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Buckling characteristics and layup optimization of long laminated composite cylindrical shells subjected to combined loads using lamination parameters

机译:复合材料载荷作用下复合材料长圆柱复合壳的屈曲特性及铺层优化

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The buckling characteristics and layup optimization of long laminated composite cylindrical shells subjected to combined loads of axial compression and torsion are examined on the basis of Fluegge's theory. In the buckling analysis of long laminated composite cylindrical shells, 12 lamination parameters are introduced and used as design variables for layup optimization. Applying a vari-ational approach, the feasible region in the design space of the 12 lamination parameters is numerically obtained. The buckling characteristics are discussed in the design space of the 12 lamination parameters. In the layup optimization, the optimum lamination parameters for maximizing the buckling loads and the laminate configurations for realizing the optimum lamination parameters are determined by mathematical programming methods. It is found that in case of combined loads of axial compression and torsion, the optimum laminate configurations are unsymmetric.
机译:基于Fluegge的理论,研究了承受轴向压缩和扭转载荷的长层压复合圆柱壳的屈曲特性和铺放优化。在长层复合圆柱壳的屈曲分析中,引入了12个层合参数,并将其用作优化叠层的设计变量。应用变分方法,数值获得了12个层压参数设计空间中的可行区域。在12个层压参数的设计空间中讨论了屈曲特性。在叠层优化中,通过数学编程方法确定用于最大化屈曲载荷的最佳层压参数和用于实现最佳层压参数的层压构造。发现在轴向压缩和扭转的组合载荷的情况下,最佳的层压板构造是不对称的。

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