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Thermal buckling load optimization of laminated general quadrilateral and trapezoidal thin plates

机译:层状通用四边形和梯形薄板的热屈曲负荷优化

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This paper deals with thermal buckling load optimization of symmetrically laminated angle-ply general quadrilateral and trapezoidal thin plates. The objective function is to maximize the critical temperature capacity of the quadrilateral and trapezoidal laminated plates and the fiber orientation is considered as a design variable. The mathematical formulation is based on the classical laminated plate theory for the frequency analysis. The modified feasible direction method is used as the optimization routine. Therefore, a program based on FORTRAN is used. Finally, the significant effects of aspect ratios, boundary conditions, taper ratios and unsymmetric trapezoidal plates on the optimal results are investigated and the results are compared.
机译:本文涉及对称层压角度通用四边形和梯形薄板的热屈曲负荷优化。目标函数是最大化四边形和梯形层压板的临界温度能力,并且纤维取向被认为是设计变量。数学制剂基于频率分析的经典层压板理论。修改的可行方向方法用作优化程序。因此,使用基于FORTRAN的程序。最后,研究了纵横比,边界条件,锥度比和不对称梯形板对最佳结果的显着影响,并进行了比较结果。

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