Failure Mode Prediction of Unreinforced Masonry (URM) Walls Retrofitted with Cementitious Textile Reinforced Mortar (TRM)

Author:

Thomoglou Athanasia K.1ORCID,Karabini Martha A.1ORCID,Achillopoulou Dimitra V.2,Rousakis Theodoros C.1ORCID,Chalioris Constantin E.1ORCID

Affiliation:

1. Department of Civil Engineering, Faculty of Engineering, Democritus University of Thrace, 67100 Xanthi, Greece

2. James Watt School of Engineering, University of Glasgow, Glasgow G12 8LT, UK

Abstract

The brittle failure of unreinforced masonry (URM) walls when subjected to in-plane loads present low shear strength remains a critical issue. The investigation presented in this paper touches on the retrofitting of URM structures with textile-reinforced mortar (TRM), which enables shifting the shear failure mode from a brittle to a pseudo-ductile mode. Despite many guidelines for applying composite materials for retrofitting and predicting the performance of strengthened structures, the application of TRM systems in masonry walls is not extensively described. A thorough retrospect of the literature is presented, containing research results relating to different masonry walls, e.g., bricks, cement, and stone blocks strengthened with TRM jackets and subjected to diagonal compression loads. The critical issue of this study is the failure mode of the retrofitted masonry walls. Available prediction models are presented, and their predictions are compared to the experimental results based on their failure modes. The novelty of this study is the more accurate failure mode prediction of reinforced masonry with TRM and also of the shear strength with the proposed model, Thomoglou et al., 2020, at an optimal level compared to existing regulations and models. The novel prediction model estimates the shear failure mode of the strengthened wall while considering the contribution of all components, e.g., block, render mortar, strengthening textile, and cementitious matrix, by modifying the expressions of the Eurocode 8 provisions. The results have shown that the proposed model presents an optimum accuracy in predicting the failure mode of all different masonry walls strengthened with various TRM jackets and could be taken into account in the regulations for reliable forecasting.

Publisher

MDPI AG

Subject

Mechanics of Materials,Biomaterials,Civil and Structural Engineering,Ceramics and Composites

Reference62 articles.

1. (2020). Guide to Design and Construction of Externally Bonded Fabric-Reinforced Cementitious Matrix (FRCM) and Steel-Reinforced Grout (SRG) Systems for Repair and Strengthening Masonry Structures. ACI 549.6R (Standard No. ACI 549-20).

2. (2018). Istruzioni per la Progettazione, l’Esecuzione ed il Controllo di Interventi di Consolidamento Statico mediante l’utilizzo di Compositi Fibrorinforzati a Matrice Inorganica (Standard No. CNR-DT 215).

3. Triantafillou, T. (2016). Textile Fibre Composites in Civil Engineering, Elsevier Inc.

4. (2013). Guide for the Design and Construction of Externally Bonded FRP Systems for Strengthening Existing Structures (Standard No. CNR-DT 200 R1/2012).

5. Strengthening of masonry structures using epoxy-bonded FRP laminates;Triantafillou;J. Compos. Constr. ASCE,1998

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