综合考虑“电磁-热-流”多场耦合的直驱式进给轴热误差建模方法
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TH161

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国家自然科学基金面上项目(52175470)、宁波市重点研发计划项目(2021Z077)资助


Thermal error modeling method for a direct-drive feed axis under Electromagnetic-Thermal-Flow coupling
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    摘要:

    直线电机驱动的进给轴具有速度快、加速度大和响应时间短等优点,但其初级线圈发热量大易引起外部组件热变形,从 而影响进给轴的定位精度。 为解决这一问题,提出一种综合考虑“电磁-热-流”多物理场耦合下直驱进给轴的热误差建模方法。 通过分析直驱进给轴工作时的电磁场、热场和流场,建立了多物理场耦合下温度场的控制方程。 提出了一种简化的控制方程求 解法,将方程分离为产热、稳态热对流和热传导 3 个阶段再重新耦合,可求得温度场与变形场的显式解析模型。 实验结果表明, 本模型揭示了直驱进给轴热误差的形成机理,其可准确预测热误差,并能自动调整线性和非线性区间,对于提高直驱机床的运 动精度具有重要意义。

    Abstract:

    The linear motor feed drive axis has the advantages of fast velocity, large acceleration, and short response time. However, the large heat generated by the primary coil easily causes thermal deformation of the external components and affects the positioning accuracy of the feed axis. To solve the problem, a thermal error modeling method for the direct-drive feed axis considering the multi-field coupling of “electromagnetic-thermal-fluid” is proposed. The electromagnetic, thermal, and flow fields of the direct-drive feed axis are analyzed, and the control equation of the temperature field is established under multi-field coupling. A simplified method for solving the control equation is proposed, which separates the equation into three stages, including heat generation, steady-state heat convection, and heat conduction. Then, the three stages are recoupled to obtain an explicit analytical model of the temperature field and the deformation field. The experimental results show that this model reveals the mechanism of the thermal error of direct-drive feed axes. It can accurately predict the thermal error, and automatically adjust the linear and nonlinear intervals, which is of great significance for improving the motion accuracy of direct-drive machine tools.

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陈茂雷,项四通,杨建国.综合考虑“电磁-热-流”多场耦合的直驱式进给轴热误差建模方法[J].仪器仪表学报,2023,44(12):34-43

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  • 在线发布日期: 2024-02-27
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