-linear stress analysis, buckling analysis and natural frequency analysis. The modular package, which was coded in FORTRAN has different solvers and a built-in mesh generator for different types of plate structures. A number of case studies have been employed for the validation of the package and testing its different capabilities. The package has proved to be an efficient tool for numerical modelling of plates, cylindrical shells, folded plates and stiffened plates made of isotropic and composite layered materials.
机译:本文介绍了一种有限条带单元的新概念。拉格朗日插补,埃尔米特插补和样条曲线插补已沿板中平面的两个轴独立使用。不同的板弯理论; Mindlin,Reissner和Kirchhoff理论已应用于各向同性和复合材料的新型有限条单元的推导中。新元素也已扩展为多面壳元素,可用于分析圆柱壳,折叠板和加劲板。设计了基于这些元素的高效模块化编程软件包,它能够执行线性和非线性应力分析,屈曲分析和固有频率分析。用FORTRAN编码的模块化程序包具有不同的求解器和用于不同类型板结构的内置网格生成器。已经采用了许多案例研究来验证软件包并测试其不同功能。事实证明,该包装是用于对各向同性和复合层状材料制成的板,圆柱壳,折叠板和加劲板进行数值建模的有效工具。

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