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首页> 外文期刊>Advances in civil engineering >Experimental Study on the Shear Performance of Shallow Hinge Joints for Prefabricated Hollow Slab Bridges
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Experimental Study on the Shear Performance of Shallow Hinge Joints for Prefabricated Hollow Slab Bridges

机译:预制空心板桥浅铰链抗剪性能试验研究

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摘要

To investigate whether shallow hinge joint fracture was caused by shear stress or flexural stress, during the demolition and reconstruction of Xiaojiang River bridge, two original girders were collected and shipped to the lab, and the shallow hinge joint between the two girders was rebuilt. Tests were performed to investigate the cracking load, failure mode, and force transmission performance of the hollow slab girder and shallow hinge joint under vehicle load. The test result shows that under eccentric load, when the load increases to 365 kN, the midspan bottom slab of the testing girder starts to fracture; as the load increases to 560 kN, the roof slab of the testing girder starts to fracture; the hinge joint has a maximum horizontal opening of 0.153 mm and vertical relative displacement of 0.201 mm; during the entire test loading process, the shallow hinge joint structure does not develop fracture and shear failure; and the shallow hinge structure demonstrates excellent shear stress transmission performance. In addition, based on hinge slab theory, the hinge joint internal force under vehicle load was calculated. Based on ACI 318-05 specification, CAN/CSA-S6-00, and JTG D61-2005, the hinge joint shear bearing capacity was calculated. Hinge joint stress resistances calculated from the three specifications all exceed the internal force. Among them, the calculation results from ACI 318-05 and CAN/CSA-S6-00 are similar, while the result from JTG D61-2005 specification significantly exceeds the internal force, which is mainly because the designed concrete direct shear strength f(vd) in the Chinese specification does not consider factors such as bonding surface coarseness, concrete pouring sequence, and material properties., eoretical calculations and tests show that the actual failure mode of the shallow hinge joint in prefabricated hollow slab girder bridges is not caused by shear stress.
机译:为了研究浅铰链接头是由剪应力还是挠曲应力引起的,在小江大桥拆除和重建过程中,收集了两个原始大梁并将其运送到实验室,并重建了两个大梁之间的浅铰链接头。进行了测试以研究在车辆载荷下空心板梁和浅铰链接头的开裂载荷,破坏模式和力传递性能。试验结果表明,在偏心载荷作用下,当载荷增大至365 kN时,试验梁的中跨底板开始断裂;当载荷增加到560 kN时,测试梁的屋顶板开始破裂。铰链接头的最大水平开口为0.153mm,垂直相对位移为0.201mm。在整个测试加载过程中,浅铰链接头结构不会出现断裂和剪切破坏。浅铰链结构表现出优异的剪切应力传递性能。另外,基于铰链平板理论,计算了车辆载荷作用下的铰链接头内力。基于ACI 318-05规范,CAN / CSA-S6-00和JTG D61-2005,计算了铰链接头的剪切承载力。由这三个规格计算得出的铰链接头抗力均超过了内力。其中,ACI 318-05和CAN / CSA-S6-00的计算结果相似,而JTG D61-2005规范的结果则大大超过了内力,这主要是因为设计的混凝土直接抗剪强度f(vd中国规范中的)没有考虑粘结表面粗糙度,混凝土浇筑顺序和材料性能等因素。理论计算和测试表明,预制空心板梁桥中浅铰链接头的实际破坏模式不是由剪切引起的强调。

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  • 来源
    《Advances in civil engineering》 |2018年第7期|3962942.1-3962942.8|共8页
  • 作者

    Yi Hanbin; Li Chuanxi; Dai Li;

  • 作者单位

    Changsha Univ Sci & Technol, Bridge Engn Dept, Changsha 410076, Hunan, Peoples R China;

    Minist Transport, Res & Dev Ctr Technol & Equipment Long Span Bridg, Nanchang 330100, Jiangxi, Peoples R China;

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