Study of Slip Effects in Reverse Roll Coating Process Using Non-Isothermal Couple Stress Fluid - Publication - Bridge of Knowledge

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Study of Slip Effects in Reverse Roll Coating Process Using Non-Isothermal Couple Stress Fluid

Abstract

The non-isothermal couple stress fluid inside a reverse roll coating geometry is considered. The slip condition is considered at the surfaces of the rolls. To develop the flow equations, the mathematical modelling is performed using conservation of momentum, mass, and energy. The LAT (lubrication approximation theory) is employed to simplify the equations. The closed form solution for velocity, temperature, and pressure gradient is obtained. While the pressure and flow rate are obtained numerically. The impact of involved parameters on important physical quantities such as temperature, pressure, and pressure gradient are elaborated through graphs and in tabular form. The pressure and pressure gradient decreases for variation of the couple stress parameter and velocity ratio parameter K. While the variation of the slip parameter increases the pressure and pressure gradient inside the flow geometry. Additionally, flow rate decreases for the variation of the slip parameter as fluid starts moving rapidly along the roller surface. The most important physical quantity which is responsible for maintaining the quality of the coating and thickness is flow rate. For variation of both the couple stress parameter and the slip parameter, the flow rate decreases compared to the Newtonian case, consequently the coating thickness decreases for the variation of the discussed parameter

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DOI:
Digital Object Identifier (open in new tab) 10.3390/coatings11101249
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Details

Category:
Articles
Type:
artykuły w czasopismach
Published in:
Coatings no. 11,
ISSN: 2079-6412
Language:
English
Publication year:
2021
Bibliographic description:
Shahzad H., Wang X., Hafeez M. B., Shah Z., Alsheri M. A.: Study of Slip Effects in Reverse Roll Coating Process Using Non-Isothermal Couple Stress Fluid// Coatings -Vol. 11,iss. 10 (2021), s.1249-
DOI:
Digital Object Identifier (open in new tab) 10.3390/coatings11101249
Verified by:
Gdańsk University of Technology

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