四面体-八面体异质单元的概念构型分析和形状变形机制的拓扑设计

Weiming Guo, Hong Xiao, Hongwei Guo, Jianguo Tao, Zongquan Deng, Chuanyang Li
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引用次数: 0

摘要

桁架式静力结构系统具有出色的大荷载和轻质特性。它易于通过替换结构中的特定构件来嵌入致动器,并具有多维空间变形的潜力。受均匀网格结构的启发,本文提出了一种基于四面体-八面体异质单元(TOHUs)组合设计的新型形状变形机制(SMM)。基于图论,分析了四面体-八面体单元的运动特性与驱动配置之间的关系,以确定其概念配置。然后,对加权图、邻接矩阵和连接规则进行评估,从而合成桁架机构的概念结构。结果表明,这种构型可以实现多维连续变形,包括跨度、弯曲、扫掠和扭曲。我们制作了一个原型来验证其变形能力。最后,基于矩阵位移法分析了其刚度性能。这项研究为构建 SMM 提供了全面的设计方法,扩大了可组合单元和连接方法的范围,为航空航天领域多维变形 SMM 的创新设计提供了理论指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conceptual Configuration Analysis of Tetrahedral-Octahedral Heterogeneous Unit and Topological Design of Shape Morphing Mechanism
The truss static structure system has excellent large load and lightweight characteristics. It is easy to embed actuators by substituting specific members in the structure and has the potential for multi-dimensional space deformation. Inspired by uniform tessellation structures, this paper proposes a novel shape morphing mechanism (SMM) based on the combined design of tetrahedral-octahedral heterogeneous units (TOHUs). The relationship between the motion properties and driving configuration of the tetrahedral-octahedral units is analyzed to determine their conceptual configuration based on graph theory. Then, the weighted graph, adjacency matrix, and connection rules are evaluated to synthesize the conceptual structure for the truss mechanism. The results show that this configuration can allow multi-dimensional continuous deformations, including span, bend, sweep, and twist. A prototype is built to verify its deformability. Finally, the stiffness performance is analyzed based on Matrix displacement method. This research provides a comprehensive design method for constructing SMM, expands the range of combinable units and connection methods, and offers theoretical guidance for the innovative design of multi-dimensional deformation SMM in aerospace.
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