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首页> 外文期刊>Journal of Composites for Construction >Wet Lay-Up Manufactured FRPs for Concrete and Masonry Repair: Influence of Water on the Properties of Composites and on Their Epoxy Components
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Wet Lay-Up Manufactured FRPs for Concrete and Masonry Repair: Influence of Water on the Properties of Composites and on Their Epoxy Components

机译:湿法铺装的混凝土和砌体维修用玻璃钢:水对复合材料性能及其环氧组分的影响

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摘要

The assessment of durability of fiber-reinforced polymers (FRPs), used to strengthen masonry or concrete structures, if subjected to weathering is a knotty problem. Environmental factors can have a significant effect on their performance in service. In order to investigate on this aspect, the mechanical behavior of two commercial composites, reinforced with unidirectional carbon and glass fibers, was analyzed after a long-term immersion in distilled water. For comparison purposes, three different commercial epoxy resins, used as primer, putty, or adhesive to manufacture and apply the composites through the wet lay-up technique to the surfaces to strengthen, were subjected to the same treatment. In order to take into account the peculiarities of the three cold-curing epoxy resins, a novel procedure to dry the specimens before the immersion treatment was used. The mechanical tests, performed on the composites before and after their immersion in water, evidenced that this agent has a limited effect only on the in-plane tensile strength of wet lay-up manufactured glass FRP, while the mechanical properties of carbon FRP are substantially unaffected by water. On the other hand, the effect of water on the thermal and mechanical characteristics of the three epoxy resins is quite severe, with significant reductions in the glass transition temperature, stiffness, and strength.
机译:如果遭受风化,用于增强砖石或混凝土结构的纤维增强聚合物(FRP)的耐久性评估是一个棘手的问题。环境因素可能对其服务性能产生重大影响。为了对此方面进行研究,在长期浸泡在蒸馏水中后,分析了用单向碳和玻璃纤维增​​强的两种商用复合材料的力学性能。为了进行比较,对三种不同的市售环氧树脂(用作底漆,腻子或粘合剂)进行了相同的处理,以通过湿法铺层技术将复合材料制造并施加到表面上进行强化。为了考虑到三种冷固化环氧树脂的特殊性,使用了一种新的程序来在浸没处理之前干燥样品。在将复合材料浸入水中之前和之后对复合材料进行的机械测试表明,该试剂仅对湿法层压玻璃FRP的面内拉伸强度具有有限的影响,而碳FRP的机械性能却相当可观。不受水的影响。另一方面,水对三种环氧树脂的热和机械特性的影响非常严重,玻璃化转变温度,刚度和强度明显降低。

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