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Reconfigurable Modular Chain: A Reversible Material for Folding Three-Dimensional Lattice Structures

机译:可重新配置的模块化链:用于折叠三维晶格结构的可逆材料

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A wide range of engineering applications, ranging from civil to space structures, could benefit from the ability to construct material-efficient lattices that are easily reconfigurable. The challenge preventing modular robots from being applied at large scales is mainly the high level of complexity involved in duplicating a large number of highly integrated module units. We believe that reconfigurability can be more effectively achieved at larger scales by separating the structural design from the rest of the functional components. To this end, we propose a modular chain-like structure of links and connector nodes that can be used to fold a wide range of two-dimensional (2D) or three-dimensional (3D) structural lattices that can be easily disassembled and reconfigured when desired. The node geometry consists of a diamondlike shape that is one-twelfth of a rhombic dodecahedron, with magnets embedded on the faces to allow a forceful and self-aligning connection with neighboring links. After describing the concept and design, we demonstrate a prototype consisting of 350 links and experimentally show that objects with different shapes can be successfully approximated by our proposed chain design.
机译:范围广泛的工程应用,从民间到太空结构,可以从构建易于重新配置的材料有效的格子的能力中受益。防止模块化机器人在大尺度上施加的挑战主要是复制大量高度集成模块单元所涉及的高水平复杂性。我们认为,通过将结构设计与功能部件的其余部分分开,可以更有效地实现重新配置性更大的尺度。为此,我们提出了一种模块化链状结构的链接和连接器节点,可用于折叠宽范围的二维(2D)或三维(3D)结构格子,该结构格子可以很容易地拆卸和重新配置期望。节点几何形状由菱形形状组成,该菱形形状是菱形十二锭的一步,其中嵌入在脸上的磁铁以允许与相邻的链路有力和自对准连接。在描述概念和设计后,我们演示了由350个链接组成的原型,并通过我们所提出的链设计成功地近似地逐渐显示具有不同形状的物体。

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