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A suggested design approach for built-up cold-formed columns based on research using nonlinear finite element method.

机译:基于非线性有限元方法的研究,提出了一种建议的组合式冷弯型钢设计方法。

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摘要

A deficiency of the 2007 AISI specification, Sections C4 and D1.2 for built-up, cold-formed members under pure compression is experimentally identified. The AISI specification is found to be exceedingly conservative, especially for distortional-buckling members with a larger cross section and a longer length. By using sequential batch-feeding, nearly a thousand nonlinear-buckling finite element simulations of built-up, cold-formed sections are carried out to validate the model prior to experimental work, identify the extent of the deficiency, and rectify the deficiency. In all, a simpler less-conservative design equation for cold-formed built-up members prone to distortional buckling is proposed in this two-phase work.;In Phase I, highly-nonlinear, finite-element models and a state-of-the-art modeling strategy are used to validate and verify the geometrically unstable built-up compression members which exhibit a variety of buckling behaviors. The finite element program ANSYS is used to validate over 265 experimental tests, while the use of the finite element program ABAQUS is used to verify the ANSYS results. Two totally different numerical schemes of implicit-static and explicit-dynamic under various iterative and non-iterative solution techniques, which include Newton-Raphson, Arc-Length, Riks, and Central-Difference integration methods, are converged toward identical solutions. A structural solid (brick) element is thoroughly examined and compared with a structural shell element (most commonly used in the modeling discipline for thin-walled structures) which provides advantages in: (1) advancing through a critical buckling state, (2) tracing a softening response of the post-buckling regime, and (3) assuring the modeling of a true structural failure (not a numerically induced one).;In Phase II, a parametric study of an additional 360 cold-formed built-up compression members are modeled to investigate new structural built-up configurations. The AISI specification flexural provision is applied in conjunction with the slenderness modification and the code predictions are compared to the results of the analytical models. A proposed design equation is developed based on a regression analysis of a three-dimensional surface fitting. The proposed equation corrects the deficiency of the distortional provision. An evaluation of the proposed design equation shows good agreement with the experimentally measured capacities.
机译:通过实验确定了2007 AISI规范的缺陷,即在纯压缩状态下对已成型的冷弯构件的C4和D1.2节。发现AISI规范过于保守,特别是对于横截面较大且长度较长的扭曲屈曲构件。通过使用顺序分批进料,对已形成的冷弯型材进行了近千次非线性屈曲有限元模拟,以在实验工作之前验证模型,识别缺陷程度并纠正缺陷。总而言之,在此两阶段工作中,提出了一个易于变形的,易于屈曲的冷成型构件的较保守的保守设计方程。在第一阶段,提出了高度非线性的有限元模型和状态最新的建模策略用于验证和验证呈现各种屈曲行为的几何形状不稳定的组合压缩构件。有限元程序ANSYS用于验证265个以上的实验测试,而有限元程序ABAQUS用于验证ANSYS结果。在各种迭代和非迭代求解技术下,隐式静态和显式动力学的两种完全不同的数值方案(包括Newton-Raphson,Arc-Length,Riks和Central-Difference积分方法)已收敛到相同的解决方案。对结构实体(砖)元素进行了彻底检查,并将其与结构壳元素(在薄壁结构建模学科中最常使用)进行比较,它具有以下优点:(1)通过临界屈曲状态前进;(2)追踪后屈曲状态的软化响应,以及(3)确保对真实的结构破坏进行建模(不是由数字引起的破坏)。;第二阶段,对另外360个冷成型的压缩构件进行了参数研究建模以研究新的结构组合配置。 AISI规范的弯曲规定与细长度修改一起应用,并且将代码预测与分析模型的结果进行比较。基于对三维表面拟合的回归分析,开发了一个建议的设计方程。所提出的方程式纠正了扭曲规定的不足。对所提出的设计方程式的评估表明与实验测得的容量具有很好的一致性。

著录项

  • 作者

    Piyawat, Krisda.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 268 p.
  • 总页数 268
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:44

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