期刊文献+

不同压力腔的气体静压轴承静特性的数值模拟 被引量:4

Numerical analysis of aerostatic static characteristic for bearings with the different recess
在线阅读 下载PDF
导出
摘要 气体静压轴承以其低摩擦、高精度成功应用于高精密回转运动台,其定位精度已达到纳米级水平,达到了物理极限,因此压力腔形状对气体静压轴承的影响无法忽略。通过CFD数值模拟,研究了不同压力腔形状对气体静压轴承静态性能的影响。针对矩形压力腔、圆形压力腔和锥形压力腔,研究分析了气膜内压力分布、气体质量流量和承载力等静态性能。结果表明:相同的条件下,锥形压力腔承载力较大,且压力腔内部气旋强度较弱,比较适合应用于高压重载的场合。 Aerostatic bearings are widely used in the high precise motion stage for their lower friction and high precision.As the extreme precise positioning accuracy of these equipments has reached nanometer level,and almost approaches the physical limit.So,the effect of the recess shape of aerostatic bearings cannot be neglected any longer.By CFD numerical method.the effect of the different recess shape of the bearings on the static characteristic is studied.The pressure distribution in gas film,as well as the mass flow rate and loading capacity are studied on the bearings with the rectangular recess,circular recess or tapered recess.The results show that the tapered recess of gas bearings have a more high loading capacity and lower vortex′s intensity in the recess at the same conditions.It properly applies in the situation of high pressure and load of gas bearings.
出处 《机械研究与应用》 2012年第5期16-18,21,共4页 Mechanical Research & Application
关键词 气体静压轴承 静态性能 压力腔形状 aerostatic bearings static characteristic recess shape
  • 相关文献

参考文献8

  • 1Salem EA, Shawky MA. An experimental investigation into the per- fomlance of externally pressurized rectangular air bearings [J]. Wear, 1978 (50) :237-257.
  • 2San Andre' s L,Vehhuis J. Laminar flow in a recess of a hydrostatic bearing [ J ]. ASME tribology conference, 1991 (10) : 1316.
  • 3Kassab SZ,Noureldeen EM,Shawky MA. Effects of operating condi- tions and supply hole diameter on the performance of a rectangular aerostatic bearing [ J ]. Tribology international, 1997 ( 30 ) : 533 - 545.
  • 4Helene M, Arghir M, Frene J. Numerical study of the pressure pat- tern in a two-dimensional hybrid journal bearing recess,laminar, and turbulent flow result[ J ]. ASME J Tribology,2003 ( 125 ) :283-290.
  • 5Chen Xuedong,He Xueming. The effect of the recess shape on performance analysis of the gas-lubricated bearing in optical lithography [ J ]. Tribology international ,2006 ( 39 ) : 1336-1341.
  • 6Yuntang Li, Han Ding. Influences of the geometrical parameters of aerostatie thrust bearing with pocketed orifice-type restrietor on its performance [ J ]. Tribology international ,2007 (40) : 1120-1126.
  • 7侯予,赵祥雄,陈双涛,陈纯正.小孔节流静压止推气体轴承静特性的数值分析[J].润滑与密封,2008,33(9):1-3. 被引量:28
  • 8于贺春,马文琦,王祖温,徐立芳.基于FLUENT的径向静压气体轴承的静态特性研究[J].润滑与密封,2009,34(12):77-81. 被引量:29

二级参考文献9

  • 1李锻能,张恩龙,马平.应用Marc分析气体静压轴承静态性能[J].润滑与密封,2005,30(5):47-49. 被引量:8
  • 2十合晋一.气体轴承:设计、制作与应用[M].北京:宇航出版社,1988.
  • 3Lo Cheng-Ying, Wang Cheng-Chi, Lee Yu-Han. Performance analysis of high-speed spindle aerostatic bearings[ J]. Tribology International ,2005,38:5 - 14.
  • 4Belforte G, Zaidi H, Frene J, et al. Theoretical Investigation of Fluid Inertia Effects and Stability of Self - Acting Gas Journal Bearings[ J ]. ASME, 1999,121 (10) :836 - 843.
  • 5Hashimoto H. Surface Roughness Effects in High-Speed Hydrodynamic Journal Bearings [ J]. ASME, 1997,119 ( 10 ) :776 - 780.
  • 6[1]M B Abbott,D R Basco.Computational Fluid Dynamics-An Introduction for Engineers.Longman Scientific & Technical[M].Harlow.England,1989.
  • 7[2]Jyh-Chyang Renn,Chih-Hung Hsiao.Experimental and CFD study on the massflow-rate characteristic of gas through orificetype restrictor in aerostaticbearings[J].Tribology Intemational,2004,37(2):309-315.
  • 8[5]M Haruo.Theoretical investigation of pressure deression in externally pressurized gas lubricated circular thrust bearing[J].Trans ASME J Bisic Eng,1961,83(2):201-208
  • 9钟英杰,都晋燕,张雪梅.CFD技术及在现代工业中的应用[J].浙江工学院学报,2003,31(3):284-289. 被引量:49

共引文献53

同被引文献28

  • 1刘凡,孟宪东.空气静压轴承孔型节流器的CFD研究[J].机械,2005,32(11):21-23. 被引量:9
  • 2孙雅洲,卢泽生,饶河清.基于FLUENT软件的多孔质静压轴承静态特性的仿真与实验研究[J].机床与液压,2007,35(3):170-172. 被引量:21
  • 3CHEN Xi, WU Weidong, ZHANG Hua, et al. Research Review on Free-Piston Stirling Cooler [C]// CAR Conf Proc. Hangzhou, 2007:900-905.
  • 4Kuo D T, Loc A S, Hanes M. Gas Bearing Implemen- tation of Small Cryocooler Compressor [C]// AIP Conf Proc. Colorado, 2006:687 695.
  • 5Wood J G, Cliff C, Dan M, et al. Advanced Stirling Con= vertor Update [C]// AIP Conf Proc. Mexico, 2006:640 652.
  • 6Wood J G, Carroll C, Penswick L B. Advanced 80We Stirling Convertor Development Progress [C]//AIP Conf Proc. Mexico, 2005, 746:688-698.
  • 7FENG Huicheng, HOU Yu, CHEN Rugang, et al. Do- mestic Research Advance in Hydrostatic Gas Lubrication Technology [J]. Lubrication and Seal, 2011, 36(4): 107- 113.
  • 8LIU Jing. Performance Calculation and Design of Gas Bearing for Free-Piston Stirling Engines [D]. Shanghai: (],hln ,qhln Ree.rh TntitNte. 26}4.
  • 9刘暾,刘育华,陈世杰.静压气体润滑[M].哈尔滨:哈尔滨工业大学出版社,1994.
  • 10Walker G, Senft J R. Free Piston Stirling Engines [M Berlin: Mercedes-Druck, 1985.

引证文献4

二级引证文献19

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部