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首页> 外文期刊>Journal of Mechanical Science and Technology >Application of a layerwise theory for efficient topology optimization of laminate structure
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Application of a layerwise theory for efficient topology optimization of laminate structure

机译:层压理论在层压结构高效拓扑优化中的应用

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摘要

This research applies a layerwise theory to topologically optimize laminate composite. As laminate composite structures are consisted of many thin layers, some limitations exist in analyzing and optimizing based on linear plate or shell theory. To overcome these limitations and problems, various layerwise theories have been developed. Thus, more accurate solutions can be efficiently obtained by these layerwise theories. In this research, one of the layerwise theory is applied to topologically optimize laminate structures. In the forward analysis for structural displacements, it is possible to efficiently conduct a numerical analysis and the sensitivity analysis in topology optimization. By solving several numerical examples, we observed that the directions of optimal layouts are different from each other depending on the type of load applied. Also, various design shapes were drawn to complement the difference in stiffness due to the rotation of each layer. In addition, an analysis of how the various combinations of angles and their position affect the stiffness was also discussed in this study.
机译:本研究适用于拓扑优化层压复合材料的层状理论。由于层压复合结构由许多薄层组成,基于线性板或壳理论分析和优化时存在一些限制。为了克服这些限制和问题,已经开发了各种层状理论。因此,通过这些层状理论可以有效地获得更准确的解决方案。在该研究中,将层状理论中的一个应用于拓扑上优化层压结构。在结构位移的前向分析中,可以有效地进行数值分析和拓扑优化的敏感性分析。通过求解几个数值示例,我们观察到,根据所施加的负载类型,最佳布局的方向彼此不同。而且,绘制了各种设计形状以使由于每层的旋转来补充刚度的差异。此外,还在本研究中讨论了分析角度的各种组合及其位置影响刚度的分析。

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