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Experimental Characterization of Hysteresis in a Revolute Joint for Precision Deployable Structures

机译:精密可展开结构旋转接头中的磁滞的实验表征

摘要

Recent studies of the micro-dynamic behavior of a deployable telescope metering truss have identified instabilities in the equilibrium shape of the truss in response to low-energy dynamic loading. Analyses indicate that these micro-dynamic instabilities arise from stick-slip friction within the truss joints (e.g., hinges and latches). The present study characterizes the low-magnitude quasi-static load cycle response of the precision revolute joints incorporated in the deployable telescope metering truss, and specifically, the hysteretic response of these joints caused by stick-slip friction within the joint. Detailed descriptions are presented of the test setup and data reduction algorithms, including discussions of data-error sources and data-filtering techniques. Test results are presented from thirteen specimens, and the effects of joint preload and manufacturing tolerances are investigated. Using a simplified model of stick-slip friction, a relationship is made between joint load-cycle behavior and micro-dynamic dimensional instabilities in the deployable telescope metering truss.
机译:对可展开式望远镜计量桁架的微动力行为的最新研究已经确定了桁架平衡形状在响应低能量动态载荷时的不稳定性。分析表明,这些微动力不稳定性是由桁架接头(例如,铰链和闩锁)内的粘滑摩擦引起的。本研究的特点是可伸缩望远镜计量桁架中的精密旋转接头的低幅度准静态载荷循环响应,特别是这些接头内的粘滑摩擦引起的这些接头的滞后响应。详细介绍了测试设置和数据缩减算法,包括对数据错误源和数据过滤技术的讨论。从13个样品中给出了测试结果,并研究了接头预紧力和制造公差的影响。使用简化的粘滑摩擦模型,在可展开的望远镜测光桁架中,联合载荷循环行为与微观动力学尺寸不稳定性之间建立了关系。

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