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Flexural strengthening of RC beams using Hybrid Composite Plate (HCP): Experimental and analytical study

机译:混合复合板(HCP)加固RC梁的试验和分析研究

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Hybrid Composite Plate (HCP) is a reliable recently proposed retrofitting solution for concrete structures, which is composed of a strain hardening cementitious composite (SHCC) plate reinforced with Carbon Fibre Reinforced Polymer (CFRP). This system benefits from the synergetic advantages of these two composites, namely the high ductility of SHCC and the high tensile strength of CFRPs. In the material-structural of HCP, the ultra-ductile SHCC plate acts as a suitable medium for stress transfer between CFRP laminates (bonded into the pre-sawn grooves executed on the SHCC plate) and the concrete substrate by means of a connection system made by either chemical anchors, adhesive, or a combination thereof. In comparison with traditional applications of FRP systems, HCP is a retrofitting solution that (i) is less susceptible to the detrimental effect of the lack of strength and soundness of the concrete cover in the strengthening effectiveness; (ii) assures higher durability for the strengthened elements and higher protection to the FRP component in terms of high temperatures and vandalism; and (iii) delays, or even, prevents detachment of concrete substrate. This paper describes the experimental program carried out, and presents and discusses the relevant results obtained on the assessment of the performance of HCP strengthened reinforced concrete (RC) beams subjected to flexural loading. Moreover, an analytical approach to estimate the ultimate flexural capacity of these beams is presented, which was complemented with a numerical strategy for predicting their load-deflection behaviour. By attaching HCP to the beams' soffit, a significant increase in the flexural capacity at service, at yield initiation of the tension steel bars and at failure of the beams can be achieved, while satisfactory deflection ductility is assured and a high tensile capacity of the CFRP laminates is mobilized. Both analytical and numerical approaches have predicted with satisfactory agreement, the load-deflection response of the reference beam and the strengthened ones tested experimentally. (C) 2015 Elsevier Ltd. All rights reserved.
机译:混合复合板(HCP)是最近提出的一种可靠的混凝土结构翻新解决方案,由碳纤维增强聚合物(CFRP)增强的应变硬化水泥复合板(SHCC)组成。该系统得益于这两种复合材料的协同优势,即SHCC的高延展性和CFRP的高拉伸强度。在HCP的材料结构中,超韧性SHCC板是通过CFRP层压板(粘结到SHCC板上执行的预锯切沟槽中的层压板)和混凝土基板之间通过连接系统进行应力传递的合适介质。通过化学锚,粘合剂或其组合。与FRP系统的传统应用相比,HCP是一种翻新解决方案,它(i)不易受到混凝土覆盖层缺乏强度和稳固性的不利影响; (ii)在高温和故意破坏方面,确保增强元件具有更高的耐用性,并对FRP组件具有更高的保护; (iii)延迟甚至阻止混凝土基材的分离。本文介绍了所进行的实验程序,并介绍和讨论了在评估HCP钢筋混凝土(RC)梁在弯曲荷载下的性能时所获得的相关结果。此外,提出了一种评估这些梁的极限抗弯能力的分析方法,并辅以一种数值策略来预测其荷载-挠度行为。通过将HCP固定在梁的拱腹上,可以显着增加使用中,抗拉钢筋屈服时和梁破坏时的抗弯能力,同时确保令人满意的挠曲延展性和高抗拉强度。 CFRP层压板动员起来。分析方法和数值方法都以令人满意的一致性预测了参考梁的载荷-挠度响应以及通过试验测试的加强梁。 (C)2015 Elsevier Ltd.保留所有权利。

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