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research article

Concrete compressive strength: From material characterization to a structural value

Moccia, Francesco  
•
Yu, Qianhui  
•
Fernandez Ruiz, Miguel  
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2021
Structural Concrete

The compressive resistance of concrete in new structures is usually characterized on the basis of tests performed on concrete cylinders or cubes under relatively rapid loading conditions. Although efficient for material characterization, these tests do not acknowledge a number of phenomena potentially influencing the compressive resistance of concrete in actual structures. For this reason, when performing a structural analysis, strength reduction factors are usually considered in codes of practice modifying the uniaxial strength of material tests. In this paper, a detailed investigation of the influence of material brittleness and internal stress redistributions on the structural response of reinforced concrete members is presented. This work is based on a number of theoretical considerations and supported by the experimental results of more than 400 reinforced concrete columns tested with or without eccentricity and gathered from the literature. The results show the pertinence of considering a brittleness factor in the calculation of the structural resistance of reinforced concrete columns and compression zones of beams. The results of this work are eventually formulated in terms of code-like proposals, currently considered in the draft of the new Eurocode 2 (prEN 1992-1-1:2018).

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Type
research article
DOI
10.1002/suco.202000211
Web of Science ID

WOS:000556097700001

Author(s)
Moccia, Francesco  
•
Yu, Qianhui  
•
Fernandez Ruiz, Miguel  
•
Muttoni, Aurelio  
Date Issued

2021

Publisher

ERNST & SOHN

Published in
Structural Concrete
Volume

22

Issue

S1

Start page

E634

End page

E654

Subjects

Construction & Building Technology

•

Engineering, Civil

•

Construction & Building Technology

•

Engineering

•

concrete brittleness

•

concrete compressive strength

•

material strength

•

parabola-rectangle diagram

•

strength reduction factors

•

stress distribution

•

structural resistance

•

stress-strain behavior

•

shear-strength

•

columns

•

design

•

fields

•

steel

•

tests

•

GIS_publi

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
IBETON  
Available on Infoscience
August 20, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/170950
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