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Stress concentration factors of cold-formed high strength steel tubular T-joints

机译:冷成型高强度钢管T关节应力集中因子

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A test programme looking into the stress concentration factors (SCF) of cold-formed high strength steel (CFHSS) traditional (without brace and/or chord rotation) and member-rotated tubular T-joints is described in this paper. The brace members of traditional T-joints were made of square, rectangular and circular hollow sections (SHS, RHS and CHS), while the brace members of member-rotated T-joints were made of SHS and RHS. On the other hand, the chord members of traditional and member-rotated tubular T-joints were made of SHS. In this study, member-rotated T-joints, include brace-rotated (BR), square bird-beak (SBB) and diamond bird-beak (DBB) tubular T-joints. The tubular members were cold-formed from thermomechanical control processed (TMCP) S900 and S960 steel grades plates. A total of 12 tests was conducted in this experimental investigation. An axial compression load was applied through the brace member, while the chord ends were supported on rollers. The brace and chord members of tubular T-joints were connected using the robotic gas metal arc welding process. The values of normal brace width-to-chord width ratio (beta) ranged from 0.33 to 0.73, effective brace width-to-chord width ratio (beta') ranged from 0.40 to 0.87, brace thickness-to-chord thickness ratio (tau) ranged from 0.66 to 1.28 and chord width-to-chord thickness ratio (2 gamma) ranged from 20.6 to 39.0. The quadratic extrapolation method was used to estimate hot spot strains at the weld toes using the strains measured in the extrapolation regions. The experimental SCF values of CFHSS traditional and member-rotated tubular T-joints were compared with the SCF values obtained from the parametric equations given in the CIDECT (Zhao et al., 2001, [1]) and studies (Tong et al., 2013, [2]; Li et al., 2018, [3]; Tong et al., 2015, [4]). It was found that the existing SCF parametric equations given in the literature (Zhao et al., 2001, [1]; Tong et al., 2013, [2]; Li et al., 2018, [3]; Tong et al., 2015, [4]) could not accurately predict the SCF of cold-formed traditional and member-rotated tubular T-joints made of S900 and S960 steel grades.
机译:本文描述了调查冷成型高强度钢(CFHSS)的应力集中因子(SCF)的测试程序(没有支撑和/或弦旋转)和构件旋转管状T关节。传统T关节的支撑构件由正方形,矩形和圆形中空部分(SHS,RHS和CH)制成,而成员旋转的T关节的支撑构件由SHS和RHS制成。另一方面,传统和成员旋转管状T关节的弦成员由SHS制成。在该研究中,成员旋转的T关节包括支撑旋转(BR),方鸟喙(SBB)和金刚石鸟喙(DBB)管状T关节。管状构件由热机械控制处理(TMCP)S900和S960钢等级板冷却。在该实验研究中共进行了12个测试。通过支架构件施加轴向压缩负荷,而弦末端支撑在辊上。使用机器人气金属电弧焊接工艺连接管状T关节的支架和弦成员。正常支架宽度至弦宽比(β)的值范围为0.33至0.73,有效支撑宽度至弦宽比(β')范围为0.40至0.87,支撑厚度至弦厚度(TAU) )范围为0.66至1.28,弦宽至弦厚度(2伽马)的距离为20.6至39.0。使用在外推区域中测量的菌株来使用二次外推方法来估计焊接脚趾的热点菌株。将CFHSS传统和成员旋转管状T关节的实验SCF值与从CIDECT中给出的参数方程获得的SCF值进行比较(Zhao等,2001,[1])和研究(Tong等人, 2013,[2];李等人,2018年,[3]; Tong等,2015,[4])。发现文献中的现有SCF参数方程(Zhao等,2001,[1]; Tong等,2013,[2];李等,2018,[3]; Tong等。,2015,[4])无法准确预测由S900和S960钢等级制成的冷形成传统和成员旋转管状T关节的SCF。

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