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The universal scissor component: Optimization of a reconfigurable component for deployable scissor structures

机译:通用剪刀组件:针对可部署剪刀结构的可重新配置组件的优化

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Deployable scissor structures are well equipped for temporary and mobile applications since they are able to change their form and functionality. They are structural mechanisms that transform from a compact state to an expanded, fully deployed configuration. A barrier to the current design and reuse of scissor structures, however, is that they are traditionally designed for a single purpose. Alternatively, a universal scissor component (USC)a generalized element which can achieve all traditional scissor typesintroduces an opportunity for reuse in which the same component can be utilized for different configurations and spans. In this article, the USC is optimized for structural performance. First, an optimized length for the USC is determined based on a trade-off between component weight and structural performance (measured by deflections). Then, topology optimization, using the simulated annealing algorithm, is implemented to determine a minimum weight layout of beams within a single USC component.
机译:可部署的剪式结构能够临时更改和移动应用,因此可以很好地适应临时和移动应用。它们是从紧凑状态转变为扩展的,完全部署的配置的结构机制。但是,目前剪刀结构的设计和重用的障碍是传统上它们是为单一目的而设计的。或者,通用剪刀组件(USC)可以实现所有传统剪刀类型的通用元素引入了重用的机会,其中相同组件可以用于不同的配置和跨度。在本文中,USC针对结构性能进行了优化。首先,基于部件重量和结构性能(通过挠度测量)之间的权衡来确定USC的最佳长度。然后,使用模拟退火算法实现拓扑优化,以确定单个USC组件内光束的最小权重布局。

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