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Interactive buckling of stiffened box girder supports

机译:加劲箱梁支撑的交互式屈曲

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Purpose - The purpose of this paper is to investigate the structural interactions of stiffened box girders used in bridge construction and industrial facilities. Design/methodology/approach - Numerical procedure is presented using combination of energy formulations and mathematical programming techniques to model the interaction between the box girder components. Findings - Interactive buckling is a critical issue that must be accounted for in the design of box girders. Ignoring the structural interaction may lead to failures and damages prior to the expected design life. Practical, implications - Industrial examples are presented showing the variation of the flange buckling stress for various stiffening configurations. Graphs are presented for several box sections to provide cost-effective design space that can be effectively used in the industry to optimize the sections proportions. Originality/value - Limited literature dealt with these aspects in the design of box girders. Current design equations available in codes of practice ignore the interaction between the stiffened box girder components. The paper highlights the influence of the flange/web proportions on the behavior of box sections subjected to various types of loadings. It is shown that behavior of the flange is largely affected by the restraints imposed by the webs.
机译:目的-本文的目的是研究桥梁施工和工业设施中使用的加劲箱梁的结构相互作用。设计/方法/方法-结合能量公式和数学编程技术提出数值程序,以模拟箱形梁组件之间的相互作用。研究结果-交互式屈曲是箱形梁设计中必须考虑的关键问题。忽略结构相互作用可能会导致预期设计寿命之前的故障和损坏。实际意义-给出了一些工业示例,这些示例显示了各种加固配置下凸缘屈曲应力的变化。给出了几个箱形截面的图形,以提供具有成本效益的设计空间,可在行业中有效地用于优化截面比例。原创性/价值-箱梁设计中涉及这些方面的文献很少。实践准则中可用的当前设计方程式忽略了加劲的箱形梁组件之间的相互作用。本文重点介绍了法兰/腹板比例对承受各种载荷的箱形截面行为的影响。结果表明,凸缘的性能在很大程度上受到腹板施加的约束的影响。

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