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首页> 外文期刊>Thin-Walled Structures >Morphing of symmetric cross-ply cylindrical shells by minimising the Brazier moment: Optimised hinge folding
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Morphing of symmetric cross-ply cylindrical shells by minimising the Brazier moment: Optimised hinge folding

机译:通过最小化火盆时刻:优化铰链折叠而变形

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Aerospace and industries where both localised compliance and weight savings play a central role in design can benefit from using flexible hinges. These morphing structures use no mechanical hinges for folding. They fold by exploiting the limit point, i.e. the Brazier moment, of a geometrically nonlinear structural response characteristic of thin-walled beams under bending. Therefore, a smaller Brazier moment induces smaller non-classical stresses in the hinge during folding.Two aspects make cross-ply laminates attractive for designing flexible hinges. Firstly, the difference between the Brazier moment of an optimal symmetric generic laminate and that of an optimal symmetric cross-ply is relatively small. Secondly, cross-ply laminates do not exhibit extension-shear or bend-twist couplings which can induce complex deformations which can present challenges during design, especially considering that available analytical solutions of the Brazier moment neglect their effects. Driven by these premises, this work contributes to the preliminary design of flexible hinges by offering an analytical solution of the optimum symmetric cross-ply laminate for minimising the Brazier moment, which is subsequently validated through geometrically nonlinear finite element analysis. Moreover, this work provides insights into the prediction of the folding load considering the effects of local buckling instabilities.
机译:本地化合规性和重量储蓄的航空航天和行业在设计方面发挥着核心作用可以受益于使用灵活的铰链。这些变形结构使用没有机械铰链来折叠。它们通过利用极限点,即粗大的旋转梁在弯曲下的薄壁梁的几何非线性结构响应特性而折叠。因此,在折叠期间,较小的火焰矩在铰链中引起较小的非古典应力。各方面使交叉层层压物用于设计柔性铰链。首先,最佳对称通用层压板的钎焊时刻与最佳对称交叉层的差异相对较小。其次,交叉层叠层不具有延伸剪切或弯曲扭转联轴器,这可以引起复杂的变形,这可能在设计期间存在挑战,特别是考虑到吹风机时刻的可用分析解决方案忽视了它们的效果。由这些场所驱动,这项工作通过提供最佳对称交叉层压板的分析解决方案来实现灵活铰链的初步设计,以通过几何非线性有限元分析来验证。此外,考虑到当地屈曲稳定性的影响,这项工作提供了对折叠负荷预测的见解。

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