Modeling of hydrodynamic bearings with a novel boundary parameterization approach

Author:

Mota J. A.,Maldonado D. J. G.,Valério J. V.,Ritto T. G.ORCID

Funder

coordenação de aperfeiçoamento de pessoal de nível superior

conselho nacional de desenvolvimento científico e tecnológico

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,General Engineering,Aerospace Engineering,Automotive Engineering,Industrial and Manufacturing Engineering,Applied Mathematics

Reference33 articles.

1. Reynolds O (1886) IV. On the theory of lubrication and its application to Mr. Beauchamp Tower’s experiments, including an experimental determination of the viscosity of olive oil. Philos Trans R Soc 177:157–235. https://doi.org/10.1098/rstl.1886.0005

2. Frêne J, Nicolas D, Degueurce B, Berthe D, Godet M (1990) Static characteristics of journal bearings. In: Hydrodynamic lubrication bearings and thrust bearings. Tribology series, vol 33. Elsevier, Amsterdam, pp 113–141

3. Sommerfeld A (1904) Zur hydrodynamischen Theorie der Schmiermittelreibung. Z Math Phys 50:97–155

4. Swift HW (1932) The stability of lubricating films in journal bearings. Proc Inst Civ Eng 233:289–322

5. Stieber W (1933) Das Schwimmlager: hydrodynamische theorie des gleitlagers. VDI-Verlag, Berlin

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1. Application of random matrix theory combined with the singular value decomposition to journal bearings uncertainty analysis;Journal of the Brazilian Society of Mechanical Sciences and Engineering;2023-03-23

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