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Mechanical Properties of Two Kinds of New Cold-Formed Flange-Closed Welding Section Members
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作者 武胜 《沈阳建筑大学学报(自然科学版)》 CAS 北大核心 2011年第6期1021-1032,共12页
The hollow flange beam(HFB) is a unique cold-formed steel section developed in Australia for use as a flexural member.It′s a particular cross section with two torsion rigid closed triangular flanges and a comparative... The hollow flange beam(HFB) is a unique cold-formed steel section developed in Australia for use as a flexural member.It′s a particular cross section with two torsion rigid closed triangular flanges and a comparatively flexible web,and it is a type of high efficient cross section.This paper presents two kinds of new cold-formed flange-closed welding sections named HF1 and HF2 according to different section component and parameters of HFB.Nonlinear finite element method has been adopted to investigate the mechanical properties such as buckling mode,deformation process,rigidity,ductility and correlation curve of two kinds of new section members which being subjected to axial compression,flexure,combined compression and bending.Systematical comparisons of the consumed steel quantities of per unit load carrying capacity between new section members and the same section dimensions of cold-formed C-section members have been carried out.Some conclusions can be drawn from above work that the new sections have some superior properties including higher load carrying capacity and section modulus,sufficient section stiffness,and difficult occurrence for the sub element local buckling.The new sections are suitable for bearing flexure,compression,combined compression and bending.The new sections′ consumed steel quantities of per unit load carrying capacity are almost half as those of the same dimension C-section members′.The experimental investigation is carried out further on the new cold-formed flange-closed welding section members and can be used in the practical engineering. 展开更多
关键词 hollow flange beam cold-formed steel members finite element analysis mechanical properties
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Full-Range Compressive Stress-Strain Curves for Cold-Formed 304 Stainless Steel Circular Hollow Sections After Exposure to Vacuum Brazing 被引量:1
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作者 Bin Hu Yang Jin Lin-Zhi Wui 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2018年第5期557-572,共16页
With the rapid development of microscale cellular structures, the small-diameter cold-formed welded stainless steel tubes have recently been used for creating the metallic lat- tice topologies with high mechanical pro... With the rapid development of microscale cellular structures, the small-diameter cold-formed welded stainless steel tubes have recently been used for creating the metallic lat- tice topologies with high mechanical properties. In this paper, to obtain the accurate material properties of the circular hollow section (CHS) under pure compression, a series of concentric compression tests are conducted on the millimeter-scale cold-formed 304 stainless steel circu- lar tubular stub columns after exposure to a vacuum brazing process. The tests cover a total of 18 small-diameter stub tubes with measured thickness-to-diameter ratios (t/D) from 0.023 