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Band-Drive Suspension Mechanism Design for Ground-Based Testing of Flexible Space Structures

机译:柔性空间结构地基测试的带驱动悬架机构设计

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摘要

A suspension system based on a band mechanism is investigated to provide the free-free conditions for ground-based validation testing of flexible space structures. The band mechanism consists of a noncircular disk with a convex profile, preloaded by torsional springs at its center of rotation so that static equilibrium of the test structure is maintained at any vertical location; gravitational force will be directly counteracted during dynamic testing of the space structure. This noncircular disk within the suspension system can be configured to remain unchanged for test articles with different weights as long as the torsional spring is replaced to maintain the originally designed frequency parameter of W/k_s. Simulations of test articles which ore modelled as lumped-parameter as well as continuous parameter systems are also presented.
机译:研究了基于带机制的悬架系统,为柔性空间结构的地面验证测试提供了自由条件。带状机构由一个具有凸轮廓的非圆盘组成,该圆盘在其旋转中心处由扭转弹簧预紧,从而可以在任何垂直位置保持测试结构的静态平衡。重力将在空间结构的动态测试中直接抵消。悬架系统中的该非圆盘可以配置为对于具有不同重量的测试物品保持不变,只要更换扭力弹簧以保持最初设计的W / k_s频率参数即可。还介绍了将矿石建模为集总参数以及连续参数系统的模拟。

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