Efficiency of Strengthening Interventions on Stone Masonry Panels through Grout Injection and FRCM

Fiber Reinforced Cementitious Matrices (FRCM) represent a very efficient strengthening solution for the retrofitting of masonry structures. When dealing with stone masonry walls, the use of these composite materials is usually combined with grout injection, which can be crucial to ensure a monolithi...

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Bibliographic Details
Published inKey engineering materials Vol. 916; pp. 352 - 360
Main Authors Ferretti, Francesca, Mazzotti, Claudio, Incerti, Andrea
Format Journal Article
LanguageEnglish
Published Trans Tech Publications Ltd 07.04.2022
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Summary:Fiber Reinforced Cementitious Matrices (FRCM) represent a very efficient strengthening solution for the retrofitting of masonry structures. When dealing with stone masonry walls, the use of these composite materials is usually combined with grout injection, which can be crucial to ensure a monolithic behavior of the structural element. The objective of this research was the study of the shear behavior of stone masonry samples subject to grout injection and strengthened by two different FRCM systems. Nevertheless, on few samples, grout injection only was performed. Before the execution of the diagonal compression tests, sonic tests were conducted with the objective of evaluating the quality of the grout injection. The Digital Image Correlation technique was also adopted to accurately measure the thickness of the FRCM layers, which can be variable according to the irregular surface of the stone masonry. The results of the experimental campaign showed that the correct execution of the grout injection is crucial for the strengthening solution to be effective since the efficiency of the FRCM system can be reduced if a monolithic behavior of the stone masonry panels is not ensured. The application of the FRCM strengthening system could influence the failure mode, further enhancing the capacity of the samples. Comparisons between the experimental results are presented in the paper.
Bibliography:Selected peer-reviewed full text papers from the 7th International Conference on Mechanics of Masonry Structures Strengthened with Composite Materials (MuRiCo 7), November 24-26, 2021, Online
ISSN:1013-9826
1662-9795
1662-9795
DOI:10.4028/p-7i08im