Analysis of Two-layered Porous Journal Bearing using the Brinkman Model
The present study evaluates the effects of two-layered long porous journal bearing configuration on improvement in load capacity and reduction in coefficient of friction. The Brinkman model is utilized to model the flow in the porous region. A modified form of Reynolds equation is derived considerin...
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my.utp.eprints.82402017-01-19T08:22:07Z Analysis of Two-layered Porous Journal Bearing using the Brinkman Model T. , V. V. L. N. Rao A. , M. A. Rani T. , Nagarajan F. , M. Hashim TJ Mechanical engineering and machinery The present study evaluates the effects of two-layered long porous journal bearing configuration on improvement in load capacity and reduction in coefficient of friction. The Brinkman model is utilized to model the flow in the porous region. A modified form of Reynolds equation is derived considering two-layered porous region adjacent to the bearing surface. The non-dimensional pressure and shear stress expressions are obtained using the Reynolds boundary conditions. Results of non-dimensional load capacity and coefficient of friction are presented as a function of permeability and thickness of porous layers. Based on the results presented in the study, a low permeability porous layer that adheres to high permeability porous layer on bearing surface could significantly enhance load capacity and reduce coefficient of friction. 2012 Conference or Workshop Item PeerReviewed application/pdf http://eprints.utp.edu.my/8240/1/1569567083.pdf T. , V. V. L. N. Rao and A. , M. A. Rani and T. , Nagarajan and F. , M. Hashim (2012) Analysis of Two-layered Porous Journal Bearing using the Brinkman Model. In: 3rd International Conference on Production Energy and Reliability, 12-14 June, 2012, Kuala Lumpur, Malaysia. http://eprints.utp.edu.my/8240/ |
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TJ Mechanical engineering and machinery T. , V. V. L. N. Rao A. , M. A. Rani T. , Nagarajan F. , M. Hashim Analysis of Two-layered Porous Journal Bearing using the Brinkman Model |
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The present study evaluates the effects of two-layered long porous journal bearing configuration on improvement in load capacity and reduction in coefficient of friction. The Brinkman model is utilized to model the flow in the porous region. A modified form of Reynolds equation is derived considering two-layered porous region adjacent to the bearing surface. The non-dimensional pressure and shear stress expressions are obtained using the Reynolds boundary conditions. Results of non-dimensional load capacity and coefficient of friction are presented as a function of permeability and thickness of porous layers. Based on the results presented in the study, a low permeability porous layer that adheres to high permeability porous layer on bearing surface could significantly enhance load capacity and reduce coefficient of friction. |
format |
Conference or Workshop Item |
author |
T. , V. V. L. N. Rao A. , M. A. Rani T. , Nagarajan F. , M. Hashim |
author_facet |
T. , V. V. L. N. Rao A. , M. A. Rani T. , Nagarajan F. , M. Hashim |
author_sort |
T. , V. V. L. N. Rao |
title |
Analysis of Two-layered Porous Journal Bearing using the Brinkman Model |
title_short |
Analysis of Two-layered Porous Journal Bearing using the Brinkman Model |
title_full |
Analysis of Two-layered Porous Journal Bearing using the Brinkman Model |
title_fullStr |
Analysis of Two-layered Porous Journal Bearing using the Brinkman Model |
title_full_unstemmed |
Analysis of Two-layered Porous Journal Bearing using the Brinkman Model |
title_sort |
analysis of two-layered porous journal bearing using the brinkman model |
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2012 |
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http://eprints.utp.edu.my/8240/1/1569567083.pdf http://eprints.utp.edu.my/8240/ |
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1738655642870087680 |
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13.211869 |