Pressure and shear flow singularities: Fluid splitting and printing nip hydrodynamics

Author:

Rieckmann M. E.1ORCID,Brumm P.2ORCID,Sauer H. M.2ORCID,Dörsam E.2ORCID,Kummer F.1ORCID

Affiliation:

1. Chair of Fluid Dynamics, Department of Mechanical Engineering, TU Darmstadt 1 , 64287 Darmstadt, Germany

2. Institute of Printing Science and Technology, Department of Mechanical Engineering, TU Darmstadt 2 , 64289 Darmstadt, Germany

Abstract

A numerical simulation of the fluid flow in the gravure printing nip, based on a discontinuous Galerkin algorithm, is used to study the fluid-splitting process and the transition between point and lamella splitting. We study the pressure and shear singularities at the contact point of the printing cylinder and substrate as a function of the variable microscopic residual gap and variations of the printing fluid quantities introduced to the nip. As the hydrodynamic boundary value problem is ill-defined by the nip singularity, we enhance the simulation using renormalization group and algebraic scaling techniques in order to obtain a numerically stable and physically meaningful prediction. Our simulations are compared to analytical results from lubrication theory and to experimental observations on a gravure press.

Funder

Deutsche Forschungsgemeinschaft

Publisher

AIP Publishing

Subject

Condensed Matter Physics,Fluid Flow and Transfer Processes,Mechanics of Materials,Computational Mechanics,Mechanical Engineering

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