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首页> 外文期刊>International Journal of Polymer Science >Shear Strength of Unreinforced Masonry Wall Retrofitted with Fiber Reinforced Polymer and Hybrid Sheet
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Shear Strength of Unreinforced Masonry Wall Retrofitted with Fiber Reinforced Polymer and Hybrid Sheet

机译:纤维增强聚合物和混杂板加固的非增强砌体墙的抗剪强度

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摘要

Unreinforced masonry (URM) structures represent a significant portion of existing historical structures around the world. Recent earthquakes have shown the need for seismic retrofitting for URM structures. Various types of strengthening methods have been used for URM structures. In particular, a strengthening technique using externally bonded (EB) fiber reinforced polymer (FRP) composites has attracted engineers since EB FRP materials effectively enhance the shear strength of URM walls with negligible change to cross-sectional area and weight of the walls. Research has been extensively conducted to determine characteristics of URM walls strengthened with EB FRP materials. However, it is still difficult to determine an appropriate retrofitting level due to the complexity of mechanical behavior of strengthened URM walls. In this study, in-plane behavior under lateral loading was, therefore, investigated on a full-scale nonstrengthened URM wall and URM walls retrofitted with two different FRP materials: carbon (CFRP) and hybrid (HFRP) sheets. The test results indicated that both FRP composites were effective in increasing shear strength in comparison with the control specimen. However, better performance was obtained with HFRP compared to CFRP. In addition, an equation for estimating effective strain was proposed, and the theoretical results were in good agreement with the experimental ones.
机译:非钢筋砌体(URM)结构代表了世界上现有历史结构的重要部分。最近的地震表明,需要对URM结构进行地震改造。各种类型的加固方法已用于URM结构。特别是,使用外部粘合(EB)纤维增强聚合物(FRP)复合材料的加固技术吸引了工程师,因为EB FRP材料有效地提高了URM墙的抗剪强度,而墙的截面积和重量的变化可忽略不计。已经进行了广泛的研究来确定使用EB FRP材料加强的URM墙的特性。然而,由于加强的URM墙的机械性能的复杂性,仍然难以确定适当的改造水平。因此,在这项研究中,我们在全尺寸的非加强型URM墙和改用两种不同FRP材料(碳(CFRP)和混合(HFRP)板)改建的URM墙上研究了横向荷载下的平面行为。测试结果表明,与对照样品相比,两种FRP复合材料均可有效提高剪切强度。但是,与CFRP相比,HFRP获得了更好的性能。提出了有效应变估算方程,其理论结果与实验结果吻合良好。

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