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An Electromechanical Co-Simulation Model Based on Lumped Parameter Model of Ball Screw Feed Drive System

机译:基于集总参数模型的滚珠丝杠进给驱动系统机电协同仿真模型

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The continuous search for efficiency put forward higher requests to the machine tool for high speed and high acceleration, which makes the large-size and lightweight-designed feed drive system more likely to produce vibration during high-speed and high-acceleration feed operation. Ball screw feed system is the most widely used linear drive system in the field of industrial automation. Electromechanical Co-Simulation for ball screw feed drive dynamics is an important technique for solving vibration problems occurs in the feed motion. In view of the shortcomings of the current dynamic simulation model in the study of vibration of ball screw feed drive system, taking a ball screw feed drive system test bench as an example, an electromechanical co-simulation model based on the lumped parameter model of ball screw feed drive system was built up in this paper. Firstly, based on the axial and rotation vibration integrated dynamic modeling method of ball screws, the lumped parameter model of ball screw feed system was established. Secondly, through the integration of the simulation model of semi-closed-loop cascade control system and the lumped parameter model of ball screw feed drive system, an electromechanical co-simulation model was built up. Simulation result shows that, the co-simulation model of ball screw feed drive system can predict the vibration occurs in the feed operation caused by the servo controller, ball screw feed system or the coupling between them.
机译:对效率的不断追求对机床提出了更高的要求,即对高速和高加速度的要求,这使得大型轻量设计的进给驱动系统在高速,高加速度进给操作中更容易产生振动。滚珠丝杠进给系统是工业自动化领域中使用最广泛的线性驱动系统。滚珠丝杠进给驱动动力学的机电协同仿真是解决进给运动中出现的振动问题的重要技术。针对当前动态仿真模型在滚珠丝杠进给系统振动研究中的不足,以滚珠丝杠进给系统试验台为例,提出了一种基于集总参数模型的机电协同仿真模型。本文建立了螺旋进给驱动系统。首先,基于滚珠丝杠的轴向和旋转振动综合动态建模方法,建立了滚珠丝杠进给系统的集总参数模型。其次,通过将半闭环串级控制系统的仿真模型与滚珠丝杠进给驱动系统的集总参数模型进行集成,建立了机电协同仿真模型。仿真结果表明,滚珠丝杠进给驱动系统的协同仿真模型可以预测伺服控制器,滚珠丝杠进给系统或两者之间的耦合引起的进给过程中的振动。

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