Oil Film Temperature Field Simulation of Hydrostatic Center Rack of Heavy-Duty Horizontal Boring Lathe

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Abstract:

In order to research the temperature distribution law of the interstitial oil film on the hydrostatic center rack, the interstitial oil film on the hydrostatic center rack is taken as the research subject. Firstly, a three-dimensional model of the interstitial oil film is built by UG software. Secondly, the constructed three-dimensional model is meshed by ICEM CFD software. Lastly, the constructed finite element model is simulated using the finite element analysis software ANSYS CFX. The results of the simulation show that the temperature near the oil seal edge is higher than oil chamber and oil-returning slot. If the shaft parts rotate clockwise, the temperature of the right high-temperature zone is higher than the left. The research results provide a theoretical basis for the research on the thermal distortion of the middle pillow.

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1578-1581

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July 2011

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© 2011 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yanqin Zhang, Junpeng Shao, Shiqian Ni, Numerical Simulation of Temperature Field in Large Size Hydrostatic Bearings, China Mechanical Engineering, 2006, pp.563-565.

Google Scholar

[2] Jinliang Zu, The application of hydrostatic center rack on machining operation, Metalworking, 2009, Vol. 21, pp.45-46.

Google Scholar

[3] Junpeng Shao, Chao yin, Bo Wu, Zhongwen Wang, Zhi Huang, Chong Li, Research on Velocity Field and Dynamic Pressure Effect of Oil Film of Hydrostatic Center Rack, Advanced Materials Research, 2010, Vols. 129-131, pp.1119-1123.

DOI: 10.4028/www.scientific.net/amr.129-131.1119

Google Scholar

[4] Zhiming Wang, Haiqing Cui, Guangyu He, Fluid Mechanics, Petroleum Industry Press, 2006, pp.52-63.

Google Scholar

[5] Junpeng Shao, Zhi Huang, Zhongwen Wang, Chao Yin, Yanqin Zhang, Flow Field Simulation on the Hydrostatic Bearing of Heavy-duty Horizontal Boring Lathe, Lubrication Engineering, July 2010, Vol. 37, pp.55-57.

Google Scholar