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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Thermal error modeling of spindle based on the principal component analysis considering temperature-changing process
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Thermal error modeling of spindle based on the principal component analysis considering temperature-changing process

机译:基于考虑温度变化过程的主成分分析的主轴热误差建模

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摘要

Thermal error is one of the most significant factors that influence the machining accuracy. Thermal error compensation is an easy and economical way to reduce the thermal error. However, the effectiveness of compensation is highly dependent on the thermal error model. In this paper, the thermal characteristics of the spindle of a horizontal machining center are investigated and tested. The measured temperature changes during a period of time are reconstructed based on PCA and used as the new input variables rather than discrete temperatures collected at some certain moments for axial spindle thermal error modeling. By comparing with the thermal error model built on original temperature data, it finds out that the accuracy of spindle thermal error modeling and prediction are improve by adopting PCA for data processing.
机译:热误差是影响加工精度的最重要因素之一。 热误差补偿是减少热误差的简单且经济的方法。 然而,补偿的有效性高度依赖于热误差模型。 在本文中,研究了水平加工中心主轴的热特性和测试。 基于PCA重建在一段时间内的测量温度变化,并用作新的输入变量而不是在某些某些时刻收集的离散温度,用于轴向主轴热误差模拟。 通过与原始温度数据建立的热误差模型进行比较,发现主轴热误差建模和预测的准确性通过采用PCA进行数据处理来改进。

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