The focus is set on the development and evaluation of a numerical mgodel describing the impregnation stage of a method to manufacture fibre reinforced polymer composites, namely the vacuum infusion process. Examples of items made with this process are hulls to sailing yachts and containers for the transportation industry. The impregnation is characterised by a full 3D flow in a porous medium having an anisotropic, spatial‐ and time‐dependent permeability. The numerical model has been implemented in a general and commercial computational fluid dynamic software through custom written subroutines that: couple the flow equations to the equations describing the stiffness of the fibre reinforcement; modify the momentum equations to account for the porous medium flow; remesh the computational domain in each time step to account for the deformation by pressure change. The verification of the code showed excellent agreement with analytical solutions and very good agreement with experiments. The numerical model can easily be extended to more complex geometry and to other constitutive equations for the permeability and the compressibility of the reinforcement.
Article navigation
1 May 2003
Research Article|
May 01 2003
Numerical model for vacuum infusion manufacturing of polymer composites
H. Magnus Andersson;
H. Magnus Andersson
Division of Fluid Mechanics, Luleå University of Technology, Sweden
Search for other works by this author on:
T. Staffan Lundström;
T. Staffan Lundström
Division of Fluid Mechanics, Luleå University of Technology, Sweden
Search for other works by this author on:
B. Rikard Gebart
B. Rikard Gebart
Division of Fluid Mechanics, Luleå University of Technology, Sweden
Search for other works by this author on:
Publisher: Emerald Publishing
Online ISSN: 1758-6585
Print ISSN: 0961-5539
© MCB UP Limited
2003
International Journal of Numerical Methods for Heat & Fluid Flow (2003) 13 (3): 383–394.
Citation
Magnus Andersson H, Staffan Lundström T, Rikard Gebart B (2003), "Numerical model for vacuum infusion manufacturing of polymer composites". International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 13 No. 3 pp. 383–394, doi: https://doi.org/10.1108/09615530310464553
Download citation file:
New and popular articles
Suggested Reading
Numerical analysis of the effects of tangential transpiration on the boundary layer characteristics
International Journal of Numerical Methods for Heat & Fluid Flow (December,2001)
Numerical investigation of the POD reduced-order model for fast predictions of two-phase flows in porous media
International Journal of Numerical Methods for Heat & Fluid Flow (July,2019)
Flexural behaviour of ECC slabs reinforced with high-strength stainless steel wire rope
Proceedings of the Institution of Civil Engineers - Structures and Buildings (February,2023)
Study on the eccentric compression performance of coal gasification ash concrete columns
Proceedings of the Institution of Civil Engineers - Structures and Buildings (April,2026)
Enhancing forced convection by inserting porous substrate in the core of a parallel‐plate channel
International Journal of Numerical Methods for Heat & Fluid Flow (August,2000)
Related Chapters
Unbound material
Principles of Pavement Engineering
Hydraulically-bound material
Principles of Pavement Engineering
Introduction
Thermal Insulation Materials for Building Applications: The complete guide
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
