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Push-out tests for perfobond strip connectors with UHPC grout in the joints of steel-concrete hybrid bridge girders

机译:钢-混凝土混合桥大梁接头中带有UHPC灌浆的全粘结带状连接器的推出测试

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This paper aims at examining the structural behavior of perfobond strip (PBL) connectors for steel concrete joint of hybrid girders with ultra-high performance concrete (UHPC) as grout for such connectors. Twenty-four push-out specimens fabricated according to the design used for the connectors in the steel-concrete joint in a hybrid cable-stayed bridge have been investigated. Effects of several parameters such as (i) the interface bond between perforated plate and concrete, (ii) dowels inside the holes in the plate, and (iii) volume of steel fibers in the UHPC on the behavior of PBL were discussed in depth. Experimental results indicated that the use of a 2% volume fraction of steel fibers in the UHPC, increased the average bond strength at the plate/concrete interface and the shear resistant-capacity of concrete dowel by 82% and 50%, respectively, as compared to UHPC specimens without the fibers. The concrete dowel played an important role in developing the desired loading resistant-capacity of the PBL, and about 34-41% of the overall resistance of a standard PBL embedded in UHPC were supplied by the concrete dowel surrounding transverse rebar. The source of the achieved ductility of PBL was mainly determined by the action of transverse rebars, and the ductility in the specimens having transverse rebars was about eleven times the ductility of similar specimens without the rebars. Furthermore, the experimental ultimate strength values of PBL were compared with available equations in literatures published recently, and an analytical model for PBL/UHPC was developed and appropriate parameters were derived from present data and used to provide reliable prediction of ultimate resistant-capacity of PBL in the hybrid girders' steel-concrete joints. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文旨在研究用于混合梁的钢-混凝土接头的全粘结带(PBL)连接器的结构性能,其中超高性能混凝土(UHPC)用作此类连接器的灌浆。研究了根据混合斜拉桥钢-混凝土接头中的连接器使用的设计制造的二十四个推出式试件。深入讨论了一些参数,例如(i)多孔板与混凝土之间的界面粘结,(ii)板中孔内的销钉和(iii)UHPC中钢纤维的体积对PBL行为的影响。实验结果表明,与UHPC相比,使用2%体积分数的钢纤维可将板/混凝土界面的平均粘结强度和混凝土销的抗剪承载力分别提高82%和50%不含纤维的UHPC标本。混凝土销钉在开发所需的PBL的抗承载能力中起着重要作用,埋在UHPC中的标准PBL的总电阻的约34-41%由横向钢筋周围的混凝土销钉提供。 PBL达到延展性的来源主要取决于横向钢筋的作用,具有横向钢筋的试样的延展性约为没有钢筋的类似试样延性的11倍。此外,将PBL的实验极限强度值与最近发表的文献中可用的方程式进行了比较,并开发了PBL / UHPC的分析模型,并从当前数据中得出了适当的参数,这些参数可用于可靠地预测PBL的极限抗力在混合大梁的钢-混凝土节点中。 (C)2017 Elsevier Ltd.保留所有权利。

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