首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >Degree of Freedom and Dynamic Analysis of the Multi-Loop Coupled Passive-Input Overconstrained Deployable Tetrahedral Mechanisms for Truss Antennas
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Degree of Freedom and Dynamic Analysis of the Multi-Loop Coupled Passive-Input Overconstrained Deployable Tetrahedral Mechanisms for Truss Antennas

机译:用于桁架天线的多环耦合无源输入的自由度和动态分析过度可展开可展开的四面体机制

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Recently, the truss antennas with deployable tetrahedron unit mechanisms have been successfully applied in orbit, owing to the advantages of large calibers, high accuracy, and large folding ratios. As multiloop coupled mechanisms, deployable tetrahedral mechanisms have multiple different output links, whose supporting limbs connecting output links and the base are mutually coupled. These mechanisms are also called the passive-input over-constrained mechanisms because their passive torsion springs are used as drivers and because the number of the drivers contained is more than the degrees of freedom (DOFs). In this work, a method based on the equivalent concept of first link-removing and then restoring is proposed for the DOF analysis of the multiloop coupled deployable tetrahedral mechanisms. With one coupled chain removed, the equivalent serial chains between the coupled components and the base are established in the remainder of the mechanisms. Then, the coupled chain removed is restored and the equivalent of the multiloop coupled mechanisms is obtained. The Lagrange method is used to establish the dynamic equation of the passive-input overconstrained mechanisms; the influence of the stiffness and number of torsion springs on the unfolding motion is examined.
机译:近来,由于大的曲线,高精度和大折叠比率的优点,桁架天线已经成功应用于轨道。作为多环耦合机构,可展开的四面体机构具有多个不同的输出链路,其支撑肢体连接输出链路和基座是相互耦合的。这些机制也称为被动输入的过度约束机构,因为它们的被动扭转弹簧用作驱动器并且因为所含驱动器的数量超过自由度(DOF)。在这项工作中,提出了一种基于第一链路去除的等同概念,然后恢复的方法,用于多环耦合可展开的四面体机构的DOF分析。除去一个耦合链,在机构的其余部分中建立耦合组件和基座之间的等效串联链。然后,恢复去除的耦合链,并且获得了多个耦合机构的等同物。 Lagrange方法用于建立无源输入的动态方程;检查了刚度和扭转弹簧数对展开运动的影响。

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