to 0.201. A generalized three-stage nominal stress-strain model is developed for describing the compressive behavior of the post-brazing CHSs over the full strain range. This mechanical model is especially applicable to computer code implementation. Hence, an interactive computer pro- gram is developed to simultaneously optimize three strain hardening exponents (n1, n2, n3) in the expression of the model to produce the stress-strain curve capable of accurately replicating the test data. To further reduce the number of the model and material parameters on which this model depends, this paper also develops five expressions for determining the 2.5% proof stress (ap2), n2, the ultimate compressive strength (σp3), n3, and the ultimate plastic strain (p3%) for given experimental values of three basic material parameters (E0, σ0.01, σ0.2). These expressions are validated to he effective for the CHSs with t/D 〉_ 0.027. The analytically predicted full-range stress-strain curves have generally shown close agreement with the ones obtained experimentally. 展开更多
关键词 Compression test Stress-strain curve cold-formed 304 stainless steel Circular hollow section (CHS) Post-brazing
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冷成型不锈钢矩形管截面受弯构件挠度计算方法 被引量:1
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作者 袁焕鑫 郭鹏 +1 位作者 郭宇 杜新喜 《建筑钢结构进展》 CSCD 北大核心 2022年第5期51-58,共8页
采用理论推导和有限元方法,对冷成型不锈钢矩形管截面受弯构件的挠度发展与计算方法进行研究。在考虑截面应力分布和弯角影响的基础上推导出截面边缘屈服弯矩的计算公式,通过与301个算例的数值积分结果进行比较,验证了该计算公式的准确... 采用理论推导和有限元方法,对冷成型不锈钢矩形管截面受弯构件的挠度发展与计算方法进行研究。在考虑截面应力分布和弯角影响的基础上推导出截面边缘屈服弯矩的计算公式,通过与301个算例的数值积分结果进行比较,验证了该计算公式的准确性。采用有限元软件ABAQUS建立了考虑几何初始缺陷和冷弯残余应力的精细有限元分析模型,依据现有试验结果对模型的准确性进行了验证。基于有限元分析结果对近似曲率法的初始刚度进行了修正,提出了修正的冷成型不锈钢矩形管截面受弯构件的挠度计算方法。将修正的计算方法与现有的其他3种计算方法进行比较,结果表明修正的近似曲率法计算公式能够更为准确地反映受弯构件的挠度发展。 展开更多
关键词 冷成型不锈钢 矩形管截面 受弯构件 挠度发展 计算方法
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不锈钢圆管受弯构件试验研究现状及规范对比分析
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作者 杨冉 郑宝锋 舒赣平 《江苏建筑》 2015年第1期19-23,31,共6页
为了研究不锈钢圆管受弯构件的承载能力,进行了国外3本不锈钢结构技术规范的对比,包括:欧洲不锈钢规范(EN1993-1-4:2006)、美国冷成型不锈钢设计规范(SEI/ASCE 8-02)、澳大利亚/新西兰不锈钢设计规范(AS/NZS 4673-2001),同时简要地介绍... 为了研究不锈钢圆管受弯构件的承载能力,进行了国外3本不锈钢结构技术规范的对比,包括:欧洲不锈钢规范(EN1993-1-4:2006)、美国冷成型不锈钢设计规范(SEI/ASCE 8-02)、澳大利亚/新西兰不锈钢设计规范(AS/NZS 4673-2001),同时简要地介绍了5本国外相关钢结构设计规范中圆管受弯承载力的设计方法;搜集了国内外学者进行的11根不锈钢圆管构件的受弯试验数据,其中包括4根奥氏体304圆管、3根奥氏体316L圆管和4根双相体2205圆管构件;采用国内外相关的8本规范中圆管受弯承载力设计公式对搜集到的试验数据进行了计算,结果表明:总体上采用各规范计算得到的圆管抗弯承载力均偏于保守,其中美国钢结构设计规范(ANSI/AISC 360-05)的计算结果与试验数据吻合最好。为我国《不锈钢结构设计规范》中圆管抗弯承载力的设计给出建议。 展开更多
关键词 不锈钢 圆管 受弯承载力 规范对比
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冷成型不锈钢管轴心受压柱试验研究 被引量:18
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作者 舒赣平 郑宝锋 沈晓明 《建筑结构学报》 EI CAS CSCD 北大核心 2013年第5期87-95,共9页
为研究冷成型不锈钢管轴心受压柱的稳定性能,进行了国产304牌号冷成型不锈钢方管、矩形管和圆管截面,共43根轴心受压柱试验。通过对不锈钢材料、轴压短柱试件和轴压长柱试件的试验研究,得到了试件的材料力学性能和极限荷载。分析了试件... 为研究冷成型不锈钢管轴心受压柱的稳定性能,进行了国产304牌号冷成型不锈钢方管、矩形管和圆管截面,共43根轴心受压柱试验。通过对不锈钢材料、轴压短柱试件和轴压长柱试件的试验研究,得到了试件的材料力学性能和极限荷载。分析了试件的长细比、宽厚比(径厚比)对其破坏模式及变形性能的影响。结果表明:试件的宽厚比(径厚比)对其破坏模式及变形性能有较大的影响。采用GB 50018—2002《冷弯薄壁型钢结构技术规范》、欧洲不锈钢结构设计规范、美国冷成型不锈钢结构设计规范中的计算方法以及Rasmussen提出的设计方法对试验试件进行了计算,并与试验数据对比结果表明,对于圆管试件,采用三本规范计算得到的承载力均高于试验值,偏于不安全,采用Rasmussen提出方法的计算结果与试验值较为接近;对于方矩管试件,各种方法计算结果相近,除短柱试件试验结果高于计算结果外,其余试件试验值均与计算结果吻合较好;GB 50018—2002《冷弯薄壁型钢结构技术规范》中的计算方法不能直接用于计算不锈钢管轴心受压柱承载力。 展开更多
关键词 不锈钢冷成型钢管 轴心受压短柱 轴心受压长柱 静力试验 受力性能
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