Long‐term deformations of concrete under cyclic‐mechanical and cyclic‐hygric exposures

Author:

Podhajecky Anna‐Lena1,Kern Bianca1,Oneschkow Nadja1,Lohaus Ludger1,Müller Harald2,Haist Michael1

Affiliation:

1. Institute of Building Materials Science Hannover Germany

2. SMP Ingenieure im Bauwesen Karlsruhe Germany

Abstract

AbstractLong‐term deformations of concrete structures are actually calculated by creep models using the mean stress level and the time‐average ambient humidity. However, temporally varying mechanical and hygric exposures which occur in practice are suspected to increase the time‐dependent strains. Nevertheless, these influences have not been sufficiently investigated so far.Therefore, the influences of cyclic‐mechanical and ‐hygric loadings, respectively, as well as their coupled influence on the long‐term deformations of concrete are systematically investigated within the scope of a joint research project funded by the German Research Foundation (DFG). In this paper, time‐dependent strains due to cyclic‐mechanical and/or ‐hygric loading of a normal strength concrete are presented in comparison to those at corresponding constant loading.The results demonstrate that the time‐dependent strains are significantly increased due to cyclic‐mechanical and ‐hygric loading compared to those due to the corresponding constant mean loading. This indicates an underestimation of strains by using the constant mean loading in creep models and may cause severe safety risks in prestressed concrete constructions. Therefore, existing models should be modified considering the influences of cyclic exposures.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference20 articles.

1. ACI Committee 209(1992)Prediction of creep shrinkage and temperature effects in concrete structures (ACI 209R-92) (Reapproved 2008). American Concrete Institute Farmington Hills.

2. Bažant Z.P. Yu Q. Hubler M.H. Křístek V. Bittnar Z.(2011)Wake up call for creep myth about size effect and black holes in safety: What to improve in fib model code draft. In: Proceedings of fib Symposium: Concrete Engineering for Excellence and Efficiency Prague Czech Republic June 8-10 2 pp.731–746.

3. Why did Palau bridge collapse?;Burgoyne C. J.;Struct Eng,2006

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