New numerical solution for self-acting gas journal bearings
Author:
Publisher
Zhejiang University Press
Subject
General Engineering
Link
http://link.springer.com/content/pdf/10.1631/jzus.A0820532.pdf
Reference22 articles.
1. Ausman, J.S., 1961. An improved analytical solution for self-acting, gas-lubricated journal bearings of finite length. Journal of Basic Engineering, 83:188–194.
2. Bert, C.W., Malik, M., 1997. Transient analysis of gas-lubricated journal bearing systems by differential quadrature. Journal of Tribology, 119(1):91–99. [doi:10.1115/1.2832489]
3. Castelli, V., Pirvics, J., 1968. Review of numerical methods in gas bearing film analysis. Journal of Lubrication Technology, 90(4):777–792.
4. Cheng, H.S., Pan, C.H.T., 1965. Stability analysis of gas lubricated, self-acting, plain, cylindrical journal bearings of finite length, using Galerkin’s method. Journal of Basic Engineering, 87(1):185–192.
5. Cioc, S., Dimofte, F., Keith, T.G., Fleming, D.P., 2003. Computation of pressurized gas bearings using the CE/SE method. Tribology Transactions, 46(1):128–133. [doi:10.1080/10402000308982609]
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2. Study on Solution Algorithm of Reynolds Equation of Self-acting Gas Journal Bearings Based on Finite Difference Method;Proceedings of the 11th IFToMM International Conference on Rotordynamics;2023-08-27
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4. Performance analysis of micropolar lubricated journal bearings using GDQ method;Tribology International;2010-11
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