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Thermal buckling load optimization of laminated folded composite plates

机译:层压折叠复合板的热屈曲载荷优化

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In this study, thermal buckling load optimization of symmetrically laminated composite folded plates subjected to uniformly distributed temperature load is investigated. The objective function is to maximize the critical temperature capacity of laminates and the fiber orientation is considered as a design variable. The first-order shear deformation theory is used to study thermal buckling response of the laminates. The modified feasible direction method is used as the optimization routine. For this purpose, a program based on Fortran is used for the optimization. Finally, the significant effects of crank angles, plate lengths and boundary conditions on the optimum results are demonstrated and the results are compared.
机译:在这项研究中,研究了承受均匀分布温度载荷的对称层压复合折叠板的热屈曲载荷优化。目标功能是最大程度地提高层压板的临界温度容量,并且将纤维取向视为设计变量。一阶剪切变形理论用于研究层压板的热屈曲响应。改进的可行方向法被用作优化程序。为此,使用基于Fortran的程序进行优化。最后,证明了曲柄角度,板长和边界条件对最佳结果的显着影响,并对结果进行了比较。

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