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A METHOD FOR DETERMINING LOAD-DEPENDENT STIFFNESS OF FLEXURES

机译:确定挠曲荷载相关刚度的一种方法

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This paper explores strategies for static balancing of several flexure types. First, it describes a method for determining the load-dependent stiffness behavior of compliant flexures. Load-dependent stiffness means that the stiffness changes when a flexure is subjected to force loads perpendicular to its axis of rotation. A set of non-dimensional parameters is selected to describe the loads and the resulting stiffness. Finite element models of each joint are developed, and stiffness data is gathered for a range of horizontal and vertical loading regimes. The method is verified by comparing results to an analytic model for joints where such is available, and to results in the literature. The load-dependent stiffness behavior is then examined to identify new strategies for static balancing that have not yet appeared in the literature.
机译:本文探讨了几种挠曲类型的静态平衡策略。首先,它描述了一种确定依从性挠曲的载荷相关刚度行为的方法。取决于载荷的刚度是指当挠曲件承受垂直于其旋转轴的力载荷时,刚度会发生变化。选择一组无量纲参数来描述载荷和所产生的刚度。建立了每个接头的有限元模型,并收集了一系列水平和垂直载荷范围的刚度数据。通过将结果与可用的关节分析模型进行比较,并与文献中的结果进行比较,从而验证了该方法的有效性。然后检查与载荷有关的刚度行为,以确定尚未在文献中出现的用于静态平衡的新策略。

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