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PUBLISHING STAF With Pressure and Film Thickness Results
Contents continued on inside back cover
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air bearing analysis angle applied ASME axial behavior boundary conditions calculated carbon cavitation computed contact area contact pressure Crank Angle Degree curve deformation density dimensionless disk surface dynamic effect elastic Elastohydrodynamic entrainment experimental Figure film thickness finite element flow factors flow rate fluid friction coefficient friction force function geometry groove head/tape heat Hertzian hydrodynamic hydrodynamic lubrication increase interface journal bearings layer linear lubricant film manuscript received maximum measured Mechanical meniscus meniscus force method numerical obtained oil film parameters particle percent piston ring predicted pressure distribution problem profiles radial radius ratio region Reynolds equation rolling rotational rotor rough surface shaft shear shear stress shown in Fig simulation slider solution spacing speed squeeze film stator stiction stiffness stress surface roughness tape temperature rise texture thermal tion torque Trans Tribol Tribology Division variation velocity viscosity wear wet clutch wheel workpiece