Published December 2018 | Version v1
Journal article

Impregnation of Composite Materials: a Numerical Study

  • 1. Institute of Technology Antoine de Saint Exupéry (France)
  • 2. Bordeaux INP, Université de Bordeaux, Arts et Métiers ParisTech, I2M – CNRS (France)

Description

Oxide ceramic matrix composites are currently being developed for aerospace applications such as the exhaust, where the parts are subject to moderately high temperatures (≈ 700 C) and oxidation. These composite materials are normally formed by, among other steps, impregnating a ceramic fabric with a slurry of ceramic particles. This impregnation process can be complex, with voids possibly forming in the fabric depending on the process parameters and material properties. Unwanted voids or macroporosity within the fabric can decrease the mechanical properties of the parts. In order to design an efficient manufacturing process able to impregnate the fabric well, numerical simulations may be used to design the process as well as the slurry. In this context, a tool is created for modeling different processes. Thétis, which solves the Navier-Stokes-Darcy-Brinkman equation using finite volumes, is expanded to take into account capillary pressures on the mesoscale. This formulation allows for more representativity than for Darcy's law (homogeneous preform) simulations while avoiding the prohibitive simulation times of a full discretization for the composing fibers at the representative elementary volume scale. The resulting tool is first used to investigate the effect of varying the slurry parameters on impregnation evolution. Two different processes, open bath impregnation and wet lay-up, are then studied with emphasis on varying their input parameters (e.g. inlet velocity).

Additional details

Identifiers

Publishing Information

Journal Title
Applied Composite Materials
Journal Volume
25
Journal Issue
6
Journal Page Range
p. 1287-1305
ISSN
0929-189X

Optional Information

Copyright
Copyright (c) 2017 The Author(s)