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Finite element modeling of full depth precast concrete transverse bridge deck connections.

机译:全深度预制混凝土横向桥梁桥面连接的有限元建模。

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摘要

The frequent use of precast concrete panels has been used to decrease the construction time for bridges. Cracking often occurs at the transverse connections of these panels, resulting in corrosion, and decreased bridge life. Previous laboratory testing of these connections was performed at Utah State University for the Utah Department of Transportation to determine maximum shear and moment capacities, cracking behavior, and cracking loads for five different connections. Two connections are Utah Department of Transportation standard connections. These connections are post tensioned and welded tie connection using shear studs. A different type of welded tie connection using rebar was also tested, along with two prototype connections using a curved bolt to apply post tensioning. As part of this research finite element models were created using ANSYS software to confirm the tested results, and provide models for future analysis.;Moment-deflection and shear force-deflection curves were created using the results from the laboratory testing, and were compared with the results from the finite element analysis. The finite element models produced similar behavior and cracking loads when compared to the laboratory results. The curved bolt connections were found to be a good way of applying post tensioning.
机译:预制混凝土板的频繁使用已被用来减少桥梁的建造时间。这些面板的横向连接处经常发生开裂,从而导致腐蚀和桥寿命缩短。这些连接的先前实验室测试是在犹他州交通部的犹他州立大学进行的,以确定五个不同连接的最大剪切力和弯矩能力,开裂行为和开裂载荷。两种连接是犹他州交通运输部的标准连接。这些连接采用剪力柱进行后张紧和焊接扎带连接。还测试了使用钢筋的另一种类型的焊接扎带连接以及使用弯曲螺栓施加后张紧力的两个原型连接。作为本研究的一部分,使用ANSYS软件创建了有限元模型以确认测试结果,并为以后的分析提供模型。使用实验室测试的结果创建了弯矩-挠度和剪力-挠度曲线,并与之进行了比较。有限元分析的结果。与实验室结果相比,有限元模型产生了相似的行为和裂纹载荷。发现弯曲的螺栓连接是施加后张紧力的好方法。

著录项

  • 作者

    Julander, J. Logan.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2009
  • 页码 86 p.
  • 总页数 86
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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