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Closed-loop mode geometric error compensation of five-axis machine tools based on the correction of axes movements

机译:基于轴移动校正的五轴机床闭环模式几何误差补偿

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The evaluation of the results of geometric error compensation is critical, and it can serve as the feedback of the compensation to help improve the precision of the compensation. In this paper, the closed-loop mode geometric error compensation of five-axis machine tools is presented by correcting the movements of all axes. At first, general geometric error modeling of the machine tool is proposed based on POE theory. The initial positions of linear axes and rotary axes relative to the machine tool are considered and the error twist of each axis containing position-independent errors is established. Second, the closed-loop mode is developed by analyzing the open-loop mode of geometric error compensation. The precision inverse feedback module is formed by introducing the designed tool poses. The output of the feedback is the integrated errors of the revised movements of axes relative to the ideal tool poses of nominal movements of axes. Third, the adaptive correction of movements of axes is proposed based on CSO (chicken swarm optimization). The initializing of the swarm, the Jacobian based moving of roosters, and the moving of chicks containing one mutation are developed. The fitness of the swarm is calculated using the integrated errors relative to the compensation goal in the precision inverse feedback. Finally, simulations by comparing with open-loop mode error compensation and real cutting experiments are proposed on one SmartCNC500_DRTD five-axis machine center to verify the effectiveness of the closed-loop mode geometric error compensation.
机译:对几何误差补偿结果的评估是至关重要的,它可以作为补偿的反馈,以帮助提高补偿的精度。在本文中,通过校正所有轴的运动来提出五轴机床的闭环模式几何误差补偿。首先,基于PoE理论提出了机床的一般几何误差建模。考虑了线性轴和旋转轴的初始位置,并且建立了包含与定位误差的每个轴的误差扭曲。其次,通过分析几何误差补偿的开环模式开发了闭环模式。精密逆反馈模块是通过引入设计的工具姿势而形成的。反馈的输出是轴相对于轴的标称运动的理想工具姿势的经修复运动的集成误差。第三,基于CSO(鸡舍优化)提出了轴运动的自适应校正。开发了群体的初始化,基于Jacobian的公鸡的移动,以及含有一个突变的雏鸡的移动。使用集成误差相对于精度反馈中的补偿目标计算群体的适应性。最后,在一个SmartCNC500_DRTD五轴机器中心上提出了通过与开环模式误差补偿和实际切割实验进行比较的模拟,以验证闭环模式几何误差补偿的有效性。

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