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首页> 外文期刊>Journal of Composites for Construction >In-Plane Shear Strength Improvement of Hollow Concrete Masonry Panels Using a Fabric-Reinforced Cementitious Matrix
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In-Plane Shear Strength Improvement of Hollow Concrete Masonry Panels Using a Fabric-Reinforced Cementitious Matrix

机译:纤维增强水泥基增强空心混凝土砌体板的平面抗剪强度

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摘要

An overview of an experimental program investigating the effectiveness of fabric-reinforced cementitious matrix (FRCM) to limit the damage in shear critical unreinforced hollow concrete masonry assemblages is presented. The experimental program involved the mechanical testing of the constituent materials and the diagonal shear testing of 16 masonry panels constructed to replicate the masonry types prevalent in nonductile reinforced concrete frames with masonry infill buildings. The test variables investigated included the masonry type, the FRCM fabric material, and the number of FRCM layers. Three FRCM fabrics (basalt, glass, and carbon) and two masonry types (200 and 150mm thick) were used. The FRCM strengthening changed the failure mode from brittle bed joint sliding to a more gradual distributed diagonal cracking and/or toe crushing, with a shear strength increase of 104-258% for 150-mm thick masonry panels and 69-156% for 200-mm thick masonry panels. A substantial increase in the ductility and energy dissipation capacity was also noted for the FRCM-strengthened masonry panels. The shear stress-strain behavior, deformation capacity, pseudoductility, energy dissipation, and stiffness characteristics were analyzed and discussed. The behavior of the FRCM-strengthened panels was predicted using analytical equations, and the predicted values were compared to the experimental results.
机译:介绍了一个实验程序的概述,该程序研究了织物增强水泥基体(FRCM)的作用,以限制无剪切力的非增强空心混凝土砌筑组合件中的损坏。实验程序包括对组成材料的机械测试和对16个砌体面板的斜向剪切测试,这些面板被构造为复制带有砌体填充建筑物的非延性钢筋混凝土框架中普遍存在的砌体类型。研究的测试变量包括砖石类型,FRCM织物材料和FRCM层数。使用了三种FRCM织物(玄武岩,玻璃和碳纤维)和两种砖石类型(200和150mm厚)。 FRCM的加强将破坏模式从脆性床缝滑动变为逐渐分布的对角裂纹和/或脚趾挤压,对于150毫米厚的砖石面板,抗剪强度提高了104-258%,对于200-毫米厚的砖石面板。 FRCM加固的砌体面板的延展性和能量消散能力也得到了大幅提高。分析并讨论了剪应力-应变行为,变形能力,假延性,能量耗散和刚度特性。 FRCM加强面板的行为使用解析方程进行了预测,并将预测值与实验结果进行了比较。

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