Innovative and eco-friendly solutions for the seismic retrofitting of natural stone masonry walls with textile reinforced mortar (TRM) : in- and out of-plane behavior

Volume 26;Issue 1

Λεπτομέρειες βιβλιογραφικής εγγραφής
Κύριοι συγγραφείς: Gkournelos, Panagiotis, Azdejkovic, Lazar, Triantafillou, Thanasis
Άλλοι συγγραφείς: Γκουρνέλος, Παναγιώτης
Γλώσσα:English
Έκδοση: American Society of Civil Engineers 2022
Θέματα:
Διαθέσιμο Online:http://hdl.handle.net/10889/16210
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spelling nemertes-10889-162102022-09-05T20:38:31Z Innovative and eco-friendly solutions for the seismic retrofitting of natural stone masonry walls with textile reinforced mortar (TRM) : in- and out of-plane behavior - Gkournelos, Panagiotis Azdejkovic, Lazar Triantafillou, Thanasis Γκουρνέλος, Παναγιώτης Τριανταφύλλου, Θανάσης Alkali-activate materials Textile reinforced mortar Natural fibers Seismic retrofitting Volume 26;Issue 1 The application of textile-reinforced mortars (TRM) on masonry walls constructed with natural stones was studied through a set of medium-scale experiments. Fourteen experiments were carried out in total, including in- and out-of-plane cyclic tests as well as two different strengthening configurations. The first consisted of a TRM made of a natural hydraulic lime (NHL) mortar, combined with a natural flax-fiber textile, while for the latter, a novel alkali-activated material (AAM) geopolymer mortar combined with basalt textile was employed. The use of such low-carbon footprint materials instead of conventional ones makes these systems environmentally friendlier, in line with the modern requirements for lowering CO2 emissions. Both solutions led to a substantial increase of the load-bearing capacity, up to 70% for both in- and out-of-plane experiments. Stiffness and energy dissipation characteristics of the masonry elements were improved as well. If some durability related issues of both configurations and feasibility ones of AAMs are addressed, they could provide good candidates for application in real-life structures. 2022-06-01T04:55:25Z 2022-06-01T04:55:25Z 2021-11-10 http://hdl.handle.net/10889/16210 en application/pdf American Society of Civil Engineers
institution UPatras
collection Nemertes
language English
topic Alkali-activate materials
Textile reinforced mortar
Natural fibers
Seismic retrofitting
spellingShingle Alkali-activate materials
Textile reinforced mortar
Natural fibers
Seismic retrofitting
Gkournelos, Panagiotis
Azdejkovic, Lazar
Triantafillou, Thanasis
Innovative and eco-friendly solutions for the seismic retrofitting of natural stone masonry walls with textile reinforced mortar (TRM) : in- and out of-plane behavior
description Volume 26;Issue 1
author2 Γκουρνέλος, Παναγιώτης
author_facet Γκουρνέλος, Παναγιώτης
Gkournelos, Panagiotis
Azdejkovic, Lazar
Triantafillou, Thanasis
author Gkournelos, Panagiotis
Azdejkovic, Lazar
Triantafillou, Thanasis
author_sort Gkournelos, Panagiotis
title Innovative and eco-friendly solutions for the seismic retrofitting of natural stone masonry walls with textile reinforced mortar (TRM) : in- and out of-plane behavior
title_short Innovative and eco-friendly solutions for the seismic retrofitting of natural stone masonry walls with textile reinforced mortar (TRM) : in- and out of-plane behavior
title_full Innovative and eco-friendly solutions for the seismic retrofitting of natural stone masonry walls with textile reinforced mortar (TRM) : in- and out of-plane behavior
title_fullStr Innovative and eco-friendly solutions for the seismic retrofitting of natural stone masonry walls with textile reinforced mortar (TRM) : in- and out of-plane behavior
title_full_unstemmed Innovative and eco-friendly solutions for the seismic retrofitting of natural stone masonry walls with textile reinforced mortar (TRM) : in- and out of-plane behavior
title_sort innovative and eco-friendly solutions for the seismic retrofitting of natural stone masonry walls with textile reinforced mortar (trm) : in- and out of-plane behavior
publisher American Society of Civil Engineers
publishDate 2022
url http://hdl.handle.net/10889/16210
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