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Dynamics analysis of planar multi-DOF mechanism with multiple revolute clearances and chaos identification of revolute clearance joints

机译:具有多旋转间隙的平面多DOF机理的动力学分析及旋转间隙关节的混沌识别

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摘要

The clearance joint is one of the important factors which influence system performance and dynamic characteristics. Traditional studies are mainly focused on the planar single degree of freedom (DOF) simple mechanism with one joint clearance, only few researchers investigated mechanisms with more than one DOF considering more than one clearance joint as an object, and few studies systematically analyzed nonlinear characteristics of the clearance joints. This article is devoted to analyzing the effect of multiple clearances and different friction models on the dynamic behavior of a planar multi-DOF mechanism. The 2 DOFs nine bar planar mechanism is selected as the research object. The dynamic model of the planar mechanism with two revolute clearances is built by considering Lagrange equation. The influence of LuGre model and modified Coulomb friction model on the dynamic response of the nine bar mechanism is studied. The effects of the number of clearance joints, clearance values, driving speeds and friction coefficients on the dynamic responses of the mechanism are analyzed. The chaos phenomenon existing in the clearance revolute joints is identified by phase diagram, Poincare map and largest Lyapunov exponent (LLE). Bifurcation diagrams of revolute clearance joints with changing clearance values, driving speeds and friction coefficients are also drawn. A virtual prototype model of 2 DOF nine bar mechanism containing two revolute clearances is built by using ADAMS software to verify the correctness of the numerical results. This research can provide theoretical basis for grasping the dynamic behavior of the planar rigid-body mechanism with clearances and identifying chaos of clearance joints.
机译:间隙关节是影响系统性能和动态特性的重要因素之一。传统研究主要集中在平面单一自由度(DOF)简单机制,具有一个联合清关,只有少数研究人员考虑了一个以上的DOF作为一个物体的多个DOF的机制,并且很少有研究系统地分析非线性特征间隙关节。本文致力于分析多个间隙和不同摩擦模型对平面多DOF机制的动态行为的影响。选择2个DOF九个条形平面机构作为研究对象。通过考虑拉格朗日方程,建立了具有两个旋转间隙的平面机制的动态模型。研究了Lugre模型和改进的库仑摩擦模型对九条机构动态响应的影响。分析了间隙关节,间隙,驱动速度和摩擦系数对机构的动态响应的影响。在间隙旋转关节中存在的混沌现象是通过相图,庞的地图和最大的Lyapunov指数(LLE)识别。还绘制了具有改变间隙,驱动速度和摩擦系数的旋转间隙接头的分叉图。通过使用ADAMS软件验证数值结果的正确性,构建了包含两个旋转间隙的2 DOF九个条形机制的虚拟原型模型。该研究可以为抓住平面刚体机制的动态行为,利用间隙提供理论依据,并识别间隙关节的混沌。

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