首页> 外文会议>ASME international manufacturing science and engineering conference;MSEC2009 >THERMAL ERROR COMPENSATION FOR A HIGH PRECISION LATHE TO IMPROVE MACHINING ACCURACY
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THERMAL ERROR COMPENSATION FOR A HIGH PRECISION LATHE TO IMPROVE MACHINING ACCURACY

机译:高精度车床的热误差补偿,提高加工精度

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High precision machines require very stable operational environment: temperature control and vibration isolation. Tight temperature control for machines usually demand high cost to operate air conditioners. Some of high precision machines require the ambient temperature changes to maintain within ±0.1 degrees. In this paper, we present a thermal error compensation scheme and experimental results for improving machining accuracy of a high precision lathe. The testbed lathe has X- and Z-axes and they are driven by linear motors and hydrostatic oil bearing. Due to the temperature changes of the ambient air and supplied oil to the hydrostatic bearing, thermal deformation is generated and measured to be as much as 200-300 nanometers. To identify the dynamic relations between the temperature changes and the thermal drift, a state-space model is used in which state variables are constructed from the input measured temperatures and the output thermal drift data. The identified model is implemented in a servo control loop and the predicted thermal error is compensated by subtracting the predicted thermal drift from the servo command. In our simulation, a thermal error of 97 nanometers RMS over 3 hours is reduced to 55 nanometers RMS. Experimental results show an average of 24% reduction in thermal drift and support the validity of our approach.
机译:高精度机器需要非常稳定的操作环境:温度控制和隔振。机器的严格温度控制通常要求高成本来运行空调。一些高精度机器要求环境温度变化保持在±0.1度以内。在本文中,我们提出了一种热误差补偿方案和实​​验结果,以提高高精度车床的加工精度。试验台车床具有X轴和Z轴,并由线性电动机和静液压油轴承驱动。由于周围空气和向静压轴承供油的温度变化,会产生热变形并测得其热变形量高达200-300纳米。为了确定温度变化和热漂移之间的动态关系,使用状态空间模型,其中根据输入的测量温度和输出的热漂移数据构造状态变量。所识别的模型在伺服控制回路中实施,并且通过从伺服命令中减去预测的热漂移来补偿预测的热误差。在我们的仿真中,在3个小时内将97纳米RMS的热误差降低到55纳米RMS。实验结果表明,热漂移平均降低了24%,并支持了我们方法的有效性。

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