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Dynamics analysis of 2-DOF complex planar mechanical system with joint clearance and flexible links

机译:具有关节间隙和柔性环节的2-DOF复杂平面机械系统的动力学分析

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摘要

Joint clearance and flexible links are two important factors that affect the dynamic behaviors of planar mechanical system. Traditional dynamics studies of planar mechanism rarely take into account both influence of revolute clearance and flexible links, which results in lower accuracy. And many dynamics studies mainly focus on simple mechanism with clearance, the study of complex mechanism with clearance is a few. In order to study dynamic behaviors of two-degree-of-freedom (DOF) complex planar mechanical system more precisely, the dynamic analyses of the mechanical system with joint clearance and flexibility of links are studied in this work. Nonlinear dynamic model of the 2-DOF nine-bar mechanical system with revolute clearance and flexible links is built by Lagrange and finite element method (FEM). Normal and tangential force of the clearance joint is built by the Lankarani-Nikravesh and modified Coulomb's friction models. The influences of clearance value and driving velocity of the crank on the dynamic behaviors are researched, including motion responses of slider, contact force, driving torques of cranks, penetration depth, shaft center trajectory, Phase diagram, Lyapunov exponents and Poincar, map of clearance joint and slider are both analyzed, respectively. Bifurcation diagrams under different clearance values and different driving velocities of cranks are also investigated. The results show that clearance joint and flexibility of links have a certain impact on dynamic behavior of mechanism, and flexible links can partly decrease dynamic response of the mechanical system with clearance relative to rigid mechanical system with clearance.
机译:关节间隙和柔性环节是影响平面机械系统的动态行为的两个重要因素。平面机制的传统动力学研究很少考虑到旋转间隙和柔性环节的影响,这导致较低的准确性。许多动力学研究主要关注简单的机制随空间,复杂机制的研究是几个。为了更精确地研究二维自由度(DOF)复杂平面机械系统的动态行为,在这项工作中研究了机械系统的动态分析和联合间隙的灵活性。具有旋转间隙和柔性环节的2-DOF九条机械系统的非线性动态模型由拉格朗日和有限元方法(FEM)构建。清仓接头的正常和切向力由Lankarani-Nikravesh和改装的库仑的摩擦模型建造。研究了曲柄对动态行为对动态行为的间隙值和驾驶速度的影响,包括滑块,接触力,曲柄的驱动扭矩,穿透深度,轴中心轨迹,相位图,Lyapunov指数和Poing,间隙图分别分析关节和滑块。还研究了不同间隙值下的分叉图和曲柄的不同驱动速度。结果表明,间隙的间隙和灵活性对机构的动态行为产生了一定的影响,并且灵活的链接可以部分地降低机械系统的动态响应,相对于具有间隙的刚性机械系统的间隙。

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