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Experimental and numerical study on shear studs connecting steel girder and precast concrete deck

机译:连接钢梁剪切螺柱的实验和数值研究和预制混凝土甲板

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摘要

Shear studs are often used to connect steel girders and concrete deck to form a composite bridge system. The application of precast concrete deck to steel-concrete composite bridges can improve the strength of decks and reduce the shrinkage and creep effect on the long-term behavior of structures. How to ensure the connection between steel girders and concrete deck directly influences the composite behavior between steel girder and precast concrete deck as well as the behavior of the structure system. Compared with traditional multi-I girder systems, a twin-I girder composite bridge system is more simplified but may lead to additional requirements on the shear studs connecting steel girders and decks due to the larger girder spacing. Up to date, only very limited quantity of researches has been conducted regarding the behavior of shear studs on twin-I girder bridge systems. One convenient way for steel composite bridge system is to cast concrete deck in place with shear studs uniformly-distributed along the span direction. For steel composite bridge system using precast concrete deck, voids are included in the precast concrete deck segments, and they are casted with cast-in-place concrete after the concrete segments are erected. In this paper, several sets of push-out tests are conducted, which are used to investigate the heavier of shear studs within the voids in the precast concrete deck. The test data are analyzed and compared with those from finite element models. A simplified shear stud model is proposed using a beam element instead of solid elements. It is used in the finite element model analyses of the twin-I girder composite bridge system to relieve the computational efforts of the shear studs. Additionally, a parametric study is developed to find the effects of void size, void spacing, and shear stud diameter and spacing. Finally, the recommendations are given for the design of precast deck using void for twin I-girder bridge systems.
机译:剪切铆钉通常用于连接钢梁和混凝土甲板以形成复合桥系统。预制混凝土甲克在钢混凝土复合桥的应用可以提高甲板的强度,降低结构的长期行为的收缩和蠕变效应。如何确保钢梁和混凝土甲板之间的连接直接影响钢梁和预制混凝土甲板之间的复合行为以及结构系统的行为。与传统的多我梁系统相比,更简化了双-i梁复合桥系统,但由于较大的梁间距,可以导致连接钢梁和甲板的剪切螺柱的额外要求。迄今为止,已经在双I梁桥系统上的剪切螺柱行为进行了非常有限的研究。钢复合桥系统的一种方便的方法是将混凝土甲板铸造沿跨度方向均匀分布的剪切螺柱。对于使用预制混凝土甲板的钢复合桥系统,空隙包含在预制混凝土甲板段中,并且在竖立混凝土段后,将其铸造在浇筑物的混凝土中。在本文中,进行了几组推出试验,用于研究预制混凝土甲板中的空隙内的剪切螺柱的较重。分析测试数据并与来自有限元模型的测试数据进行比较。使用梁元件而不是固体元件提出了一种简化的剪切螺柱模型。它用于双-i梁复合桥系统的有限元模型分析,以减轻剪切螺柱的计算工作。另外,开发了参数研究以找到空隙尺寸,空隙间距和剪切直径和间隔的影响。最后,使用WOID用于双梁桥系统的空隙给出了预制图。

著录项

  • 来源
    《Structural Engineering and Mechanics》 |2019年第4期|433-444|共12页
  • 作者单位

    Tongji Univ Dept Bridge Engn 1239 Siping Rd Shanghai 200092 Peoples R China;

    Tongji Univ Dept Bridge Engn 1239 Siping Rd Shanghai 200092 Peoples R China;

    Tongji Univ Dept Bridge Engn 1239 Siping Rd Shanghai 200092 Peoples R China;

    Embry Riddle Aeronaut Univ Daytona Beach FL USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    shear stud; twin-I girder; finite element; load-slip; void;

    机译:剪切螺柱;双胞胎 - 我梁;有限元;负载滑移;空隙;

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