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Strength analysis of miniature folded right angle tetrahedron chain Programmable Matter

机译:微型折叠直角四面体链可编程材料的强度分析

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Miniaturization of Programmable Matter is a major challenge. Much of the difficulty stems from size and power requirements of internal actuators. This paper demonstrates that external energy can be used to both move modules and actuate their bonding mechanism. It presents a lattice style Programmable Matter system whose neighbor to neighbor lattice distance is 14mm. Previous work has shown a chain of edge connected right angle tetrahedrons can fold to arbitrary shapes. To form useful shapes such as tools, the chain should be folded to meet the functional requirements of the task such as mechanical strength. This paper also introduces the analysis of the strength of Programmable Matter systems. Module connections are defined by 6DOF stiffness matrices. The paper analyzes the strength of a heterogeneous system with some rigid and some soft connections.
机译:可编程物质的小型化是一个重大挑战。许多困难源于内部执行器的尺寸和功率要求。本文证明,外部能量可用于移动模块和激活它们的结合机制。它提出了一种格子样式的可编程物质系统,其相邻格子之间的距离为14mm。先前的工作表明,边缘连接的直角四面体链可以折叠成任意形状。为了形成有用的形状,例如工具,应将链条折叠起来以满足任务的功能要求,例如机械强度。本文还介绍了可编程物质系统的强度分析。模块连接由6DOF刚度矩阵定义。本文分析了具有一些刚性和一些软性连接的异构系统的强度。

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