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Design and Testing of Self-Deploying Membrane Optic Support Structure Using Rollable Composite Tape Springs

机译:使用可卷曲复合带弹簧的自展开膜光学支撑结构的设计和测试

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The detail mechanical design of a freely-deploying support structure that positions and tensions a membrane primary optic was presented. Rollable composite tape spring members were the main components of the structure that provided the deployment force, controlled the deployment kinematics, and reacted the membrane tension load at full deployment. A simple constraint mechanism locks each tape spring hub in the stowed configuration, and simultaneously releases each hub for deployment. The detailed design and analysis of the self-deployable tape spring mechanism shows that the system provides the necessary deployment force and buckling resistance with margin. A prototype unit was fabricated and deployment tests performed. The deployment tests successfully demonstrate a new architecture based on rolled and freely deployed composite tape spring members that achieves simultaneous deployment in three dimensions without mechanical synchronization.
机译:提出了可自由部署的支撑结构的详细机械设计,该支撑结构可定位和拉紧膜片主要光学元件。可滚动的复合带状弹簧构件是该结构的主要组件,该结构提供展开力,控制展开运动学并在完全展开时对膜张力载荷作出反应。一个简单的约束机制将每个带状弹簧毂锁定在收起状态,并同时释放每个毂以进行部署。对可自行展开的带状弹簧机构的详细设计和分析表明,该系统具有必要的展开力和屈曲阻力。制造了原型单元并执行了部署测试。部署测试成功演示了一种基于卷制和自由部署的复合带弹簧构件的新架构,该架构可以在三个维度上实现同步部署而无需机械同步。

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