首页> 外文OA文献 >Behaviour of continuous concrete slabs reinforced with FRP bars. Experimental and computational investigations on the use of basalt and carbon fibre reinforced polymer bars in continuous concrete slabs.
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Behaviour of continuous concrete slabs reinforced with FRP bars. Experimental and computational investigations on the use of basalt and carbon fibre reinforced polymer bars in continuous concrete slabs.

机译:用FRP筋加固的连续混凝土板的性能。在连续混凝土楼板中使用玄武岩和碳纤维增强聚合物棒的实验和计算研究。

摘要

An investigation on the application of basalt fibre reinforced polymer (BFRP) and carbon fibre reinforced polymer (CFRP) bars as longitudinal reinforcement for simple and continuous concrete slabs is presented. Eight continuously and four simply concrete slabs were constructed and tested to failure. Two continuously supported steel reinforced concrete slabs were also tested for comparison purposes. The slabs were classified into two groups according to the type of FRP bars. All slabs tested were 500 mm in width and 150 mm in depth. The simply supported slabs had a span of 2000 mm, whereas the continuous slabs had two equal spans, each of 2000 mm. Different combinations of under and over FRP (BFRP/CFRP) reinforcement at the top and bottom layers of slabs were investigated. The continuously supported BFRP and CFRP reinforced concrete slabs exhibited larger deflections and wider cracks than the counterpart reinforced with steel. The experimental results showed that increasing the bottom mid-span FRP reinforcement of continuous slabs is more effective than the top over middle support FRP reinforcement in improving the load capacity and reducing mid-span deflections.udDesign guidelines have been validated against experimental results of FRP reinforced concrete slabs tested. ISIS¿M03¿07 and CSA S806-06 equations reasonably predicted the deflections of the slabs tested. However, ACI 440¿1R-06 underestimated the deflections, overestimated the moment capacities at mid-span and over support sections, and reasonably predicted the load capacity of the continuous slabs tested.udOn the analytical side, a numerical technique consisting of sectional and longitudinal analyses has been developed to predict the moment¿curvature relationship, moment capacity and load-deflection of FRP reinforced concrete members. The numerical technique has been validated against the experimental test results obtained from the current research and those reported in the literature. A parametric study using the numerical technique developed has also been conducted to examine the influence of FRP reinforcement ratio, concrete compressive strength and type of reinforcement on the performance of continuous FRP reinforced concrete slabs. Increasing the concrete compressive strength decreased the curvature of the reinforced section with FRP bars. Moreover, in the simple and continuous FRP reinforced concrete slabs, increasing the FRP reinforcement at the bottom layer fairly reduced and controlled deflections.
机译:研究了玄武岩纤维增强聚合物(BFRP)和碳纤维增强聚合物(CFRP)钢筋作为简单连续混凝土板的纵向钢筋的应用。建造了八块连续板和四块简单混凝土板,并进行了破坏测试。为了进行比较,还测试了两个连续支撑的钢筋混凝土板。根据FRP钢筋的类型,将平板分为两类。所有测试的平板宽度为500毫米,深度为150毫米。简单支撑的平板的跨度为2000毫米,而连续的平板具有两个相等的跨度,每个跨度为2000毫米。研究了楼板顶层和底层的FRP加固之下和之上的不同组合(BFRP / CFRP)。连续支撑的BFRP和CFRP钢筋混凝土板比用钢增强的混凝土板显示更大的挠度和更大的裂缝。实验结果表明,在改善承载能力和减小中跨挠度方面,增加连续楼板的底部中跨FRP筋比顶部支撑中上部FRP筋更有效。 ud针对FRP的实验结果验证了设计准则经过测试的钢筋混凝土板。 ISIS®M03®07和CSA S806-06方程合理地预测了测试平板的挠度。但是,ACI440¿1R-06低估了挠度,高估了跨度和支撑截面的弯矩承载力,并合理地预测了所测试的连续板的承载能力。进行了纵向分析,以预测FRP增强混凝土构件的弯矩曲率关系,弯矩承载力和荷载挠度。数值技术已针对当前研究和文献报道的实验测试结果进行了验证。还使用开发的数值技术进行了参数研究,以检查FRP增强比,混凝土抗压强度和增强类型对连续FRP增强混凝土板性能的影响。增加混凝土的抗压强度可以减少FRP筋增强截面的曲率。此外,在简单而连续的FRP钢筋混凝土板中,增加底层的FRP钢筋可以大大减少和控制挠度。

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  • 作者

    Mahroug Mohamed Elarbi Moh;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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