Numerical Simulation and Design Recommendations for Web Crippling Strength of Cold-Formed Steel Channels with Web Holes under Interior-One-Flange Loading at Elevated Temperatures

被引:38
|
作者
Fang, Zhiyuan [1 ]
Roy, Krishanu [1 ,2 ]
Liang, Hao [1 ]
Poologanathan, Keerthan [3 ]
Ghosh, Kushal [4 ]
Mohamed, Abdeliazim Mustafa [5 ,6 ]
Lim, James B. P. [1 ,2 ]
机构
[1] Univ Auckland, Dept Civil & Environm Engn, Auckland 1023, New Zealand
[2] Univ Waikato, Sch Engn, Hamilton 3216, New Zealand
[3] Northumbria Univ, Fac Engn & Environm, Newcastle Upon Tyne NE7 7YT, Tyne & Wear, England
[4] Natl Inst Technol, Dept Civil Engn, South Sikkim 737139, Sikkim, India
[5] Prince Sattam Bin Abdulaziz Univ, Dept Civil Engn, Coll Engn, Al Kharj 16278, Saudi Arabia
[6] Bayan Univ, Bldg & Construct Technol Dept, Khartoum 210, Sudan
关键词
web crippling; proposed equations; elevated temperatures; interior-one-flange loading; web hole; finite element analysis; cold-formed steel; PART I TESTS; COMPRESSION MEMBERS; MECHANICAL-PROPERTIES; FLEXURAL BEHAVIOR; AXIAL CAPACITY; BEAMS SUBJECT; SECTIONS; OPENINGS;
D O I
10.3390/buildings11120666
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper investigates the interior-one-flange web crippling strength of cold-formed steel channels at elevated temperatures. The stress-strain curves of G250 and G450 grade cold-formed steel (CFS) channels at ambient and elevated temperatures were taken from the literature and the temperatures were varied from 20 to 700 degrees C. A detailed parametric analysis comprising 3474 validated finite element models was undertaken to investigate the effects of web holes and bearing length on the web crippling behavior of these channels at elevated temperatures. From the parametric study results, it was found that the web crippling strength reduction factor is sensitive to the changes of the hole size, hole location, and the bearing length, with the parameters of hole size and hole location having the largest effect on the web crippling reduction factor. However, the web crippling strength reduction factor remains stable when the temperature is changed from 20 to 700 degrees C. Based on the parametric analysis results, the web crippling strength reduction factors for both ambient and elevated temperatures are proposed, which outperformed the equations available in the literature and in the design guidelines of American standard (AISI S100-16) and Australian/New Zealand standard (AS/NZS 4600:2018) for ambient temperatures. Then, a reliability analysis was conducted, the results of which showed that the proposed design equations could closely predict the reduced web crippling strength of CFS channel sections under interior-one-flange loading conditions at elevated temperatures.
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页数:22
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