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Simulation of thermal behavior of a CNC machine tool spindle

机译:数控机床主轴的热行为模拟

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摘要

The thermal deformations of a CNC machine tool spindle are the major contributor of thermal error. It is very significant both theoretically and practically to study how to accurately simulate the thermal error of the spindle. Firstly, this paper proposes a method for computing the coefficient of convection heat transfer of the spindle surface by referencing the theory on computing the coefficient of convection heat transfer of a flat plate when air flows along it. Secondly, the temperature field and thermal errors of the spindle are dynamically simulated under the actions of thermal loads using the finite element method. Thirdly, the characteristics of heat flow and thermal deformation within the spindle are analyzed according to the simulation results. Fourthly, the selection principle of thermal key points, which are indispensable for building a robust thermal error model, is provided based on the thermal error sensitivity technology. At last, a verification experiment is implemented on a CNC turning center, and the results show the simulation results are satisfying to replace the experiment results for further studies.
机译:CNC机床主轴的热变形是造成热误差的主要因素。研究如何准确地模拟主轴的热误差在理论上和实践上都具有重要意义。首先,参考空气流动时平板表面对流传热系数的计算理论,提出了一种计算主轴表面对流传热系数的方法。其次,利用有限元方法在热载荷作用下动态模拟主轴的温度场和热误差。第三,根据仿真结果分析了主轴内部的热流和热变形特性。第四,基于热误差敏感性技术,提出了建立鲁棒的热误差模型所不可缺少的热关键点的选择原则。最后,在数控车削中心进行了验证实验,结果表明仿真结果令人满意,可以代替实验结果做进一步研究。

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