Consideration of Unidirectional Cyclic Loading on Bond in Reinforced Lightweight Concrete in Standards

Author:

Gyurkó Zoltán1ORCID,Kovács Tamás2ORCID,Jakab Levente1,Nemes Rita1ORCID

Affiliation:

1. Department of Construction Materials and Technologies, Budapest University of Technology and Economics, Műegyetem rkp. 3, 1111 Budapest, Hungary

2. Department of Structural Engineering, Budapest University of Technology and Economics, Műegyetem rkp. 3, 1111 Budapest, Hungary

Abstract

The present research deals with the cyclic and standard pull-out resistance of deformed steel bars embedded in lightweight and normal concrete. This paper is a continuation of a previous paper, where the experimental results are detailed. In the present paper, the experimental results are set against the formulas and the diagrams provided by the Eurocode standard and the Model Code 1990, and then a comparative discussion is performed. In the case of cyclic loading, the damage defined by the Palmgren–Miner hypothesis, as well based on the recommendations of various national annexes of Eurocode and the Model Code, is calculated. A multiplier corresponding to the maximum load is calculated, which indicates by how much the applied load should be multiplied to obtain a damage value equal to 1.

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference26 articles.

1. Kovács, T., Gyurkó, Z., Jakab, L., and Nemes, R. (2022). Influence of Unidirectional Cyclic Loading on Bond between Steel Bars Embedded in Lightweight Aggregate Concrete. Solids, 3.

2. Kovács, T., and Nemes, R. (2015, January 1–2). Bond between strands and high-strength lightweight aggregate concrete. Proceedings of the CCC 2015 Hainburg, 11th Central European Congress on Concrete Engineering, Hainburg an der Donau, Austria.

3. Bond stress slip response of bars embedded in hybrid fibre reinforced high performance concrete;Ganesan;Constr. Build. Mater.,2014

4. Experimental study of a pull-out test of corroded steel and concrete using the acoustic emission monitoring method;Wang;Constr. Build. Mater.,2016

5. Bond characteristics of high-strength lightweight concrete;Mitchell;ACI Struct. J.,2003

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