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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A fast way to determine temperature sensor locations in thermal error compensation
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A fast way to determine temperature sensor locations in thermal error compensation

机译:一种快速的方法来确定热误差补偿中的温度传感器位置

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摘要

With the improvement of machining accuracy, problems associated with the thermal deformation of the machine tool structure and the thermal error compensation technique have received more and more attention. However, the complexity of the predictive thermal model limits the application of the thermal error compensation technique. Appropriate temperature sensor locations could contribute to a better thermal model and greatly reduce the amount of time spent. This paper introduces a fast way to determine temperature sensor locations for thermal error compensation. A theoretical analysis of the heat transfer, heat exchange, and thermal deformation of a 1-D structure, i.e., a spindle, is discussed. A simulation of the heat transfers and exchange process for the spindle is performed, considering different heat flux coefficients and heat transfer coefficients. The results from the theoretical analysis and the simulation indicate that there is an optimal sensor location point on the 1-D structure and that the heat flux and transfer coefficients have little influence on the position of the optimal sensor location on the 1-D structure. The experimental results prove that optimal temperature sensor locations do exist, regarding which the temperature change and the spindle thermal deformation also have a nearly linear relationship without a time delay. Thus, a linear model can be obtained via interpolation of the experimental data. Finally, the optimal temperature sensor location method is successfully applied for the thermal error compensation of a high-speed spindle of a horizontal machining center.
机译:随着加工精度的提高,与机床结构的热变形相关的问题和热误差补偿技术越来越受到关注。然而,预测热模型的复杂性限制了热误差补偿技术的应用。适当的温度传感器位置可以有助于更好的热模型,大大减少花费的时间。本文介绍了一种快速的方法来确定热误差补偿的温度传感器位置。讨论了1-D结构的传热,热交换和热变形的理论分析,即主轴。考虑不同的热通量系数和传热系数,执行对主轴的热传输和交换过程的模拟。来自理论分析的结果和模拟表明,在1-D结构上存在最佳传感器位置点,并且热通量和传递系数对1-D结构上的最佳传感器位置的位置几乎没有影响。实验结果证明,关于温度变化和主轴热变形也存在最佳温度传感器位置在没有时间延迟的情况下具有几乎线性关系。因此,可以通过实验数据的插值来获得线性模型。最后,最佳温度传感器定位方法成功应用于水平加工中心的高速主轴的热误差补偿。

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