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Snap-Through of Bistable Configurations Generated from Variable Stiffness Composites

机译:可变刚度复合材料生成的双稳态构型的快速浏览

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摘要

Structures made of variable stiffness (VS) composites possess a rich design space for bistable configurations that demonstrate different values of curvatures and out-of-plane displacements. In this study, several VS composites are investigated which can yield cylindrical bistable shapes similar to those generated from unsymmetrical cross-plies. Such configurations have been found favorable as a component for certain morphing applications. A semi-analytical model based on the Rayleigh-Ritz approach is presented to calculate the thermally induced multistable shapes as well as the snap-through forces particularly taking into account the curvilinear paths of VS composites. A nonlinear finite element analysis is performed to check the accuracy of the semi-analytical method. Cylindrical shapes generated from VS laminates and the corresponding straight fiber cross-ply laminates are analyzed and compared. The snap-through forces are subsequently calculated and compared for different VS laminates and the straight fiber cross-ply. It is observed that certain VS composites have a significant reduction of snap-through forces but with a marginal difference in out-of-plane displacement as compared to the corresponding straight fiber cross-ply laminate.
机译:由可变刚度(VS)复合材料制成的结构具有丰富的双稳态配置设计空间,双稳态配置具有不同的曲率值和平面外位移。在这项研究中,对几种VS复合材料进行了研究,这些复合材料可以产生类似于非对称交叉叠置的圆柱形双稳态形状。已经发现这样的构造作为某些变形应用的组件是有利的。提出了一种基于Rayleigh-Ritz方法的半分析模型,用于计算热诱导的多稳态形状以及快速吸附力,特别是考虑了VS复合材料的曲线路径。进行非线性有限元分析以检查半分析方法的准确性。分析和比较了由VS层压板和相应的直纤维交叉层压板生成的圆柱形状。随后针对不同的VS层压板和直纤维交叉帘布层计算并比较咬合力。可以观察到,某些VS复合材料与相应的直纤维交叉层板层压材料相比,具有明显降低的咬合力,但在面外位移方面仅存在少量差异。

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  • 会议地点 Dubrovnik(HR)
  • 作者单位

    Institute of Structural Analysis, Leibniz Universitaet Hannover, Appelstrasse 9A, 30167 Hannover, Germany;

    Elasticity and Strength of Materials Group, School of Engineering, Universidad de Sevilla, Camino de Los Descubrimientos s, 41092 Seville, Spain;

    Institute of Structural Analysis, Leibniz Universitaet Hannover, Appelstrasse 9A, 30167 Hannover, Germany;

    Institute of Structural Analysis, Leibniz Universitaet Hannover, Appelstrasse 9A, 30167 Hannover, Germany;

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