Title :
Numerical simulation on cavity type influence of multiple oil pad hydrostatic guide fluid state
Author :
Chunxi Dai ; Junpeng Shao ; Xiaoqiu Xu ; Yanqin Zhang ; Xiaodong Yu ; Bai Qin ; Bo Wu
Author_Institution :
Dept. of Mech. Power Eng., Harbin Univ. of Sci. & Technol., Harbin, China
Abstract :
Hydrostatic guide oil cavity of heavy CNC vertical lathe have many type, familiar oil cavity type have rectangle, sector, ellipse, I-shaped. Aim at research the influence of difference oil cavity type for hydrostatic guide fluid state, which established the 3-D entity model of rectangle and sector and ellipse and I-shaped hydrostatic guide interstitial fluid. The cavity type influence law of the guide fluid state is revealed via compute the four oil cavity type fluid state of hydrostatic guide based on numerical simulation. The result showed that the velocity of interstitial fluid gradually increase along the guide radial from inner to outer, and to reach the most in the outer edge. The result testified that the linear velocity of touch fluid for rotary wall surface directly proportional to guide radius. Based on an overall consideration of various factors, the interstitial fluid velocity field distribution of sector cavity hydrostatic guide is the most uniformity, next is ellipse, rectangle, and I-shaped, and the velocity vector graph of interstitial fluid testified that the oil cavity inner have reflux phenomena. The numerical result sincerity showed the interior fluid state of bearing. And the simulation result for project that oil cavity optimum structure design supplied theory proof.
Keywords :
fluid dynamics; hydrostatics; lathes; numerical analysis; oils; 3D entity model; I-shaped hydrostatic guide interstitial fluid; bearing interior fluid state; cavity type influence law; guide radial; heavy CNC vertical lathe; hydrostatic guide oil cavity; interstitial fluid velocity field distribution; linear velocity; multiple oil pad hydrostatic guide fluid state; numerical simulation; oil cavity optimum structure design; oil cavity type fluid state; reflux phenomena; rotary wall surface; sector cavity hydrostatic guide; touch fluid; velocity vector graph; Cavity resonators; Educational institutions; Equations; Films; Fluids; Mathematical model; Seals; Heavy CNC vertical Lathe; Interstitial Fluid; Oil Cavity; hydrostatic Guide;
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.2011.6023195