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Section capacity of cold-formed steel members by the direct strength method.

机译:采用直接强度法的冷弯型钢构件的截面承载力。

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摘要

This thesis entitled "Section capacity of cold-formed steel members by the Direct Strength Method" aims at advancing the Direct Strength Method under three objectives. The first objective is to provide and verify a general design method for prediction of reserve inelastic bending capacity in cold-formed steel members potentially subject to local, distortional, and/or lateral-torsional buckling modes. The strain capacity that can be sustained in inelastic local and inelastic distortional buckling is investigated through existing experiments coupled with nonlinear finite element analysis. The resulting relationships for inelastic local, distortional, and lateral-torsional buckling are provided in a Direct Strength Method format for potential adoption in the cold-formed steel AISI Specification.;The second objective is to explain why cold-formed steel angles may have significant post-buckling reserve in global buckling, as has been observed in testing, and to provide design guidance for locally slender cold-formed steel angles. In this work specific attention is paid to several unique aspects of cold-formed steel angles under compression: (1) the separation, or lack of, between local-plate and global torsional buckling, (2) the relative contributions between flexure and torsion in global flexural-torsional budding modes, (3) the specific impact of end boundary conditions, with particular emphasis on warping (longitudinal) deformations. Utilizing developed nonlinear collapse analysis with shell finite element models, and existing testing (including the work of Young), alternatives to current design methods are explored. Given the end boundary conditions are known new design procedures are recommended for strength prediction of cold-formed steel angles.;The third objective is to directly examine the stability and strength of cold-formed steel beam-columns under their actual combined actions: axial and bending, biaxial bending, etc. The current approach to cold-formed steel beam-column design is based on simplified linear interaction formulas that are based on separate axial and flexural stability and strength determinations. Since stability is stress dependent the appropriate combinations are strongly cross-section dependent and direct analysis of the stability under the expected combined action can yield fundamentally different (and more economical) solutions than assuming linear interactions always govern. This study provides the complete yielding and stability solution under direct combined actions for symmetric and non-symmetric cross-sections. These same sections are then modeled to failure with nonlinear finite element analysis, under all combined actions, to provide the predicted ultimate strength. These ultimate strength envelopes (a) do not agree with linear interaction equations used in design and (b) provide a basis for formulating a Direct Strength Method for beam-columns. Initial formulation of a Direct Strength Method for beam-columns is explored and these initial studies demonstrate that direct analysis under the combined actions can lead to more economical and more realistic strength predictions; particularly for un-symmetric sections.
机译:这篇题为“直接强度法的冷弯型钢构件的截面承载力”的论文旨在在三个目标下改进直接强度法。第一个目的是提供和验证一种通用设计方法,用于预测可能在局部,变形和/或横向扭转屈曲模式下作用的冷弯型钢构件中的储备非弹性弯曲能力。通过现有的实验与非线性有限元分析相结合,研究了在非弹性局部屈曲和非弹性变形屈曲中可以维持的应变能力。非强度局部屈曲,变形和横向扭转屈曲的结果关系以直接强度方法格式提供,可在冷弯型钢AISI规范中潜在采用;第二个目的是解释为什么冷弯型钢角可能具有重要意义正如在测试中所观察到的那样,在整体屈曲中保留了屈曲后的储备,并为局部细长的冷弯型钢角钢提供了设计指导。在这项工作中,要特别注意受压时冷弯型钢角钢的几个独特方面:(1)局部板和整体扭转屈曲之间的分离或缺乏,(2)弯曲和扭转之间的相对贡献整体挠曲-萌芽模式,(3)端边界条件的特定影响,尤其强调翘曲(纵向)变形。利用已开发的具有壳有限元模型的非线性坍塌分析和现有测试(包括Young的工作),探索了当前设计方法的替代方法。给定端部边界条件,建议采用新的设计程序来预测冷弯型钢角钢的强度。;第三个目标是直接检查冷弯型钢梁柱在其实际组合作用下的稳定性和强度:轴向和轴向目前,冷弯钢梁柱设计的方法是基于简化的线性相互作用公式,该公式基于单独的轴向和弯曲稳定性以及强度确定。由于稳定性取决于应力,因此适当的组合与横截面密切相关,并且与预期的线性相互作用始终占主导地位相比,对预期的组合作用下的稳定性进行直接分析可以得出根本不同(且更经济)的解决方案。这项研究为对称和非对称截面的直接组合作用提供了完整的屈服和稳定性解决方案。然后,在所有组合作用下,使用非线性有限元分析对这些相同的截面进行建模,以提供预期的极限强度。这些极限强度包络线(a)与设计中使用的线性相互作用方程式不一致,并且(b)为制定梁柱直接强度法提供了基础。探索了梁柱直接强度方法的最初公式,这些初步研究表明,在组合作用下进行直接分析可以得出更经济,更现实的强度预测。特别是对于非对称截面。

著录项

  • 作者

    Bayleyegn, Yared Shifferaw.;

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 243 p.
  • 总页数 243
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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