温度对数控加工中心主轴加工精度的影响探究

Research on the Influence of Temperature on the Precision of Spindle Processing in CNC Machining Centers

  • 摘要: 数控加工过程难以避免地存在温度引起的主轴热变形,主轴变形给零件加工带来热误差,影响零件表面精度,本文借助红外测温仪探究数控加工中心的热误差来源,并探究无切削液和有切削液时的主轴温度场分布情况及零件的加工误差;实验结果表明,数控机床主轴转速为6000 r/min,开机后热机18 min左右可达到主轴恒温状态,切削深度为1 mm时,有切削液时加工误差分布在0.01~0.03 mm,无切削液时加工误差分布在0.03~0.06 mm,切削液可显著降低主轴热误差对机械加工精度的影响,该研究对数控加工具有实际指导意义。

     

    Abstract: The CNC machining process inevitably experiences thermal deformation of the spindle caused by temperature, which brings thermal errors to the machining of parts and affects the surface accuracy of parts. This article uses an infrared thermometer to explore the sources of thermal errors in CNC machining centers, and explores the distribution of spindle temperature field and machining errors of parts without and with cutting fluid; The experimental results show that the spindle speed of a CNC machine tool is 6000 r/min, and the spindle can reach a constant temperature state after heating up for about 18 minutes. When the cutting depth is 1 mm, the machining error distribution is 0.01~0.03 mm with cutting fluid, and 0.03~0.06 mm without cutting fluid. Cutting fluid can significantly reduce the impact of spindle thermal error on mechanical machining accuracy. This study has practical guiding significance for CNC machining.

     

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