Shrinkage cracking in restrained FRC members containing conventional reinforcement

Author:

Tang Porsiem1,Amin Ali1ORCID,Gilbert R. Ian2,Kaufmann Walter3ORCID

Affiliation:

1. School of Civil Engineering The University of Sydney Sydney Australia

2. School of Civil and Environmental Engineering The University of New South Wales Sydney Australia

3. Institute of Structural Engineering (IBK), ETH Zürich Zürich Switzerland

Abstract

AbstractThis paper presents a rational approach for describing the cracking behavior of fully‐ and partially restrained fiber reinforced concrete members co‐reinforced with conventional reinforcement subjected to an axial force imparted by shrinkage. The proposed analytical model extends the approach developed by Gilbert for fully restrained reinforced concrete members to account for the post‐cracking strength offered by the fibers at each of the cracks as the concrete ages and dries. The effects of partial end‐restraint are also studied to gain a clearer understanding of the mechanism of direct tension cracking caused by restrained shrinkage and the factors affecting it.

Funder

Australian Research Council

Publisher

Wiley

Subject

Mechanics of Materials,General Materials Science,Building and Construction,Civil and Structural Engineering

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