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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Utilization of heat quantity to model thermal errors of machine tool spindle
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Utilization of heat quantity to model thermal errors of machine tool spindle

机译:用热量利用机床主轴模拟热误差

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摘要

Thermal error modeling of the spindle plays an important role in predicting thermal deformation and improving machining precision. Even though the modeling method using temperature as the input variable is widely applied, it is less effective due to severe loss of thermal information and pseudo-hysteresis between temperature and thermal deformation. This paper presents a novel modeling method considering heat quantity as the input variable with theoretical analysis and experimental validation. Firstly, the change of thermal state of a metal part being heated is discussed to reveal the essence of the relationship between heat, thermal deformation and temperature, and the theoretical basis of the modeling method proposed in this paper is elaborated. Subsequently, the relationship between thermal deformation and heat quantity is further studied through modeling the thermal deformations of stretching bar and bending beam using heat quantity as the independent variable, and the stretching model is verified based on finite element method. Then, the thermal error models of the spindle are developed with the heat elastic mechanics theory and the lumped heat capacity method. In succession, the parameter identification of thermal error models is carried out experimentally using the least square method. The average fitting accuracy of these models is up to 91.3%, which verifies the good accuracy and robustness of the models. In addition, these models are of good prediction capability. The proposed modeling method deepens the research of thermal errors and will help to promote the application of relevant research results in the actual production.
机译:主轴的热误差建模在预测热变形和改善加工精度方面起着重要作用。即使广泛应用了使用温度的使用温度的建模方法,由于温度和温度变形之间的热信息损失和伪滞后,它较小。本文介绍了一种小型建模方法,考虑热量作为具有理论分析和实验验证的输入变量。首先,讨论了被加热的金属部件的热状态的变化,以揭示热,热变形和温度之间的关系的本质,以及本文提出的建模方法的理论基础。随后,通过使用热量为独立变量来建模拉伸杆和弯曲梁的热变形来进一步研究热变形和热量之间的关系,并且基于有限元方法验证拉伸模型。然后,主轴的热误差模型采用散热力学理论和集体热容量法开发。连续,使用最小二乘法实验进行热误差模型的参数识别。这些型号的平均拟合精度高达91.3%,验证了模型的良好精度和鲁棒性。此外,这些模型具有良好的预测能力。建议的建模方法加深了热误差的研究,有助于促进相关研究在实际生产中的应用。

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