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Multi-objective free-form optimization for shape and thickness of shell structures with composite materials

机译:复合材料壳体结构形状和厚度的多目标自由形式优化

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In this paper, we present a two-phase optimization method for designing the shape and thickness of shell structures consisting of orthotropic materials. We consider a multi-objective in terms of the compliances under multi boundary conditions, and use the weighted sum compliance as the objective functional and minimize it under the volume and the state equation constraints. The 1st phase is shape optimization, in which a shell structure is varied in the out-of-plane direction to the surface to create its optimal shape. In the 2nd phase, thickness optimization is implemented after shape optimization to decrease the compliance further. A free-form shape and thickness optimization problem is formulated in a distributed-parameter system based on the variational method. The shape and thickness sensitivities are theoretically derived and applied to the H-1 gradient method for shape and size optimization. The optimal multi-objective free-form of a shell structure with an orthotropic material can be determined using the proposal method, and the influence of the orthotropic angle to the optimal shape and thickness distribution is investigated in detail. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了一种用于设计由正交各向异性材料组成的壳体结构的形状和厚度的两阶段优化方法。我们在多边界条件下就合规性考虑多目标,并使用加权和合规性作为目标函数,并在体积和状态方程约束下将其最小化。第一阶段是形状优化,其中,壳结构沿面外方向相对于表面发生变化以创建其最佳形状。在第二阶段,在形状优化之后执行厚度优化,以进一步降低顺应性。基于变分方法,在分布参数系统中提出了自由形状和厚度优化问题。从理论上推导了形状和厚度灵敏度,并将其应用于H-1梯度方法以进行形状和尺寸优化。可以使用建议的方法确定具有正交各向异性材料的壳体结构的最佳多目标自由形式,并详细研究正交各向异性角对最佳形状和厚度分布的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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