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Optimum Design of Composite Sandwich Structures Subjected to Combined Torsion and Bending Loads

机译:组合弯扭组合夹层结构的优化设计。

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This research is motivated by the increase use of composite sandwich structures in a wide range of industries such as automotive, aerospace and civil infrastructure. To maximise stiffness at minimum weight, the paper develops a minimum weight optimization method for sandwich structure under combined torsion and bending loads. We first extend the minimum-weight design of sandwich structures under bending load to the case of torsional deformation and then present optimum solutions for the combined requirements of both bending and torsional stiffness. Three design cases are identified for a sandwich structure required to meet multiple design constraints of torsion and bending stiffness. The optimum solutions for all three cases are derived. To illustrate the newly developed optimum design solutions, numerical examples are presented for sandwich structures made of either isotropic face skins or orthotropic composite face skins.
机译:这项研究的动机是在汽车,航空航天和民用基础设施等众多行业中越来越多地使用复合夹层结构。为了在最小重量下最大程度地提高刚度,本文开发了一种在组合扭转和弯曲载荷下用于三明治结构的最小重量优化方法。我们首先将弯曲载荷下的夹心结构的最小重量设计扩展到扭转变形的情况,然后针对弯曲和扭转刚度的综合要求提出最佳解决方案。对于满足扭转和弯曲刚度的多个设计约束的三明治结构,确定了三个设计案例。得出了这三种情况的最佳解决方案。为了说明新开发的最佳设计解决方案,给出了由各向同性蒙皮或正交各向异性复合蒙皮制成的三明治结构的数值示例。

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