首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.3 >BUCKLING TOPOLOGY OPTIMIZATION OF LAMINATED MULTI-MATERIAL COMPOSITE STRUCTURES
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BUCKLING TOPOLOGY OPTIMIZATION OF LAMINATED MULTI-MATERIAL COMPOSITE STRUCTURES

机译:层状多材料复合结构的屈曲拓扑优化

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摘要

The design problem of maximizing the buckling load factor of laminated multi-material composite shell structures is investigated using the so-called Discrete Material Optimization (DM0) approach. The design optimization method is based on ideas from multi-phase topology optimization where the material stiffness is computed as a weighted sum of candidate materials, thus making it possible to solve discrete optimization problems using gradient based techniques and mathematical programming. The potential of the DM0 method to solve the combinatorial problem of proper choice of material and fiber orientation simultaneously is illustrated for a multilayered plate example and a simplified shell model of a spar cap of a wind turbine blade.
机译:使用所谓的离散材料优化(DM0)方法研究了使多层多材料复合壳结构的屈曲载荷因子最大化的设计问题。设计优化方法基于多相拓扑优化的思想,在该思想中,材料刚度作为候选材料的加权总和进行计算,因此可以使用基于梯度的技术和数学编程来解决离散优化问题。对于多层板示例和风力涡轮机叶片翼梁盖的简化壳模型,说明了DM0方法同时解决正确选择材料和纤维方向的组合问题的潜力。

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