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使用纤维增强复合材料(FRP)和连续纤维增强水泥基复合材料(CFM)增强无筋石砌体墙的策略

Strengthening strategies for unreinforced stone masonry walls using FRP and CFM composites.

作者信息

Celik Tulin

机构信息

Department of Civil Engineering, Aksaray University, Aksaray, 68100, Turkey.

出版信息

Sci Rep. 2025 Aug 1;15(1):28167. doi: 10.1038/s41598-025-13747-0.

Abstract

Recent earthquakes have highlighted the vulnerability of unreinforced masonry (URM) walls particularly those constructed with stone to lateral loads, underscoring the need for effective strengthening against shear failure. In this context, fiber-reinforced polymer (FRP) and carbon fiber mesh (CFM) have been explored as innovative alternatives to traditional reinforcement techniques. This study investigated unreinforced stone masonry walls, a common type of URM, strengthened using FRP and CFM materials in different configurations, focusing on the walls' in-plane shear behavior under diagonal compression testing. A reference specimen, labeled URM-1, was constructed without reinforcement. FRP materials were applied to two specimens either horizontally or diagonally on both wall surfaces. Similarly, two specimens were strengthened on both surfaces using CFM, applied with either epoxy or repair mortar. Based on experimental and analytical results, the URM-5 specimen (CFM with epoxy) was identified as the most effective strengthening method. It significantly increased maximum load capacity, shear stress, ductility, and elastic stiffness. Additionally, the URM-5 specimen reduced wall fragility and maintained structural integrity during fracture.

摘要

近期地震凸显了无筋砌体(URM)墙,尤其是那些用石头建造的墙体在侧向荷载作用下的脆弱性,这突出表明需要采取有效的加固措施以防止剪切破坏。在此背景下,纤维增强聚合物(FRP)和碳纤维网格(CFM)已被视作传统加固技术的创新替代方案进行研究。本研究调查了无筋石砌体墙(一种常见的URM类型),该墙体采用不同配置的FRP和CFM材料进行加固,重点关注墙体在对角压缩试验下的平面内抗剪性能。一个未加固的参考试件,标记为URM - 1。FRP材料被水平或对角地应用于两个试件的两面墙体上。同样,两个试件的两面墙体使用CFM进行加固,并分别使用环氧树脂或修补砂浆。基于实验和分析结果,URM - 5试件(使用环氧树脂的CFM)被确定为最有效的加固方法。它显著提高了最大承载能力、剪应力、延性和弹性刚度。此外,URM - 5试件降低了墙体的脆性,并在破坏过程中保持了结构完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9df/12317087/428e14376080/41598_2025_13747_Fig1_HTML.jpg

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