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A Computational Fluid Dynamics-Based Study on the Effect of Bionic-Compound Recess Structures in Aerostatic Thrust Bearings

delete2024-11-07
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OA
AI
F
F. P. Yuan
H
Hang Xiu *
G
Guohua Cao
J
Jingran Zhang
B
Bingshu E. Chen
Y
Yutang Wang
周旭 cover
周旭 (Xu Zhou)
DOI:10.3390/lubricants12110385delete
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Abstract

Abstract

En 中文
To investigate the effect of recess structures on the static and dynamic performance of aerostatic thrust bearings and to explore superior designs, this study analyzes the load-capacity theoretical model, identifying that the throttling effect and pressure-holding effect of the recess are the key factors determining the bearings' static performance. Computational fluid dynamics (CFD) was used to evaluate three types of recess structures: a simple-orifice recess (SOR), a rectangular-compound recess (RCR), and a bionic-compound recess (BCR). The results indicate that the BCR structure demonstrates efficient transmission performance by reducing flow resistance and diverting air, while ensuring a reasonable pressure drop as the radial ratio alpha i changes. Additionally, the smaller air capacity of the BCR structure contributes to enhanced bearing stability, showing clear advantages in both static and dynamic performance. This research illustrates the practical application of bionics in mechanical design and provides new theoretical foundations and design strategies for improving aerostatic bearing performance.
Keywords:
aerostatic thrust bearing
bionics recess
CFD simulation
static and dynamic stability

Journal

Lubricants cover
Lubricants
IF:
2.9
Papers:
2.6K
Citations:
4.8K

Organization

C
changchun university of science & technology
Scholars:
6.5K
Papers: 4.2K
Citations: 3
C
chinese academy of sciences
Scholars:
55.3W
Papers: 44.6W
Citations: 704