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外文期刊>The Open Civil Engineering Journal
>A Comparative Study on the Flexural Behaviour of One-Way Concrete Slabs Reinforced with GFRP Reinforcements and Conventional Reinforcements when Subjected to Monotonic and Repeated Loading
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A Comparative Study on the Flexural Behaviour of One-Way Concrete Slabs Reinforced with GFRP Reinforcements and Conventional Reinforcements when Subjected to Monotonic and Repeated Loading
Over the last couple of decades, the interest in using advanced high performance materials in the constructionindustry has been shooting up and developing to reduce the overall life-cycle costs of structures. Accordingly, many researcheshave been carried out to invent new materials which possess the properties comparatively more advantageousthan conventional steel reinforcements. Fibre Reinforced Polymer (FRP) reinforcements are considered as new, high techand ideal materials optimistically used in many countries in the construction field especially in the construction of bridgedeck slabs. So many researches have been done to assess the? mechanical properties of FRP reinforcements , flexural andshear behaviours of FRP reinforced structural elements under static or monotonic loading. But only limited works havebeen brought out on the fatigue performance of FRP reinforced structural elements. This paper presents the flexural behaviourof one-way slabs reinforced with Glass Fibre Reinforced Polymer (GFRP) reinforcements (special type of FRP reinforcements)under monotonic loading and two different schemes of repeated loading. A total number of twenty one GFRPreinforced concrete one- way slabs were constructed, out of which seven were tested under monotonic loading, sevenwere tested under constant amplitude repeated loading and the remaining seven slabs were tested under variable amplituderepeated loading conditions. The behaviour of GFRP reinforced slabs were compared with that of steel reinforced slabs. Ithas been found that the ultimate load carrying capacities and fatigue performance of GFRP slabs were greater than that ofsteel slabs. Also there exists a good agreement between the theoretical and experimental results.
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