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首页> 外文期刊>Journal of Building Pathology and Rehabilitation >Quasi-static cyclic in-plane testing of masonry walls strengthened with a single-sided fabric-reinforced cementitious matrix overlay and flexible anchorage
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Quasi-static cyclic in-plane testing of masonry walls strengthened with a single-sided fabric-reinforced cementitious matrix overlay and flexible anchorage

机译:单面织物增强水泥基覆盖层和柔性锚固层增强了砌体墙的准静态循环平面内测试

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An experimental program was undertaken to assess the effectiveness of a new retrofit concept to improve the in-plane behavior of unreinforced clay brick walls by means of full-scale static-cyclic in-plane tests. The proposed seismic retrofit system combines two standalone retrofit measures for in-plane and out-of-plane strengthening of masonry walls. The in-plane reinforcement consists of a single-sided carbon Fabric-Reinforced Cementitious Matrix (FRCM) overlay, and anchors embedded with a flexible adhesive in the masonry. The out-of-plane reinforcement, which consisted of deep mounted Carbon Fibre Reinforced Polymer (CFRP) strips embedded with a flexible adhesive in the masonry, was included in the study to investigate the possible degrading effects of the deep groove on the in-plane behavior. A total of nine full-scale reinforced masonry walls with three different geometries were tested under three different axial loads. None of the specimens showed shear failure at both the reinforced and the as-built side. Cracking predominantly occurred at the interface between the bottommost bed-joint and the foundation beam. The out-of-plane reinforcement did not affect the in-plane strength, as no vertical shear cracks occurred. Moreover, it was found that the anchors increased both the rocking and sliding resistance of the walls. An analytical model was proposed covering the rocking and sliding resistance of the reinforced walls, providing a good approximation of the experimentally obtained in-plane strengths. Additional pull-out experiments showed that the testing scenario where the tensile forces in the anchor were transferred to CFRP strip, provided a good approximation of the analytically determined anchorage strength.
机译:进行了一个实验程序,以评估新改造概念通过全面静态循环平面测试改善无筋粘土砖墙面行为的有效性。拟议的地震改造系统结合了两种独立的改造措施,可对砌体墙进行面内和面外加固。平面内钢筋由单面碳纤维增强水泥基层(FRCM)覆盖层和锚固件组成,锚固件中嵌有柔性粘合剂。这项研究包括平面外加固,该加固由深筑的碳纤维增强聚合物(CFRP)条带和砌筑物中嵌入的柔性胶粘剂组成,用于研究深槽对平面内的可能降解作用行为。在三个不同的轴向载荷下,总共测试了九个具有三种不同几何形状的全尺寸增强砌体墙。没有一个样品在钢筋和竣工面都表现出剪切破坏。裂缝主要发生在最底床接头与基础梁之间的界面处。平面外钢筋不影响平面内强度,因为没有发生垂直剪切裂纹。此外,发现锚固件增加了壁的摇摆和滑动阻力。提出了一个分析模型,该模型涵盖了钢筋混凝土墙的摇摆和滑动阻力,可以很好地近似于实验获得的面内强度。额外的拉拔实验表明,将锚固中的拉力转移到CFRP条带上的测试方案可以很好地近似于分析确定的锚固强度。

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