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BEHAVIOR OF UNREINFORCED MASONRY WALLS (URM) STRENGTHENED WITH FRP COMPOSITE MATERIALS

机译:FRP复合材料加固的未加强砌体墙(URM)的行为

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Several traditional techniques have been used to increase the strength, stiffness and ductility of UMW. Most of the methods prove effectiveness but they add considerable mass and thickness to the original structure affect the aesthetics, and are labor intensive. A better and a more effective way to repair/strengthen the UMW is through using fiber reinforced polymer (FRP) compose lammates Epoxy bonding a thin laminate of composite materials to the exterior surfaces of these walls will force the individual brick elements to act as an integrated system. This paper prests thee results of the work earned out to investigate the capability of glass FRP (GFRP) laminates in sttengthening the masonry walls when subjected to out-of-plane and in-plane flexural and shear stresses. Six masonry walls were tested after the composite retrofit. Two of the walls (flexure specimens) were loaded with out-of-plane bending, and four of the walls were subjected to in-plane loading (two for shear and other two for flexure). A significant strength increase was observed for all strengthened shear and bending specimens. Failure occurred for most of the cases due to either compression failure of bricks or due to wall damage in the anchor area especially for shear specimens.
机译:已经使用了几种传统技术来增加UMW的强度,刚度和延展性。大多数方法证明是有效的,但它们会增加原始结构的质量和厚度,从而影响美观,并且劳动强度大。修复/加强UMW的更好,更有效的方法是使用纤维增强聚合物(FRP)组成层板。将薄薄的复合材料层压板粘结到这些墙的外表面上,将迫使单个砖块元素充当集成砖。系统。本文假装了为研究玻璃纤维增​​强塑料(GFRP)层压板在承受面外和面内弯曲和剪切应力时加固砌体墙的能力而获得的工作结果。复合材料翻新后对六个砌体墙进行了测试。其中两个墙(挠性样品)承受平面外弯曲,其中四个墙承受平面内荷载(两个用于剪力,另外两个用于挠性)。对于所有加强的剪切和弯曲试样,观察到明显的强度增加。在大多数情况下,由于砖的压缩失败或锚固区域的壁损坏(特别是对于剪切试样),都发生了失效。

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