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Flexural strength and ductility of highway bridge I-girders fabricated from HPS-100W steel.

机译:用HPS-100W钢制造的公路桥梁工字梁的抗弯强度和延性。

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摘要

High performance steel (HPS) for highway bridges has high strength in addition to good weldability, fracture toughness, and corrosion resistance. This research investigates the flexural strength and ductility of bridge I-girder made from HPS-100W, with a yield strength of 100 ksi (690 MPa). The AASHTO LRFD specifications limit the nominal flexural strength of steel I-girders made from steel with specified yield strength greater than 70 ksi (485 MPa) to the yield moment. This limit hinders the use of HPS-100W in highway bridges, and this study investigates whether this limit can be eliminated.; The experimental part of this research included testing of five I-girder specimens fabricated from HPS-100W steel. These I-girders were tested to failure under three-point loading simulating the condition of negative flexure at an interior pier of a continuous-span bridge girder. The experimental research included careful measurement of residual stresses and geometric imperfections before testing, and detailed analysis of the experimental data to study the complex stresses that developed in the specimens at failure.; The analytical part of this research included finite element simulations using ABAQUS [2002]. The purpose of these finite element simulations is to accurately predict both the strength and ductility of these I-girders. A simplified theoretical model for compression flange local buckling in the inelastic range was developed for the purpose of explaining the complex state of stresses that develops during local buckling. Finally, a parametric study was performed using finite element simulations to study the effect of various parameters on the flexural strength and ductility.; Comparison of the flexural strength of the experimental and parametric specimens with the nominal flexural strength, Mn, calculated according to the Draft 2004 AASHTO LRFD specifications shows that these specifications are also applicable for calculating the nominal flexural strength of HPS-100W I-girders when the strength is controlled by inelastic web and flange local buckling. It was also concluded that the procedures followed to execute the experiments proved to be valuable in achieving accurate experimental results, understanding of experimental results, and correlations with finite element simulations, including detailed results regarding the complex flange stresses developed at failure.
机译:公路桥梁用高性能钢(HPS)除了具有良好的可焊接性,断裂韧性和耐腐蚀性外,还具有较高的强度。本研究研究了由HPS-100W制成的I型桥的抗弯强度和延性,其屈服强度为100 ksi(690 MPa)。 AASHTO LRFD规范将由规定屈服强度大于70 ksi(485 MPa)的钢制成的工字钢的标称抗弯强度限制为屈服力矩。该限制阻碍了HPS-100W在公路桥梁中的使用,本研究调查了是否可以消除此限制。该研究的实验部分包括测试由HPS-100W钢制成的五个工字梁样本。这些I型梁在三点载荷下进行了测试,以模拟连续跨度桥梁大梁内部墩处的负挠曲情况。实验研究包括在测试前仔细测量残余应力和几何缺陷,以及对实验数据进行详细分析,以研究破坏时试样中产生的复杂应力。该研究的分析部分包括使用ABAQUS [2002]进行的有限元模拟。这些有限元模拟的目的是准确预测这些工字梁的强度和延性。为了解释在局部屈曲过程中产生的应力的复杂状态,开发了一种在非弹性范围内压缩法兰局部屈曲的简化理论模型。最后,使用有限元模拟进行了参数研究,以研究各种参数对弯曲强度和延展性的影响。根据2004年AASHTO LRFD草案计算得出的实验和参数化试样的抗弯强度与标称抗弯强度Mn的比较表明,这些规范也适用于计算HPS-100W工字梁的标称抗弯强度。强度由非弹性腹板和法兰局部屈曲控制。还得出结论,执行实验所遵循的程序被证明对获得准确的实验结果,理解实验结果以及与有限元模拟相关(包括有关失效时产生的复杂法兰应力的详细结果)非常有价值。

著录项

  • 作者

    Salem, Emad Said.;

  • 作者单位

    Lehigh University.;

  • 授予单位 Lehigh University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 261 p.
  • 总页数 261
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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