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Salt-Induced Deterioration on FRP-Brick Masonry Bond

机译:FRP砖砌体粘接的盐诱导恶化

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摘要

In the past decades, several studies have shown how fiber reinforced polymer (FRP) composites are an effective technique to strengthen unreinforced brick masonry structures. However, very little is known about their durability against environmental aggression such as salt attack and freeze-thaw cycles, or elevated moisture content. This paper presents an investigation on influence of salt attack on the stress transfer between the FRP composite and the masonry substrate. In fact, it is well known that, in certain conditions, soluble salts crystallize within the pores of materials, leading to crystallization pressures that may overcome their tensile strength. To investigate this effect, FRP-masonry joints were subjected to salt crystallization cycles according to a conditioning procedure designed by the authors. After conditioning, direct shear tests were conducted on the masonry joints to investigate the interfacial bond between the substrate and the composite. Materials characterization was carried out in order correlate the results of the direct shear tests with the salt distribution within the specimens. For comparison, direct shear tests were conducted on FRP-masonry joints that were not subjected to any cycle and therefore used as control.
机译:在过去的几十年中,有几项研究表明了纤维增强聚合物(FRP)复合材料是如何加强未原钢砖砌体结构的有效技术。然而,关于它们对环境侵蚀的耐久性诸如盐攻击和冻融循环或升高的水分含量,很少熟知。本文提出了盐攻对FRP复合材料与砌体基质应力传递影响的调查。实际上,众所周知,在某些条件下,可溶性盐在材料的孔内结晶,导致可以克服其拉伸强度的结晶压力。为了研究这种效果,根据作者设计的调理程序对FRP-砌体接头进行盐结晶循环。在调理后,在砌体关节上进行直接剪切试验,以研究基材和复合材料之间的界面键。进行材料表征,按顺序进行将直接剪切试验的结果与样本内的盐分布相关联。为了比较,在不受任何循环的FRP-砌体关节上进行直接剪切试验,因此用作对照。

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