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Nonlinear Behavior of Planar Compliant Tensegrity Mechanism with Variable Free-Lengths

机译:具有可变自由度的平面柔顺矩形机制的非线性行为

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Traditional tensegrity mechanisms comprise compressive (rigid rods) and tensile members (cables). Compliant tensegrity mechanisms (CoTM) include springs alongside cables. Introduction of spring elements allows these structures to be more adaptable and robust. The kinematic and stability analyses of such mechanisms will facilitate better understanding of their behaviors for developing control and design methodologies. The analysis of CoTM often involves making the zero free-length (ZFL) assumption, i.e., the free-length of the spring is zero, which disqualifies the analysis for most real-word applications. The paper illustrates the drastic increase in computational complexity for finding static solutions as the assumption of ZFL for spring elements are relaxed for a simple planar compliant tensegrity mechanism comprising two rigid triangular platforms connected by a compressive member and two spring elements. The resulting nonlinear behavior of obtained static solutions shows intersecting manifolds of equilibrium orientation angles where the number of solutions vary from minimum of 4 to beyond 10 as the spring free-lengths are varied.
机译:传统的静态机构包括压缩(刚性杆)和拉伸构件(电缆)。符合符合的态度机制(COTM)包括沿着电缆的弹簧。弹簧元件的引入允许这些结构更适应和稳健。这种机制的运动学和稳定性分析将有助于更好地了解他们对发展控制和设计方法的行为。 COTM的分析往往涉及使零自由度(ZFL)假设,即弹簧的自由度为零,这取消了分析对大多数实际应用的分析。本文说明了用于查找静态解决方案的计算复杂性的急剧增加,因为弹簧元件的假设被放松,以便具有由压缩构件和两个弹簧元件连接的两个刚性三角形平台的简单平面柔性的长度机构。所得到的获得静态溶液的非线性行为示出了相交的歧管的歧管的歧管歧管的歧管,其中溶液的数量从最小4到超出10变化,因为弹簧自由度变化。

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