Aerostatic spindles offer low heat generation and high rotation accuracy, which make them an ideal choice for ultra-precision drum lathe, where extremely high motional accuracy and thermal stability are required. However, the limitations such as insufficient load capacity and stiffness have restricted their permissible application range and make them not suitable for large ultra-precision machine tools including drum lathe. In order to improve the load capacity and stiffness, this paper presents a high load capacity aerostatic spindle with pocketed orifice-type restrictors. Fluent is adopted and three-dimensional simulation models of aerostatic spindle with orifice and feeding pocket are set up to analyze the load characteristics. The simulation results show that this restrictor can enhance the throttling effect of orifice and suppress the pressure drop away from the orifice. Moreover, for aerostatic journal bearing, when eccentricity ratio is in the range of 0.2–0.3 and gas supply pressure is 0.6 MPa, carrying capacity and stiffness can reach up to 9499.4 N and 2813.1 N/μm. Finally, a group of loading experiments are carried out which prove that the novel three-dimensional simulation method is feasible and accurate to calculate the load characteristics of aerostatic spindles.
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机译:空气静力主轴产生热量低且旋转精度高,这使其成为要求极高运动精度和热稳定性的超精密鼓式车床的理想选择。然而,诸如承载能力和刚度不足之类的限制限制了它们的允许应用范围,并使其不适用于包括鼓式车床的大型超精密机床。为了提高负载能力和刚度,本文提出了一种带有袋装节流型限流器的高负载空气静力主轴。采用Fluent软件,建立了带有节流孔和进料槽的空气静力主轴的三维仿真模型,分析了载荷特性。仿真结果表明,该节流阀可以增强节流孔的节流效果,抑制节流孔的压降。此外,对于空气静压轴承,当偏心比在0.2-0.3的范围内并且气体供应压力为0.6 MPa时,承载能力和刚度可以达到9499.4 N和2813.1 N /μm。最后,进行了一组载荷实验,证明了新型的三维仿真方法是可行的和准确的,以计算空气静力主轴的载荷特性。
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