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The effects of membrane thickness and asymmetry in the topology optimization of stiffeners for thin-shell structures

机译:膜厚度和不对称性对薄壳结构加劲肋拓扑优化的影响

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Thin-walled shell structures are extensively used in architecture and engineering owing to their light weight and ease of shaping. But they suffer from poor overall stiffness, something addressed by the strategic addition of stiffeners. The optimization of stiffeners is divided between those that include shell membrane in the optimization and those that do not. However, no studies were found that indicate when it is necessary or valid to use either approach. In most cases it was also found that symmetry was forced in the optimization of stiffening layers. These two effects were investigated, and the following conclusions were reached. Membranes with thicknesses less than 20% of the structure do not affect the final topology, whereas membrane thicknesses greater than 20% must be included in the optimization as they have a considerable effect. When bending and membrane loadings are present, symmetry should not be forced, otherwise suboptimal designs are generated.
机译:薄壁壳结构由于重量轻且易于成型而广泛用于建筑和工程领域。但是它们的整体刚度很差,这可以通过战略性地添加加强筋来解决。加强筋的优化分为优化中包括壳膜的和不包括。但是,没有发现任何研究表明何时有必要或有效使用两种方法。在大多数情况下,还发现在加强层的优化中必须对称。研究了这两种效果,并得出以下结论。膜厚度小于结构的20%不会影响最终拓扑,而优化中必须包括大于20%的膜厚度,因为它们会产生很大的影响。当存在弯曲和膜片载荷时,不应强制对称,否则会产生次优设计。

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