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STATIC AND STABILITY ANALYSIS OF A PLANAR COMPLIANT TENSEGRITY MECHANISM

机译:平面柔顺机构的静态和稳定性分析

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Traditional tensegrity mechanisms are comprised of compressive (rigid rods) and tensile members (strings). Compliant tensegrity mechanisms (CoTM) introduce springs alongside strings and rods, allowing these structures to be more adaptable and robust. The kinematic and stability analyses of such mechanisms will facilitate better behavioral understanding for control of such structures. Generally, the kinematic analysis assumes zero-free length (ZFL) springs which facilitates simplification of equations of motion. However, a general ZFL does not exist and the relaxation of ZFL assumption for a CoTM introduces computational complexities resulting from their non-linear nature. The research considers equilibrium and stability analysis of a planar CoTM mechanism consisting of two triangular platforms connected by a compressive member and two spring elements. For an assumed numerical example, the analysis illustrates the increase in computation complexity, and non-linear behavior of equilibrium and stable solutions as assumption is relaxed from 1) both spring ZFL, to 2) one spring ZFL, and 3) no spring ZFL.
机译:传统的张力机构由压缩(刚性杆)和抗拉构件(绳)组成。顺从的张力机制(CoTM)在线和杆旁边引入了弹簧,从而使这些结构更具适应性和耐用性。此类机构的运动学和稳定性分析将有助于更好地了解行为,以控制此类结构。通常,运动学分析假定零自由长度(ZFL)弹簧,这有助于简化运动方程。但是,一般的ZFL不存在,对CoTM的ZFL假设的放松引入了由于其非线性性质而导致的计算复杂性。该研究考虑了平面CoTM机构的平衡和稳定性分析,该CoTM机构由两个三角形平台组成,两个三角形平台由一个压缩构件和两个弹簧元件连接。对于一个假设的数值示例,该分析说明了计算复杂性的增加,以及随着假设从1)两个弹簧ZFL降为2)一个弹簧ZFL和3)没有弹簧ZFL而放松时,平衡和稳定解的非线性行为。

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