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Effect of cement based coatings on durability enhancement of GFRP-wrapped columns in marine environments

机译:水泥基涂料对海洋环境中GFRP包裹柱的耐久性增强的影响

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The main objective of this paper is to study the effects of marine environments on cement based coatings for enhancing the durability of Glass Fibre Reinforced Polymer (GFRP) sheets. Despite of durability degradation in harsh environments, GFRP sheets are widely used to repair the existing structures in the marine environment. Mean while there is no comprehensive analysis has described how the environmental conditions affect these sheets, and there is no any appropriate solution has been provided to date. In this research, a marine environment simulator was designed and constructed similar to the real conditions. Mechanical properties of wrapped specimens were studied after placing them inside the simulator. Two types of cement based mortar, namely polymeric and self-compacted, were applied on the sheets. The polymeric mortar increased the ultimate strength of the specimens wrapped with one and two layers of GFRP by 5.4% and 4.7% respectively, compared with similar specimens in the marine environment without the protective mortar. The ultimate strength was increased by 2.4% and 1.8% in specimens With self-compacted mortar coatings. Marine environments caused better curing of the self-compacted mortar and conversely a slight reduction of polymeric mortar's durability. Also, the bond strength of the polymeric mortar to GFRP sheets was more than those with self-compacted mortar. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文的主要目的是研究海洋环境对水泥基涂料的影响,以增强玻璃纤维增​​强聚合物(GFRP)片材的耐久性。尽管在恶劣环境下耐久性会下降,但GFRP片材仍广泛用于修复海洋环境中的现有结构。意思是,尽管没有进行全面的分析,但是描述了环境条件如何影响这些表,并且迄今为止,还没有提供任何适当的解决方案。在这项研究中,设计并建造了一个类似于真实环境的海洋环境模拟器。将包裹好的标本放入模拟器后,对其力学性能进行了研究。两种类型的水泥基砂浆,即聚合物砂浆和自密实砂浆,均涂在板上。与没有保护砂浆的海洋环境中的类似标本相比,聚合砂浆将包裹有一层和两层GFRP的标本的极限强度分别提高了5.4%和4.7%。使用自密实砂浆涂料的样品的极限强度分别提高了2.4%和1.8%。海洋环境使自密实砂浆的固化效果更好,相反,聚合砂浆的耐久性略有下降。而且,聚合物砂浆与GFRP片材的粘结强度比具有自密实砂浆的粘结强度更高。 (C)2017 Elsevier Ltd.保留所有权利。

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