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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Time-varying positioning error modeling and compensation for ball screw systems based on simulation and experimental analysis
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Time-varying positioning error modeling and compensation for ball screw systems based on simulation and experimental analysis

机译:基于仿真和实验分析的滚珠丝杠系统时变定位误差建模与补偿

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摘要

Thermal expansion of ball screw systems affects the machining accuracy of machine tools significantly. This paper intends to provide a comprehensive error compensation method for the time-varying positioning error of machine tools. To confirm the thermal deformation mechanism of ball screw systems, experiments have been designed to study the thermal behaviors of a ball screw system under varying temperature conditions. An exponential algorithm is proposed to predict the temperature variation pattern of the ball screw based on finite element analysis, and the actual thermal boundary conditions of the ball screw system are exactly defined according to the proposed algorithm and the experimental results. Then, a comprehensive compensation model is established based on the decomposition of the initial geometric error and thermal error components. Finally, a real-time error compensation system is developed for machine tools based on the function of external machine original coordinate shift and fast Ethernet data interaction, and satisfactory results have been achieved for the compensation experiments on a machining center.
机译:滚珠丝杠系统的热膨胀显着影响机床的加工精度。本文旨在为机床时变定位误差提供一种综合的误差补偿方法。为了确认滚珠丝杠系统的热变形机理,已设计了实验来研究滚珠丝杠系统在不同温度条件下的热行为。提出了一种基于有限元分析的滚珠丝杠温度变化规律的指数算法,并根据算法和实验结果准确定义了滚珠丝杠系统的实际热边界条件。然后,基于初始几何误差和热误差分量的分解,建立了一个综合补偿模型。最后,基于外部机床原坐标平移和快速以太网数据交互的功能,开发了一种机床实时误差补偿系统,在加工中心进行的补偿实验取得了满意的结果。

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