Published 1995 | Version v1
Book

Reinforced concrete treatment as composite material

  • 1. Universidad Politecnica de Cataluna, Barcelona (Spain). Escuela Tecnica Superior de Ingenieros de Caminos, Canales y Puertos

Description

This paper presents the general mixing theory applied to the numerical simulation of multiphase composite material behaviour as reinforced concrete materials. This theory is based on the mixture of that composite basic substances and allows to evaluate the inter-dependence behaviour between the different compounding constitutive models. If it would be necessary to consider the initial anisotropy of each compound it could be done by mean of the mapped isotropic plastic formulation. The approach is a generalization of the classic isotropic plasticity theory to be applied to either ortho tropic or anisotropic materials such as reinforced concrete. The existence of a stress and strain real anisotropic spaces, and the respective fictitious isotropic spaces are assumed, where a mapped fictitious problem is solved. Those spaces are relating by means of two fourth order transformation tensors. Both formulation are joined establishing a powerful work tool for the treatment of bulk-fiber composite materials. The induced anisotropy behaviour is take into account by each compounding constitutive formulation. (author). 24 refs., 3 figs

Part of:
Transactions of the 13. International conference on structural mechanics in reactor technology. v. 4

Additional details

Publishing Information

Publisher
Editora da Universidade Federal do Rio Grande do Sul.
Imprint Place
Porto Alegre, RS (Brazil)
ISBN
85-7025-351-6
Imprint Title
Transactions of the 13. International conference on structural mechanics in reactor technology. v. 4
Imprint Pagination
860 p.
Journal Page Range
p. 333-343.

Conference

Title
13. International conference on structural mechanics in reactor technology.
Dates
13-18 Aug 1995.
Place
Porto Alegre, RS (Brazil).

Optional Information

Notes
Imprint:Conference organized by the International Association for Structural Mechanis in Reactor Technology and Universidade Federal do Rio Grande do Sul.