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Theoretical Analysis and Numerical Simulation of Dynamic Characteristics of Hydrostatic Guides for Heavy NC Machine Tool | IEEE Conference Publication | IEEE Xplore

Theoretical Analysis and Numerical Simulation of Dynamic Characteristics of Hydrostatic Guides for Heavy NC Machine Tool


Abstract:

Based on analysis of hydrostatic bearing with circular pocket, equations of static pressure, volvme pressure and squeezing pressure which influence dynamic characteristic...Show More

Abstract:

Based on analysis of hydrostatic bearing with circular pocket, equations of static pressure, volvme pressure and squeezing pressure which influence dynamic characteristics of hydrostatic guides with rectangle pocket have been deduced. The function and their influencing factors of the three kinds pressure mentioned above are clarified. The amplitude-phase-frequency characteristics of the hydrostatic guides system have been analyzed qualitatively and quantitatively, it is indicated that the sensitive oil volume has greater effect on the stability of the guide, the volume should be reduced as small as possible while the hydrostatic guides meet the needs of the field working situation. To increasing the oil visosity properly is also helpful to improve the dynamic performance of hydrostatic guides.
Date of Conference: 14-15 August 2010
Date Added to IEEE Xplore: 16 September 2010
ISBN Information:
Conference Location: Beidai, China
References is not available for this document.

I. Introduction

Hydrostatic guide has the advantanges of greater in loadability and dynamic stiffness, higher in accuracy and longer in lifespan, and has became the leading means for modern heavy NC(numerical control) machine tool bearings. Lots of domestic and overseas schoolars and researchers have done great investigation on hydrostatic bearings and guides. Reference [1] applies the finite element method to analyze the static and dynamic performance of hydrostatic bearing with bearing pad having different geometrical structure, the research shows that the combination of the pad with different structure and the parameter of the restrictor is vital important. Refernece [2] introduces the design of the hydrostatic slideway, studies the pressure distribution of the oil film, proposes a technique of computing and analyzing the film stiffness and guide loading capacity with FEM. Reference [3] calculates and analyzes quatitatively and quantatitively the carrying capacity and stiffness of the hydrostatic guide used in machine tool for precision-machining and super precision-machining, puts forward a means of optimazing the guide. References [4], [5], [6] discusse the influence of the oil compressibilty, oil viscosity, oil gap and bearing area on the dynamic characteristics of the guides. Reference [7] investigates experimentally the oil film dynamic stiffness of the hydrostatic bearing with different means of pressure adjusting and flow restricting, theoretical proof has been summarized for the design of the hydrostatic bearing.

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1.
S. C. Sharma and S. C. Jain, "Influence of recess shape on the performance of a capillary compensated circular thrust pad hydrostatic bearing", Tribology International, vol. 5, pp. 347-356, Dec. 2002.
2.
H. Y. Lu and S. Q. Sun, "FEA on the oil film the hydrostatic slider", Machine Tool & Hydrostatics, vol. 35, pp. 46-48, Oct. 2007.
3.
X. B. Sun and S. B. Luo, "The optimization calculation of load capacity and stiffness for contrapositive hydrostatic pocket of hydrostatic slide", Aviation Precision Manufacturing Technology, vol. 41, pp. 14-16, Jan. 2005.
4.
Z. C. Pang, "A Theoretical Research on The dynamic stability of hydrostatic bearing", Journal of Harbin Institute of Technology, vol. 80, pp. 86-98, Mar. 1982.
5.
L. M. Lu, "Dynamic properties analysis of the hybrid journal bearing in machine tools", Machine Tool & Hydrostatics, vol. 36, pp. 247-251, Apr. 2008.
6.
A. San and A. Luis, "Effects of fluid compressibility on the dynamic response of hydrostatic journal bearings", Wear, vol. 146, pp. 269-283, Feb. 1991.
7.
Z. C. Pang and T. X. Han, "Dynamic characteristic analysis experiment and application of hydrostatic bearing", Chinese Journal of Mechanical Engineering, vol. 27, pp. 49-54, Dec. 1991.
8.
[online] Available: http://24005-hyprostatik.imosnet.de/fileadmin/inhalte/pdfs/hydrostatic_guides.pdf.

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References

References is not available for this document.