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Design, experimental, and analytical study of a horizontally curved tubular flange girder.

机译:水平弯曲的管状翼缘梁的设计,实验和分析研究。

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摘要

Tubular flange girders (TFG) are an innovative I-shaped steel bridge girder, which have tube-shaped flanges rather than the flat plate flanges of a conventional I-girder. The tubes significantly increase the torsional stiffness of the TFG compared to the torsional stiffness of a conventional I-girder. For single horizontally curved TFGs, the increased torsional stiffness of the TFG significantly reduces the warping stresses, vertical displacements, and cross section rotations relative to those of a conventional I-girder. The goals of this research are to develop better understanding of the behavior of single curved TFGs under vertical load, and to experimentally validate finite element (FE) models for single curved TFGs.;First, a ½-scale TFG test specimen is developed and studied experimentally. The test specimen is developed at full-scale initially. The effects of scaling the dimensions from full-scale to ½-scale are examined. For the experiments, a test setup, loading plan, and instrumentation plan are developed. Experimental results include vertical displacements, cross section rotations, normal strains, and shear strains.;Then, FE models were developed and validated. FE results for vertical displacements, cross section rotations, normal strains, and shear strains within the span are compared to the experimental results. A parametric study using FE models was conducted to study the effects of the end conditions of the TFG on shear strains near the ends of the TFG. Experimental results and FE results are compared qualitatively and quantitatively to determine the accuracy of the results, and make observations on the behavior of a single curved TFG under vertical load.;Finally, the behavior of the ½-scale TFG test specimen is analyzed further using theoretical analysis methods from Fan (2007) and FE analyses. The FE analyses are conducted using one model with constraints which prevent cross section distortion, and another model which permits cross section distortion. The theoretical and FE analysis results are compared to assess the effects of cross section distortion on curved TFG behavior.;The results of this research show that FE models can accurately predict vertical displacements, cross section rotations, normal strains, and shear strains measured in the experiments away from the ends of the TFG. The results of the parametric study show that different end conditions have a significant effect on the shear strains near the ends of the TFG. The experimental results and the further FE analysis results show that cross section distortion has a noteworthy effect on curved TFG behavior in terms of warping strains, although the total normal strains are dominated by primary bending and the total shear strains are dominated by St. Venant torsion.
机译:管状法兰梁(TFG)是一种创新的I形钢桥梁,具有管状法兰,而不是传统I形梁的平板法兰。与传统工字梁的扭转刚度相比,这些管大大提高了TFG的扭转刚度。对于单个水平弯曲的TFG,相对于传统的工字钢,TFG的增加的扭转刚度显着降低了翘曲应力,垂直位移和横截面旋转。这项研究的目的是为了更好地理解单弯曲TFG在垂直载荷下的行为,并通过实验验证单弯曲TFG的有限元(FE)模型。首先,开发并研究½比例TFG试样实验上。最初,测试样品已全面开发。研究了将尺寸从完整比例缩放为½的效果。对于实验,开发了测试设置,加载计划和仪器计划。实验结果包括垂​​直位移,横截面旋转,法向应变和剪切应变。然后,开发并验证了有限元模型。将垂直位移,横截面旋转,法向应变和跨度内的剪切应变的有限元结果与实验结果进行了比较。进行了使用有限元模型的参数研究,以研究TFG末端条件对TFG末端附近的剪切应变的影响。定性和定量比较实验结果和有限元结果,以确定结果的准确性,并观察单个弯曲TFG在垂直载荷下的行为。最后,使用进一步分析½比例TFG试样的行为。 Fan(2007)和有限元分析的理论分析方法。有限元分析使用一个模型进行约束,该模型具有防止横截面变形的约束条件,而另一种模型则具有横截面变形的允许条件。比较了理论和有限元分析结果,以评估横截面变形对弯曲TFG行为的影响。这项研究结果表明,有限元模型可以准确预测竖向位移,横截面旋转,法向应变和剪切应变。实验远离TFG的两端。参数研究的结果表明,不同的端部条件对TFG端部附近的剪切应变有重大影响。实验结果和进一步的有限元分析结果表明,就变形而言,截面变形对弯曲TFG行为具有显着影响,尽管总法向应变主要由初次弯曲控制,而总剪切应变主要由圣维南扭转力控制。 。

著录项

  • 作者

    Putnam, Eric.;

  • 作者单位

    Lehigh University.;

  • 授予单位 Lehigh University.;
  • 学科 Engineering General.;Engineering Civil.;Engineering Environmental.
  • 学位 M.S.
  • 年度 2010
  • 页码 237 p.
  • 总页数 237
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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