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  4. Investigation of the bed joint reinforcement effect on the drift capacity of modern unreinforced masonry walls
 
conference paper

Investigation of the bed joint reinforcement effect on the drift capacity of modern unreinforced masonry walls

Inzunza Araya, Ernesto Andrés  
•
Saloustros, Savvas  
•
Beyer, Katrin  
Lourenço, P.B.
•
Azenha, M.
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November 11, 2024
Towards the Next Generation of Sustainable Masonry Systems: Mortars, Renders, Plasters and Other Challenges

Bed joint reinforcement significantly affects the shear capacity of masonry walls due to its effective ability to transfer shear forces through a diagonal crack, but how does this phenomenon impact its drift capacity? This paper presents an experimental study containing a series of four quasistatic cyclic tests conducted on masonry walls of same size. Two of them incorporated truss-type bed joint reinforcement, while the other two were completely unreinforced. All specimens were subjected to double bending boundary conditions to observe shear-controlled behaviour and were tested under two levels of compression load. The primary objective of this research is to determine the role of horizontal reinforcement in the seismic properties of unreinforced masonry walls focusing on the displacement capacity. The findings from this experimental study are expected to provide empirical evidence for subsequent numerical simulations and contribute to the development of analytical formulations. The results aim to enhance our understanding of the seismic response of masonry walls, ultimately informing design practices and seismic retrofitting strategies.

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Type
conference paper
DOI
10.1051/matecconf/202440305008
Author(s)
Inzunza Araya, Ernesto Andrés  

EPFL

Saloustros, Savvas  

EPFL

Beyer, Katrin  

EPFL

Editors
Lourenço, P.B.
•
Azenha, M.
•
Pereira, J.M.
Date Issued

2024-11-11

Publisher

EDP Sciences

Series title/Series vol.

MATEC Web of Conferences; 403

ISSN (of the series)

2261-236X

Article Number

05008

Subjects

Shear capacity

•

Drift capacity

•

Quasi-static cyclic tests

•

Truss-type bed joint reinforcement

•

Double bending boundary conditions

•

Compression load

•

Numerical simulations

•

Seismic response of masonry walls

•

Shear forces

•

Seismic retrofitting strategies

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
EESD  
Event nameEvent acronymEvent placeEvent date
Towards the Next Generation of Sustainable Masonry Systems: Mortars, Renders, Plasters and Other Challenges

SUBLime Conference 2024

Funchal, Madeira, Portugal

2024-11-11 - 2024-11-12

Available on Infoscience
March 14, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/247864
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