Stability Characteristics of Misaligned Journal Bearing
A parametric study is performed to illustrate the effects of angular misalignment on the nondimensional load capacity, nondimensional stiffness and damping coefficients, threshold speed and critical whirl ratio of journal bearing. Film thickness and pressure are perturbed with respect to the revis...
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my.utp.eprints.89532017-01-19T08:22:07Z Stability Characteristics of Misaligned Journal Bearing T. , V. V. L. N. Rao TJ Mechanical engineering and machinery A parametric study is performed to illustrate the effects of angular misalignment on the nondimensional load capacity, nondimensional stiffness and damping coefficients, threshold speed and critical whirl ratio of journal bearing. Film thickness and pressure are perturbed with respect to the revised coordinate system derived from the combination of journal radial displacements and angular rotations. The dynamic Reynolds equation is solved using Finite Difference Method using Lund and Thomsen’s[1] infinitesimal perturbation method. Linearized eight stiffness and damping coefficients are derived as force coefficients from combined linear and angular perturbations, while moment coefficients are neglected in the analysis. The journal bearing with angular misalignment in either vertical or horizontal directions operates at higher threshold speed and hence has higher stability than aligned bearing. 2012 Article PeerReviewed application/pdf http://eprints.utp.edu.my/8953/1/Rao_AVE_2012_V11N4-3.pdf T. , V. V. L. N. Rao (2012) Stability Characteristics of Misaligned Journal Bearing. Advances in Vibration Engineering, 11 (4). pp. 361-370. http://eprints.utp.edu.my/8953/ |
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TJ Mechanical engineering and machinery T. , V. V. L. N. Rao Stability Characteristics of Misaligned Journal Bearing |
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A parametric study is performed to illustrate the effects of angular misalignment on the nondimensional
load capacity, nondimensional stiffness and damping coefficients, threshold speed and critical whirl
ratio of journal bearing. Film thickness and pressure are perturbed with respect to the revised coordinate
system derived from the combination of journal radial displacements and angular rotations. The dynamic
Reynolds equation is solved using Finite Difference Method using Lund and Thomsen’s[1] infinitesimal
perturbation method. Linearized eight stiffness and damping coefficients are derived as force coefficients
from combined linear and angular perturbations, while moment coefficients are neglected in the analysis.
The journal bearing with angular misalignment in either vertical or horizontal directions operates at
higher threshold speed and hence has higher stability than aligned bearing. |
format |
Article |
author |
T. , V. V. L. N. Rao |
author_facet |
T. , V. V. L. N. Rao |
author_sort |
T. , V. V. L. N. Rao |
title |
Stability Characteristics of Misaligned Journal Bearing |
title_short |
Stability Characteristics of Misaligned Journal Bearing |
title_full |
Stability Characteristics of Misaligned Journal Bearing |
title_fullStr |
Stability Characteristics of Misaligned Journal Bearing |
title_full_unstemmed |
Stability Characteristics of Misaligned Journal Bearing |
title_sort |
stability characteristics of misaligned journal bearing |
publishDate |
2012 |
url |
http://eprints.utp.edu.my/8953/1/Rao_AVE_2012_V11N4-3.pdf http://eprints.utp.edu.my/8953/ |
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1738655693741752320 |
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13.211869 |