Title :
Research on influence of oil cavity shapes on carrying capacity of heavy hydrostatic bearing
Author :
Yanqin Zhang ; Chunxi Dai ; Yunfei Wang ; Bo Wu ; Xiaodong Yu ; Bai Qin
Author_Institution :
Qiqihar Heavy CNC Equip. Corp. Ltd., Qiqihar, China
Abstract :
Carrying capacity of heavy hydrostatic bearing is one of important indicators reflecting its performance. Aiming at the problem of influence of oil cavity shapes on carrying capacity of heavy hydrostatic bearing, use finite volume method to simulate gap film pressure field of heavy hydrostatic bearing with rectangular-shaped, sector-shaped, oval-shaped, and I-shaped cavity and study pressure field distribution law of four cavity shapes on the conditions of the same rotating speed, cavity depth and oil cavity area, then optimize oil cavity structure. Results show that pressure field distribution law of four cavity shapes is basically identical, but four kinds of cavities possess different carrying capacity which is respectively arranged as oval-shaped, sector shaped rectangular-shaped, and I-shaped cavity according to size. Simulation results and theoretical analysis are proved to have consistency, which provide valuable theoretical basis for selecting cavity shapes for heavy hydrostatic bearing in practical productions.
Keywords :
finite volume methods; hydrostatics; machine bearings; carrying capacity; finite volume method; gap film pressure field; heavy hydrostatic bearing; oil cavity shapes; pressure field distribution; theoretical analysis; Cavity resonators; Equations; Films; Mathematical model; Shape; Viscosity; carrying capacity; finite volume method; heavy hydrostatic bearing; pressure field;
Conference_Titel :
Electronic and Mechanical Engineering and Information Technology (EMEIT), 2011 International Conference on
Conference_Location :
Harbin, Heilongjiang, China
Print_ISBN :
978-1-61284-087-1
DOI :
10.1109/EMEIT.2011.6023194