首页> 外文期刊>Journal of Performance of Constructed Facilities >Contribution of Transverse Tie Bars to Load Transfer in Adjacent Prestressed Box-Girder Bridges with Partial Depth Shear Key
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Contribution of Transverse Tie Bars to Load Transfer in Adjacent Prestressed Box-Girder Bridges with Partial Depth Shear Key

机译:横向系杆在相邻预应力箱梁桥中负载转载的贡献,部分深度剪切钥匙

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Adjacent box-girder bridges have become a popular choice as they can be constructed quickly, easily, and economically. In spite of their good performance during many years of service, one major problem has been recurrent longitudinal cracking of the grout material in the shear key. A combination of shear keys and transverse posttensioning (TPT) ties in such kind of bridges is typically used to connect the bridge girders together so that they would behave as a single integrated unit. However, information regarding the contribution of the TPT tie bars on load transfer between adjacent box girders is limited. In this study, a single-span precast prestressed concrete adjacent box-girder bridge was instrumented and monitored to study the effect of TPT tie bars on load transfer mechanism and overall bridge behavior under static and dynamic truck loads. Two sets of instruments were installed in the girders and tie bars during and after the construction of the bridge. A good correlation was achieved between experimental measurements and results from a three-dimensional (3D) finite element (FE) model. An in-depth analysis of the data indicated that, under static loads, there was a contribution from the tie bars to the load-transfer mechanism between the girders. The maximum measured relative displacement at the joints was below the damage limits. Under dynamic loading, the dynamic load allowance (DLA) obtained was higher than that of the standard design procedure of bridges. Based on the FE analysis, the relative displacement of the joints and the load distribution between the girders are influenced by the initial TPT force applied during construction. The level of stresses generated in the concrete girders and shear keys under truck load was not high enough to cause damage. (C) 2016 American Society of Civil Engineers.
机译:相邻的箱梁桥梁已成为一种流行的选择,因为它们可以快速,容易和经济地构建。尽管它们在多年的服务期间表现良好,但一个主要问题已经经常发生剪切钥匙中的灌浆材料的纵向开裂。这种桥梁中的剪切键和横向的横向的组合(TPT)的关系通常用于将桥梁梁连接在一起,使得它们将作为单个集成单元。然而,关于CTPT系带对相邻箱梁之间的负载转移的贡献的信息有限。在该研究中,仪器和监测了一条单跨预制预应力混凝土相邻的箱梁梁桥,以研究TPT系栏对静电和动态卡车负荷下的负载转移机构和整体桥梁行为的影响。两组仪器安装在桥梁期间和在桥梁建设期间和领带杆。实验测量和三维(3D)有限元(FE)模型的结果之间实现了良好的相关性。对数据的深度分析表明,在静载荷下,在梁之间的焊锡杆与梁之间的负载转移机构有贡献。关节上的最大测量相对位移低于损伤限制。在动态负载下,获得的动态负载允许(DLA)高于桥梁的标准设计程序。基于Fe分析,关节的相对位移和梁之间的负载分布受施工期间施加的初始TPT力的影响。在卡车负荷下混凝土梁和剪切键产生的应力水平不足以引起损坏。 (c)2016年美国土木工程师协会。

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