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Dynamic Modeling and Analysis of Luffing System of Folding-Jib Aerial Platforms

机译:折叠式空中平台减压系统的动态建模与分析

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For the vibration of boom system which caused by luffing system of aerial platform folding-jib in working condition, the dynamic differential equation of the boom system is established by using the flexible multibody dynamics theory and the Lagrange equations in this article. By deriving and solving the dynamics differential equation, the dynamic analysis of each boom and the dynamic relationship between the cylinder pressure and flow are carried out. The results show that the vibration of the boom during lifting is due to the interaction between the extending motion and the flexible elastic vibration. In addition, it is necessary to consider the effect of the elastic deformation of each boom. This paper also provides theoretical foundation for deep research on the hydraulic control system to control the vibration of the boom.
机译:对于由工作条件下的空中平台折叠夹具的软臂系统引起的悬臂系统的振动,通过使用柔性多体动力学理论和本文的拉格朗日方程来建立繁荣系统的动态微分方程。通过导出和解决动力学微分方程,执行每个臂的动态分析和汽缸压力和流动之间的动态关系。结果表明,升降期间悬臂的振动是由于延伸运动与柔性弹性振动之间的相互作用。此外,有必要考虑每个繁荣的弹性变形的效果。本文还为液压控制系统深入研究控制繁荣的振动提供了理论基础。

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