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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Stacking-Sequence Optimization of Composite Delta Wing to Improve Flutter Limit Using Fractal Branch and Bound Method
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Stacking-Sequence Optimization of Composite Delta Wing to Improve Flutter Limit Using Fractal Branch and Bound Method

机译:分形分支定界法优化三角翼复叠技术以提高颤振极限

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The authors developed a fractal branch and bound method for optimization of stacking sequences of laminated composites to maximize buckling load of composite structures. The method demands an approximation of a design space with a response surface comprising quadratic polynomials for pruning branches of stacking sequences. Approximation of the objective function with quadratic polynomials has been confirmed for buckling load maximizations and panel-flutter-speed-limit maximizations using lamination parameters as predictors. Flutter speed maximization of composite delta wing is employed in this study as an example of stacking-sequence optimization using the fractal branch and bound method. This paper describes the theoretical background of the fractal branch and bound method. Then approximations are performed using quadratic polynomials with lamination parameters as predictors. Subsequently, we investigated effectiveness of this method for supersonic flutter of a composite delta wing. Results indicate that the method was applied successfully; a practical optimal stacking-sequence was obtained using modified response surfaces.
机译:作者开发了一种分形分支定界方法来优化层压复合材料的堆叠顺序,以最大程度地提高复合结构的屈曲载荷。该方法需要具有响应表面的设计空间的近似值,该响应表面包括用于修剪堆积序列分支的二次多项式。已经确认了使用二次多项式逼近目标函数,以使用层压参数作为预测变量的屈曲荷载最大化和面板颤振速度极限最大化。本研究采用复合三角翼的颤振速度最大化作为使用分形分支定界方法进行堆叠序列优化的一个例子。本文介绍了分形分支定界方法的理论背景。然后使用叠层参数为预测变量的二次多项式进行近似。随后,我们研究了该方法对复合三角翼超音速扑动的有效性。结果表明该方法已成功应用。使用修改后的响应面可获得实用的最佳堆叠顺序。

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