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Harnessing architected stiffeners to manufacture origami-inspired foldable composite structures

机译:利用架构加强筋来制造折纸启发的可折叠复合结构

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Owing to an excellent packaging efficiency and the possibility of jointless folding, origami-inspired composites have attracted great interest in aerospace, flexible electronics, robotics and other applications. Considering the complexity of origami patterns, novel fabrication methods are needed to manufacture the vast array of foldable-composite structures. In this study, a cost-effective compression molding technique is employed to develop origami-inspired fiber-reinforced foldable-composite structures. The manufacturing technique is demonstrated for two typical composite geometries, namely, an origami-inspired triangulated cylinder with a spiral configuration and a single-DOF reverse-folder flat flasher design. The folding operation is achieved through elastic hinges that separate the different architected stiffened regions of the composite. Flexural coupons are fabricated to investigate the behavior of the elastic hinges and establish the practical minimum width of the elastic hinge for rapid recovery after unloading. Mechanical tests on the cylindrical flexible structure show a consistent recovery of 90% of the original length after several loading cycles. The resulting cylindrical structure exhibited easy deployment and collapse properties. Finally, the flasher design (a box-like structure that flattens once deployed), exhibited a deployment radius equivalent to 4 times that of the folded state, as well as 98% recovery of its surface area.
机译:由于良好的包装效率和无缝折叠的可能性,折纸启动的复合材料引起了对航空航天,柔性电子,机器人和其他应用的极大兴趣。考虑到折纸图案的复杂性,需要新型制造方法来制造大量可折叠复合结构。在该研究中,采用经济有效的压缩模塑技术来开发折纸启动的纤维增强可折叠复合材料结构。对于两个典型的复合物几何形状,证明了制造技术,即折纸启动的三角形圆柱,具有螺旋配置和单DOF反向夹平面闪光灯设计。通过弹性铰链来实现折叠操作,该弹性铰链将不同的复合材料的架构加强区域分开。制造弯曲试样以研究弹性铰链的行为,并建立弹性铰链的实用最小宽度,以便在卸载后快速恢复。圆柱形柔性结构上的机械测试显示了几次装载循环后的最初长度的始终如一的90%。由此产生的圆柱形结构表现出易于部署和塌陷性能。最后,闪光灯设计(一旦部署一旦平整的盒状结构),展示了等于折叠状态的4倍的展开半径,以及其表面积的98%。

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