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1
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85013126066
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Squeeze Film Behavior of Porous Annular Disks
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Wu, H., “Squeeze Film Behavior of Porous Annular Disks,” ASME Jour. Lubr. Tech., 92, pp 593-596. (1970).
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(1970)
ASME Jour. Lubr. Tech
, vol.92
, pp. 593-596
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Wu, H.1
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2
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0015203249
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The Squeeze Film between Rotating Porous Annular Disks
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Wu, H., “The Squeeze Film between Rotating Porous Annular Disks,” Wear 18. pp 461-470.(1971).
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(1971)
Wear
, vol.18
, pp. 461-470
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Wu, H.1
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3
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17144450834
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An Analysis of the Engagement of Wet-Clutch Plates
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Wu, H., “An Analysis of the Engagement of Wet-Clutch Plates,” Wear. 24, pp 23-33,(1973).
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(1973)
Wear
, vol.24
, pp. 23-33
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Wu, H.1
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4
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0016962151
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Effect of Velocity Slip on the Squeeze Film between Rotating Porous Annular Discs
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Prakash, J. and Vij, S. K., “Effect of Velocity Slip on the Squeeze Film between Rotating Porous Annular Discs,” Wear, 38. pp 73-85. (1976).
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(1976)
Wear
, vol.38
, pp. 73-85
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Prakash, J.1
Vij, S.K.2
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5
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0016047853
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Squeeze-Film Behavior in Porous Circular Disks
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Murti, P. R. K., “Squeeze-Film Behavior in Porous Circular Disks,” ASME Jour. Lubr. Tech., pp 206-209. (1974).
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(1974)
ASME Jour. Lubr. Tech
, pp. 206-209
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Murti, P.R.K.1
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6
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0015360294
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A Mathematical Analogue for Determination of Porous Annular Disk Squeeze Film Behavior Including the Fluid Inertia Effect
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Ting, L. L., “A Mathematical Analogue for Determination of Porous Annular Disk Squeeze Film Behavior Including the Fluid Inertia Effect,” ASME Jour Basic Eng., pp 417-421,(1972).
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(1972)
ASME Jour Basic Eng.
, pp. 417-421
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Ting, L.L.1
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7
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0016557036
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Engagement Behavior of Lubricated Rotating Porous Annular Disks: Pan I-Squeeze Film Phase-Surface Roughness and Elastic Deformation Effects
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Ting, L. L., “Engagement Behavior of Lubricated Rotating Porous Annular Disks: Pan I-Squeeze Film Phase-Surface Roughness and Elastic Deformation Effects,” Wear, 34, pp 159-172. (1975).
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(1975)
Wear
, vol.34
, pp. 159-172
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Ting, L.L.1
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8
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0017955216
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A Review of Porous Squeeze Films
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Wu, H., “A Review of Porous Squeeze Films,” Wear, 47, pp 371-385, (1978).
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(1978)
Wear
, vol.47
, pp. 371-385
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Wu, H.1
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9
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0028133725
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Numerical Simulation of Engagement of Paper Based Wet Clutch Facing
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Natsumeda, S. and Myoshi, T., “Numerical Simulation of Engagement of Paper Based Wet Clutch Facing,” ASME Jour. Trib., 116, pp 232-237, (1994).
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(1994)
ASME Jour. Trib
, vol.116
, pp. 232-237
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Natsumeda, S.1
Myoshi, T.2
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11
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0005850056
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Ph.D. Thesis. Dept, of Mechanical Engineering, The University of Tokyo, Japan
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Razzaque, M. M., “Viscous Torque Behavior of Grooved Wet Clutches,” Ph.D. Thesis. Dept, of Mechanical Engineering, The University of Tokyo, Japan, (1998).
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(1998)
Viscous Torque Behavior of Grooved Wet Clutches
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Razzaque, M.M.1
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12
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0005849441
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Effect of Grooves on Wet Clutch Engagement Behavior
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Razzaque, M. M. and Kato, T., “Effect of Grooves on Wet Clutch Engagement Behavior,” in Proc. NORDTRIB 98, Ebeltoft, Denmark, pp 649-656. (1998).
