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Simulation of screw connected built-up cold-formed steel back-to-back lipped channels under axial compression

机译:轴向压缩下螺纹连接的组合式冷弯型钢背对背唇形通道的模拟

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摘要

The objective of this paper is to validate finite element (FE) modeling protocol for screw connected, back-to-back built-up cold-formed steel (CFS) columns. The protocol is developed and validated using results from previously conducted experiments. The effort is motivated by two applications: (1) to augment experimental findings on built-up CFS columns, particularly for fastener demands and (2) to provide a simulation path for modeling the built-up CFS columns that are used as shear wall chord studs. Shell FE-based models were created in ABAQUS and include monotonic loading, nonlinear geometric and material behavior, geometric imperfections based on laser scanned measurements of tested specimens and a contact model that includes friction. Additionally, the screw fasteners were integrated into the modeling protocol using user-defined element subroutines capable of reproducing strength and stiffness deterioration under monotonic load as well as the pinching that occurs when screw fasteners are subjected to cyclic loads. Monotonic, concentric compression tests on 17 back-to-back CFS columns using two cross-section sizes and varying fastener layouts with sheathing conditions were simulated. Deformations, strength, and collapse mechanisms obtained by the models were in close agreement with the experimental results. An assessment of the loading demand on screw fasteners reveals the conservatism in built-up column fastener layout and design as required by the North American Specification for the Design of Cold-Formed Steel Structural Members (AISI S100-16 Section I1.2). Also, under the tested semi-rigid column end conditions, there is a little boost in axial capacity with the addition of member end fastener groups (EFGs) at the top and bottom of the columns. Numerical models are also used to assess the cyclic performance of axially-loaded columns so that chord stud buckling limit states could be captured in seismic simulations of CFS-framed shear walls in future work.
机译:本文的目的是验证螺钉连接的背对背组合式冷弯型钢(CFS)柱的有限元(FE)建模协议。使用先前进行的实验的结果来开发和验证该协议。这项工作受到两个应用程序的激发:(1)增强组合式CFS柱的实验结果,尤其是对于紧固件的需求;(2)提供用于建模用作剪切墙弦的组合式CFS柱的仿真路径螺柱。基于外壳有限元的模型是在ABAQUS中创建的,包括单调加载,非线性几何和材料行为,基于激光扫描测试样本的测量结果的几何缺陷以及包括摩擦的接触模型。此外,使用用户定义的元素子例程将螺钉紧固件集成到建模协议中,这些子例程能够在单调载荷下以及在经受周期性载荷时发生的挤压下再现强度和刚度的下降。模拟了17个背对背CFS柱的单调同心压缩试验,该试验使用两个横截面尺寸和不同的紧固件布局以及护套条件。通过模型获得的变形,强度和坍塌机理与实验结果非常吻合。对螺钉紧固件的负载需求进行评估后,可以发现按照北美《冷弯钢结构构件设计规范》(AISI S100-16第I1.2节)的要求,对立柱紧固件布局和设计的保守性。同样,在经过测试的半刚性柱端条件下,通过在柱的顶部和底部添加构件端部紧固件组(EFG),轴向承载力会有少许提高。数值模型还用于评估轴向受力柱的循环性能,以便在将来的工作中,在CFS框架剪力墙的地震模拟中可以捕捉到弦钉屈曲极限状态。

著录项

  • 来源
    《Engineering Structures》 |2020年第1期|110109.1-110109.18|共18页
  • 作者

  • 作者单位

    Univ Porto Fac Engn Dept Civil Engn Rua Dr Roberto Frias S-N P-4200465 Porto Portugal|Univ Blida 1 Dept Civil Engn Fac Technol Blida Algeria;

    Johns Hopkins Univ Dept Civil Engn Baltimore MD 21218 USA;

    Univ Porto Fac Engn Dept Civil Engn Rua Dr Roberto Frias S-N P-4200465 Porto Portugal;

    Natl Polytech Sch Dept Civil Engn Algiers Algeria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cold-formed steel; Column; Built-up section; Composite action; Experimental; Finite element analysis;

    机译:冷弯型钢;柱;组合部分;复合动作;实验;有限元分析;

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