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Reconfiguration of a four-bar mechanism using phase space connections

机译:使用相空间连接重新配置四杆机构

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摘要

Linkage mechanisms are perhaps the simplest mechanical structures in engineering, but they can exhibit significant nonlinearity which can in principle be exploited. In this paper a simple smart structure model is developed based on such nonlinearity to investigate the reconfiguration of a four-bar mechanism through phase space connections. The central idea is based on heteroclinic connections in the mechanism phase space between equal-energy unstable equilibria. It is proposed that transitions between such equal-energy unstable (but actively controlled) equilibria in principle require zero net energy input, compared to transitions between stable equilibria which require the input and then dissipation of energy. However, it can be difficult to obtain such heteroclinic connections numerically in complex dynamical systems, therefore an objective function approach is used to seek transitions between unstable equilibria which approximate true heteroclinic connections. The instability inherent in the model is therefore actively utilised to provide energy-efficient transitions between configurations of the mechanism. It will be shown that the four-bar mechanism then forms the basis for an elastic model of a smart buckling beam.
机译:连杆机构也许是工程中最简单的机械结构,但它们可能会表现出明显的非线性,原则上可以利用。本文基于这种非线性特性开发了一个简单的智能结构模型,以研究通过相空间连接对四连杆机构的重新配置。中心思想是基于等能量不稳定平衡之间的机制相空间中的异质连接。提出的是,与需要输入能量然后耗散能量的稳定平衡之间的过渡相比,这种等能量不稳定(但受主动控制)的平衡之间的过渡原则上需要零净能量输入。但是,在复杂的动力学系统中很难从数值上获得这种异质连接,因此,使用目标函数方法来寻找近似真实异质连接的不稳定平衡之间的过渡。因此,模型中固有的不稳定性被积极利用,以在机构的配置之间提供节能转换。将显示四杆机构为智能屈曲梁的弹性模型奠定了基础。

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