Squeeze Film Performance on curved circular and flat plate with Magnetic field and Slip-Velocity with Non-Newtonian fluid
摘要
In this article, we present an analysis of a theoretical study of MHD slip velocity on a curved circular and flat plate lubricated with couple stress fluid. The Reynolds equation was constructed by using the theory of Stokes couple stress. After deriving the mathematical expressions for dimensionless pressure, load carrying capacity and squeeze film time, the data is analysed graphically. From the result, when dealing with couple stress fluid, magnetic field and slip velocity on curved circular and flat plate bearing system performs better than when dealing with non-magnetic field and Newtonian lubricant cases. Compared to classical cases, the outcomes obtained demonstrated that the pressure, load support and response time were all improved under the effect of slip velocity, magnetic field and couple stress lubricant.