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Repetitive skeletal structures controlled with bracing elements

机译:用支撑元素控制的重复骨骼结构

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Bar and joint frameworks provide useful models to the structure of building, metals, glasses, crystal states materials, nano-materials, and some biological systems. Using the symmetry and the periodicity of the structures, their rigidity is a problem of long-standing interest in kinematics, statics, and optimization. We considered the skeletal of a wide class of 3-dimensional tiling with the special assumption that the original polygonal faces are allowed to deform in a way that faces remaining central symmetrical and not necessarily planar. Some vectors that represent the parallel edges with the bracing elements as auxiliary framework characterize the mobility of this framework. A new theorem provides a necessary and sufficient condition for the rigidity of the tiling framework applying face diagonals as bracing elements. This result implies an efficient algorithm for the rigidity of the braced tiling structure. Based on simple elements, we construct new mechanisms which move as the skeleton tiling structure with the planar and the central symmetrical assumption. In the applications we regard the bracing elements as actuators; we provide a method controlling the motion of braced reconfigurable meta-materials and the rhombic type origami. (C) 2019 Elsevier Ltd. All rights reserved.
机译:钢筋连接框架为建筑物,金属,玻璃,晶态材料,纳米材料和某些生物系统的结构提供了有用的模型。利用结构的对称性和周期性,其刚度是长期以来对运动学,静力学和优化感兴趣的问题。我们考虑了广泛的3维平铺的骨架,并有一个特殊的假设,即允许原始多边形面以保持中央对称且不一定为平面的方式变形。用支撑元素作为辅助框架表示平行边缘的某些矢量表征了此框架的移动性。一个新的定理为使用面对角线作为支撑元素的平铺框架的刚度提供了充要条件。该结果暗示了用于支撑砖瓦结构刚度的有效算法。在简单元素的基础上,我们构造了新的机制,这些机制作为具有平面和中心对称假设的骨架拼贴结构而移动。在应用中,我们将支撑元件视为执行器。我们提供了一种控制支撑可重构超材料和菱形折纸运动的方法。 (C)2019 Elsevier Ltd.保留所有权利。

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