Simulation study on the performance of gap oil film lubrication under extreme working conditions of micro‐textured hydrostatic support

Author:

Feng Yanan1ORCID,Yu Xiaodong1,Jiang Hui2,Dai Ruichun3,Jia Wentao3,Wang Junfeng3,Jiao Jianhua2

Affiliation:

1. Key Laboratory of Advanced Manufacturing and Intelligent Technology, Ministry of Education Harbin University of Science and Technology Harbin China

2. Qiqihar Heavy CNC Equipment Corp. LTD. Qiqihar China

3. Qiqihar First Machine Tool Factory Corp. LTD. Qiqihar China

Abstract

AbstractBased on the theory of fluid mechanics, the lubrication performance of micro‐textured hydrostatic bearings is derived. Under extreme operating conditions, the lubrication performance of clearance oil film without micro‐texture and with rectangular and triangular micro‐textures added to the oil sealing edge is simulated, and the experimental verification of the lubrication performance of the double rectangular cavity without micro‐texture is conducted. The results show that regardless of whether micro‐texture is added or not, the oil film pressure is distributed in a stepped shape, and the highest temperature of the oil film occurs at the intersection of the oil sealing edges on the outside of the double rectangular cavity. When the maximum depth of triangular micro‐texture is 1.5 mm and the dimension of a segment is 1 mm, triangular micro‐texture with an obtuse angle of 103° has the best comprehensive lubrication performance, but its oil film bearing capacity still does not exceed that of rectangular micro‐texture.

Publisher

Wiley

Reference27 articles.

1. Numerical simulation and experimental verification of the stiffness and stability of thrust pad aerostatic bearings;Cui HI;Chin J Mech Eng,2018

2. Tribological Performance of Bearing Steel with Bi-triangular and Circular Textures under Lubricated Sliding

3. Research on the effect of nano‐solid lubricating particles on the tribological properties of micro‐textured surfaces;Hua XJ;Machinery,2019

4. Research on solid lubrication properties of micro‐texturedGCr15 steel;Hua XJ;Lubr Eng,2020

5. Performance evaluation of different types of micro-textured hydrostatic spindles under the main influencing factors

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