Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues

Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues

Ganghoffer, J.
Pastrone, F.

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This special volume of the series Lecture Notes in Applied and Computational Mechanics is a compendium of reviewed articles presented at the 11th EUROMECH-MECAMAT conference entitled “Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues, which took place in Torino (Italy) in March 10-14, 2008, at the Museo Regional delle Scienze. This EUROMECH-MECAMAT conference was jointly organized by the Dipartimento di Matematica dell’Università di Torino, Italy and the INPL Institute (LEMTA, Nancy-Université, France). The conference covered most of the mechanical and materials aspects, grouped in the following four sessions, Fibre reinforced materials, Soft biological tissues, Generalized continua: models and materials, and Non-linear wave propagation. Latest results in mechanics of microstructured systems INDICE: Derivation of anisotropic matrix for bi-dimensional strain gradient elasticity behavior.- Analysis and optimization of interfaces for multimaterial structures.- One-dimensional microstructure dynamics.- Strain localizationin polyurethane foams. experiments and theoretical model.- A finite element approach of the behaviour of entangled and woven materials at miscoscopis scale.- Nonlinear problems of fibre reinforced.- soft shells.- A 3D stochastic model of the cell-wall interface during the rolling.- Plane waves in linear thermoelastic porous solids.- Viscoelastic modeling of brain tissue: a fractional calculus-based approach.- Modelling of mechanical behaviour of metal hollow sphere regular packings under compression loadings.- Modeling the smooth muscle tissue as a dissipative microstructured material.- On the mechanical response offiber-reinforced incompressible non-linearly elastic pipes.- Essentially nonlinear strain waves in solids with.- Complex internal structure.

  • ISBN: 978-3-642-00910-5
  • Editorial: Springer
  • Encuadernacion: Cartoné
  • Páginas: 200
  • Fecha Publicación: 01/05/2009
  • Nº Volúmenes: 1
  • Idioma: Inglés