Application of multi-scale modelling to some elastic, piezoelectric and electromagnetic composites


Abstract:

One way to obtain "new materials" is to mix classical ones with periodic heterogeneous microstructures. Using the homogenization method, we rigorously justify the limit models obtained (when the size of the microstructures goes to zero) for composites with very promising properties. We present here three different examples: a new bio-compatible piezoelectric/living cells material designed to improve bone regeneration, a bianisotropic electromagnetic material in a first attempt of photonic crystals modelling and a strongly heterogeneous elastic material exhibiting acoustic band-gaps. We also provide numerical simulations in order to illustrate the influence of the change of intrinsic parameters such as shape and physical characteristics of the micro structures.

Año de publicación:

2007

Keywords:

  • Electromagnetic composites
  • Strong heterogenetics
  • Elastic waves
  • homogenization
  • Piezoelectricity
  • Bio-material
  • Band gaps

Fuente:

scopusscopus

Tipo de documento:

Conference Object

Estado:

Acceso restringido

Áreas de conocimiento:

  • Material compuesto
  • Material compuesto
  • Ciencia de materiales

Áreas temáticas:

  • Métodos informáticos especiales