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Perforated FRP ribs for shear connecting of FRP-concrete hybrid beams/decks

机译:多孔FRP筋,用于FRP-混凝土混合梁​​/桥面的剪切连接

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The primary consideration of FRP-concrete hybrid beams/decks is to handle the connection for FRP girder and concrete slab. This paper presents the results of push-out tests developed to characterize the shear behavior of perforated FRP rib (PFR) as a solution for shear connection of FRP-concrete hybrid beam. Tests reveal that PFRs provide two advantages when compared with traditional steel bolts, related to at least 2.5 times the shear capacity and approximately 10 times the slip modulus. Theoretical analysis indicated that: (i) PFRs are capable of meeting the shear capacity requirement of load transferring between FRP and concrete; (ii) the slip modulus of PFR increases proportionally with the area of the concrete wedge and second orderly with the thickness of the perforated plate; (iii) shear failure occurs in the perforated FRP plate prior to the failure of the concrete wedge, which governs the design of PFR and is the main difference from PBL (perfobond leist) in steel-concrete hybrid beams. Finally, calculation equations for shear capacity and slip modulus of PFR are developed to facilitate the design. (C) 2016 Elsevier Ltd. All rights reserved.
机译:FRP-混凝土混合梁​​/桥架的主要考虑因素是处理FRP梁和混凝土板的连接。本文介绍了为表征FRP-混凝土混合梁​​的剪力连接而开发的用于描述FRP多孔肋(PFR)的剪力特性的推出试验的结果。测试表明,与传统的钢螺栓相比,PFR具有两个优势,至少具有2.5倍的剪切能力和约10倍的滑动模量。理论分析表明:(i)PFRs能够满足FRP和混凝土之间荷载传递的剪切能力要求; (ii)PFR的滑动模量与混凝土楔形物的面积成比例地增加,而与多孔板的厚度成比例地增加; (iii)剪切破坏发生在混凝土楔形破坏之前的穿孔FRP板中,这决定了PFR的设计,这是与钢混凝土混合梁​​中的PBL(perfobond leist)的主要区别。最后,建立了PFR的剪切能力和滑移模量的计算公式,以简化设计。 (C)2016 Elsevier Ltd.保留所有权利。

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