Yasuda Hiromi, Tachi Tomohiro, Lee Mia, Yang Jinkyu
Department of Aeronautics & Astronautics, University of Washington, Seattle, WA, 98195-2400, USA.
Graduate School of Arts and Sciences, University of Tokyo, Tokyo, 153-8902, Japan.
Nat Commun. 2017 Oct 17;8(1):962. doi: 10.1038/s41467-017-00670-w.
Origami has recently received significant interest from the scientific community as a method for designing building blocks to construct metamaterials. However, the primary focus has been placed on their kinematic applications by leveraging the compactness and auxeticity of planar origami platforms. Here, we present volumetric origami cells-specifically triangulated cylindrical origami (TCO)-with tunable stability and stiffness, and demonstrate their feasibility as non-volatile mechanical memory storage devices. We show that a pair of TCO cells can develop a double-well potential to store bit information. What makes this origami-based approach more appealing is the realization of two-bit mechanical memory, in which two pairs of TCO cells are interconnected and one pair acts as a control for the other pair. By assembling TCO-based truss structures, we experimentally verify the tunable nature of the TCO units and demonstrate the operation of purely mechanical one- and two-bit memory storage prototypes.Origami is a popular method to design building blocks for mechanical metamaterials. Here, the authors assemble a volumetric origami-based structure, predict its axial and rotational movements during folding, and demonstrate the operation of mechanical one- and two-bit memory storage.
折纸最近作为一种设计构建超材料的积木的方法受到了科学界的广泛关注。然而,主要关注点一直是通过利用平面折纸平台的紧凑性和负泊松比特性将其应用于运动学领域。在此,我们展示了具有可调稳定性和刚度的立体折纸单元——具体来说是三角圆柱折纸(TCO),并证明了它们作为非易失性机械存储设备的可行性。我们表明,一对TCO单元可以形成一个双势阱来存储比特信息。这种基于折纸的方法更具吸引力的地方在于实现了两位机械存储器,其中两对TCO单元相互连接,一对作为另一对的控制。通过组装基于TCO的桁架结构,我们通过实验验证了TCO单元的可调特性,并展示了纯机械一位和两位存储器原型的运行。折纸是一种用于设计机械超材料积木的常用方法。在此,作者组装了一种基于立体折纸的结构,预测了其折叠过程中的轴向和旋转运动,并展示了机械一位和两位存储器的运行。