首页> 外文期刊>Journal of Composites for Construction >Experimental In-Plane Shear Capacity of Clay Brick Masonry Panels Strengthened with FRCM and FRM Composites
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Experimental In-Plane Shear Capacity of Clay Brick Masonry Panels Strengthened with FRCM and FRM Composites

机译:FRCM和FRM复合材料增强的粘土砖砌体板的平面内试验剪切能力

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摘要

Unreinforced masonry (URM) buildings, largely found in Euroasian regions, are particularly vulnerable to in-plane shear failures during seismic events due to the poor shear capacity of masonry walls. In the case of historical masonry buildings, the use of strengthening solutions with polymeric and polymer-modified matrices composites is not recommended since the breathability of the masonry could be reduced, leading to a fast and undesired degradation. In this paper, an innovative fiber-reinforced cementitious mortar (i.e., FRCM) system was used to improve the shear capacity of old-type solid clay brick masonry walls. An experimental program on 24 masonry panels subjected to diagonal compression tests was carried out. The innovative FRCM system consisted of a basalt grid embedded in an improved inorganic matrix, made of lime-based mortar reinforced with short glass fibers (i.e., Fiber-reinforced mortar, FRM). Two sets of specimens were tested, single-leaf masonry panels and double-leaf masonry panels, to investigate the typical configurations of load-bearing walls and partition walls. The effectiveness of the innovative FRCM system was investigated for both a conventional symmetric strengthening configuration and an asymmetric strengthening configuration with anchors, a solution often adopted in the case of internal/external interventions only. Furthermore, the response of masonry panels strengthened with only symmetric FRM with a slightly greater amount of short glass fibers embedded in the matrix was also investigated. The experimental outcomes outlined that panels reinforced with symmetric FRM achieved similar effectiveness in the shear strength increase to panels reinforced with symmetrical FRCM. Conversely, a reduced deformability was observed in FRM panels with respect to those strengthened with FRCM. The experimental results also allowed the quantification of the effectiveness of FRCMs in the case of asymmetric strengthening configurations. Finally, a comparison between experimental results and American Code provisions for FRCM-strengthened systems was reported.
机译:未加固的砖石建筑(URM)主要分布在欧洲地区,由于砖石墙的抗剪能力差,在地震事件中尤其容易发生面内剪切破坏。对于历史悠久的砖石建筑,不建议将增强溶液与聚合物和聚合物改性的基质复合材料一起使用,因为这会降低砖石的透气性,从而导致快速且不希望的降解。在本文中,使用了一种创新的纤维增强水泥砂浆(即FRCM)系统来提高老式实心粘土砖砌体墙的剪切能力。在经过对角压缩测试的24个砌体面板上进行了实验程序。创新的FRCM系统由嵌入改进无机基质中的玄武岩网格组成,该玄武岩网格由短玻璃纤维增​​强的石灰基砂浆制成(即纤维增强砂浆,FRM)。测试了两组标本,单叶砌体面板和双叶砌体面板,以研究承重墙和隔墙的典型构造。研究了创新的FRCM系统对传统的对称加固构造和带有锚的非对称加固构造的有效性,该解决方案仅在内部/外部干预的情况下经常采用。此外,还研究了仅用对称FRM增强的砌体面板的响应,并在基质中嵌入了少量的短玻璃纤维。实验结果表明,用对称FRM加固的面板在抗剪强度增加方面达到了与用对称FRCM加固的面板相似的效果。相反,相对于用FRCM增强的板材,在FRM板材中观察到变形能力降低。实验结果还允许量化在不对称加强结构情况下FRCM的有效性。最后,报告了实验结果与FRCM增强系统的美国法规规定之间的比较。

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