论文标题
来自行为规范的计算设计和制造波纹机制
Computational Design and Fabrication of Corrugated Mechanisms from Behavioral Specifications
论文作者
论文摘要
正交组装的双层波纹(OADLC)机制是一类可折叠结构,利用折纸启发的方法来增强所得设备的结构刚度;这些机制由于其轻巧,紧凑的性质及其高强度与重量比率而具有广泛的应用。但是,这些机制的设计仍然具有挑战性。在这里,我们提出了一种有效的方法,用于从所需的行为规范(即面内刚度和平面外刚度)快速设计OADLC机制。基于等效板模型,我们为OADLC机制的行为规范开发和验证分析公式。分析公式可以描述为设计参数的表达式。根据分析表达式,我们从行为规格中制定了OADLC机制的设计,从给定的设计约束来最大程度地减少重量的优化问题。可以自动生成优化的OADLC机制的2D折叠模式,直接用于制造。我们的快速设计方法是通过开发刚度增强的机制,具有所需的平面外刚度,可折叠式抓地力,这使得可以在空气干扰和重量限制下稳步栖息。
Orthogonally assembled double-layered corrugated (OADLC) mechanisms are a class of foldable structures that harness origami-inspired methods to enhance the structural stiffness of resulting devices; these mechanisms have extensive applications due to their lightweight, compact nature as well as their high strength-to-weight ratio. However, the design of these mechanisms remains challenging. Here, we propose an efficient method to rapidly design OADLC mechanisms from desired behavioral specifications, i.e. in-plane stiffness and out-of-plane stiffness. Based on an equivalent plate model, we develop and validate analytical formulas for the behavioral specifications of OADLC mechanisms; the analytical formulas can be described as expressions of design parameters. On the basis of the analytical expressions, we formulate the design of OADLC mechanisms from behavioral specifications into an optimization problem that minimizes the weight with given design constraints. The 2D folding patterns of the optimized OADLC mechanisms can be generated automatically and directly delivered for fabrication. Our rapid design method is demonstrated by developing stiffness-enhanced mechanisms with a desired out-of-plane stiffness for a foldable gripper that enables a blimp to perch steadily under air disturbance and weight limit.