滚珠丝杠垂直升降系统的建模和振动特性分析

Modeling and vibration performance analysis of a ball screw vertical lifting system

  • 摘要: 以某上下料自动化设备中的升降机构为研究对象,采用集中参数法和分布参数法,利用拉格朗日方程和Ritz级数法,建立了滚珠丝杠垂直升降系统的动力学模型。利用模态叠加原理与降阶法求解微分方程对动态响应进行了求解。编制相应的MATLAB仿真程序,对系统进行了模态分析,研究了不同参数对工作台位移响应的影响。根据仿真结果分析系统的相对薄弱环节,选择丝杠参数,选型设计后的机构运行更加平稳。结果表明:所提出的动力学建模方法和研究结果对滚珠丝杠垂直升降系统的振动特性分析和结构设计具有指导意义。

     

    Abstract: Taking the elevator mechanism of a loading and unloading automatic equipment as the research object, using the Lagrange equation and Ritz series method, the dynamic model of the ball screw vertical lifting system is established in centralized parameter method and distribution parameter method. The dynamic responses of the system are calculated by applying modal superposition principle and the reduced order method for solving differential equations. A corresponding MATLAB calculation program is developed to carry out the numerical analysis. The modal analysis of the system is carried out. The influence of different parameters on the displacement response of the work table are studied. According to the simulation results, the relative weakness of the system is analyzed, and the parameters of screw nut are selected. After the selection design, the mechanism runs more smoothly. The results show that the proposed dynamic modeling method and research results have guiding significance for the vibration characteristics analysis and structural design of the ball screw vertical lifting system.

     

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