首页> 外文期刊>Latin American Journal of Solids and Structures >Flexural Strengthening of Reinforced Concrete Beams Using Carbon Fiber Reinforced Polymer (CFRP) Sheets with Grooves
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Flexural Strengthening of Reinforced Concrete Beams Using Carbon Fiber Reinforced Polymer (CFRP) Sheets with Grooves

机译:使用带有沟槽的碳纤维增强聚合物(CFRP)板对钢筋混凝土梁进行抗弯加固

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Abstract The most common method used to strengthening, rehabilitation or repairing of reinforced concrete (RC) members is to use external carbon fiber reinforced polymer (CFRP) sheets. CFRP can greatly improve the flexural and shear capacity of deteriorated members and therefore extends their useful life. The main problem of external CFRP is the debonding of the sheets from the concrete surface at some point of loading, which negatively affects the efficiency of strengthening and may consequently lead to an unanticipated failure of the strengthened members. The major reason for this early debonding is likely due to the low accuracy of the preparation and the high stress concentration at the flat contact area exists between CFRP sheets and the concrete. The problem has been extensively discussed in the literature and some CFRP application techniques such as “Externally Bonded Reinforcement on Grooves (EBROG)” and “Externally Bonded Reinforcement in Grooves (EBRIG)” have been proposed as alternatives to the conventional application methods. Although some research has been carried out, there have been few experimental investigations that provided quantitative discussion of the efficiency of the new developed techniques. This research was aimed to experimentally assess the efficiency of grooving techniques and to provide a quantitative data regarding the behaviour of bonding between CFRP and concrete. The effects of shape and direction of the grooves and CFRP layers on the load carrying capacity, mid-span deflection and failure mode of thirteen RC beams have been investigated and discussed. In general, CFRP has significantly improved the flexural capacity of strengthened beams especially when grooving technique has been employed.
机译:摘要用于加固,修复或修复钢筋混凝土(RC)构件的最常用方法是使用外部碳纤维增强聚合物(CFRP)板。 CFRP可以大大改善劣化构件的弯曲和剪切能力,因此可以延长其使用寿命。外部CFRP的主要问题是在某些荷载作用下板材从混凝土表面剥离,这不利地影响了加固效率,并可能导致加固构件意外失效。早期脱胶的主要原因可能是由于制备精度低以及CFRP薄板与混凝土之间的平面接触区域处存在较高的应力集中。该问题已在文献中进行了广泛讨论,一些CFRP应用技术,例如“沟槽上的外部粘结增强(EBROG)”和“沟槽上的外部粘结增强(EBRIG)”已被提议作为常规应用方法的替代方法。尽管已进行了一些研究,但很少有实验研究可以定量讨论新开发技术的效率。这项研究旨在通过实验评估开槽技术的效率,并提供有关CFRP与混凝土之间粘结性能的定量数据。研究和讨论了沟槽和CFRP层的形状和方向对13根RC梁的承载能力,中跨挠度和破坏模式的影响。通常,CFRP显着提高了加固梁的抗弯能力,特别是在采用开槽技术的情况下。

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