Master'sOpen Access

Experimental investigation of infill walls strengthened with fiber-reinforced composites

2025
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Advisor: Prof. Dr. Ali Demir ; Dr. Öğr. Üyesi Taha Yasin Altıok

Abstract (EN)

Infill walls are often excluded from structural design; however, they play a decisive role in the seismic performance of buildings. In this study, four full-scale brick masonry infill wall specimens constructed within a single-bay steel frame were tested under cyclic lateral loading. Among the specimens, one was bare brick (REF-2), another was a conventionally plastered wall with cement-based mortar (REF), while the remaining two were strengthened using Fabric-Reinforced Cementitious Matrix (FRCM) and finished with different plaster types: lime-based plaster (FRCM-2) and cement-based repair mortar (CBSM-FRCM). The experimental results demonstrated that both plaster type and FRCM strengthening significantly affect structural behavior. The CBSM-FRCM specimen exhibited the highest lateral load-bearing capacity, stiffness, and energy dissipation, with substantially enhanced performance in both push and pull directions compared to the reference specimens. In contrast, the FRCM-2 specimen achieved the highest ductility, highlighting its superior deformation capacity. The conventionally plastered REF specimen provided noticeable improvement over the bare REF-2 wall but remained inferior to the strengthened systems in terms of capacity and deformation. Overall, cement-based plasters provided superior adhesion and compressive strength, thereby enhancing load transfer and energy dissipation, whereas lime-based plaster improved ductility and deformation capacity. These findings underline the critical influence of plaster type and FRCM application in improving the seismic performance of masonry infill walls.

Author

Eyüp Serhan Güven

How to Cite

Eyüp Serhan Güven (Master Thesis). Experimental investigation of infill walls strengthened with fiber-reinforced composites, 2025, Manisa Celal Bayar University.

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