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(1998)
Proc. NORDTRIB 98, Ebeltoft, Denmark
, pp. 649-656
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Razzaque, M.M.1
Kato, T.2
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13
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0033066078
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Effects of Groove Orientation on Hydrodynamic Behavior of Wet Clutch Coolant Films
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Razzaque, M. M. and Kato, T., “Effects of Groove Orientation on Hydrodynamic Behavior of Wet Clutch Coolant Films,” ASME. Jour. Trib., 121, pp 56-61,(1999).
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(1999)
ASME. Jour. Trib
, vol.121
, pp. 56-61
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Razzaque, M.M.1
Kato, T.2
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14
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0000652701
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Finite Element Modeling of Engagement of Rough and Grooved Wet Clutches
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Berger, E. J., Sadeghi, F. and Krousgrill, C. M., “Finite Element Modeling of Engagement of Rough and Grooved Wet Clutches,” ASME Jour. Trib., 118. pp 137-146.(1996).
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(1996)
ASME Jour. Trib
, vol.118
, pp. 137-146
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Berger, E.J.1
Sadeghi, F.2
Krousgrill, C.M.3
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15
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0033372364
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Thermal Characteristics of a Wet Clutch
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Jang, J. Y. and Khonsari, M. M., “Thermal Characteristics of a Wet Clutch,” ASME Jour. Trib., 121. pp 610-617. (1999)
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(1999)
ASME Jour. Trib
, vol.121
, pp. 610-617
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Jang, J.Y.1
Khonsari, M.M.2
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16
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0033213281
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Effects of Groove on the Behavior of a Squeeze Film between a Grooved and a Plain Rotating Annular Disk
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Razzaque, M. M. and Kaio, T., “Effects of Groove on the Behavior of a Squeeze Film between a Grooved and a Plain Rotating Annular Disk,” ASME Jour. Trib., 121. pp 808-815. (1999).
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(1999)
ASME Jour. Trib
, vol.121
, pp. 808-815
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Razzaque, M.M.1
Kaio, T.2
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17
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85004613252
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The Sialic and Dynamic Characteristics of the Spiral-Grooved Thrust Bearing
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Malanoski, S. B. and Pan, C. H. T., “The Sialic and Dynamic Characteristics of the Spiral-Grooved Thrust Bearing,” ASME Jour. Basic Eng., 87. pp 547-558. (1965).
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(1965)
ASME Jour. Basic Eng
, vol.87
, pp. 547-558
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Malanoski, S.B.1
Pan, C.H.2
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18
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85007690878
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Characteristics of Herringbone-Grooved. Gas-Lubricated Journal Bearings
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Vohr, J. H. and Chow, C. Y., “Characteristics of Herringbone-Grooved. Gas-Lubricated Journal Bearings,” ASME Jour. Basic Eng., 87. pp 568-578. (1965).
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(1965)
ASME Jour. Basic Eng
, vol.87
, pp. 568-578
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Vohr, J.H.1
Chow, C.Y.2
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19
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0015284909
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Formulation of a Generalized Narrow Groove Theory for Spiral Grooved Viscous Pumps
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Hsing, F. C., “Formulation of a Generalized Narrow Groove Theory for Spiral Grooved Viscous Pumps,” ASME Jour. Lubr. Tech., 94. 1. pp 81-85. (1972).
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(1972)
ASME Jour. Lubr. Tech
, vol.94
, Issue.1
, pp. 81-85
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Hsing, F.C.1
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20
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0026899329
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On Extending the Narrow Spiral-Groovc Theory to Configurations of Interest in Seals
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Constantinescu, V. N. and Galetuse, S., “On Extending the Narrow Spiral-Groovc Theory to Configurations of Interest in Seals,” ASME Jour. Trib., 114. pp 563-566.(1992).
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(1992)
ASME Jour. Trib
, vol.114
, pp. 563-566
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Constantinescu, V.N.1
Galetuse, S.2
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