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首页> 外文期刊>Journal of Constructional Steel Research >Numerical study and design of skewed X-type branch plate-to-circular hollow section connections
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Numerical study and design of skewed X-type branch plate-to-circular hollow section connections

机译:斜X型支盘-圆形空心截面连接的数值研究与设计。

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摘要

Structural systems, including space-frames, cable stayed roof systems and bridges, with elements that intersect at non-orthogonal angles necessitating rotated and complex connection geometries, have become commonplace. Non-orthogonal plate-to-circular hollow section (CHS) connections with branch members rotated about their own axis (skewed) have been absent in international literature and design guidelines. A numerical finite element parametric study is presented on the behaviour of skewed X-type plate-to-CHS connections loaded under branch plate tension. A total of 91 connections with wide-ranging values of geometric properties were modelled and analysed using commercially available finite element software. The numerical finite element analysis indicated a smooth sigmoidal (S-shaped) transition between longitudinal and transverse orthogonal extremes. A non-linear interpolation function was developed, for application between longitudinal and transverse design recommendations, that adequately predicts skewed connection behaviour over a wide range of geometric connection configurations. A partial design strength function for skewed X-type plate-to-CHS, which builds on existing design recommendations for non-skewed plate connections, is hence proposed with lower bound reduction (resistance) factors.
机译:结构系统,包括空间框架,斜拉屋顶系统和桥梁,其元素以非正交的角度相交,从而需要旋转和复杂的连接几何结构,这已变得司空见惯。国际文献和设计指南中不存在带有绕其自身轴旋转(倾斜)的分支构件的非正交板对圆空心部分(CHS)连接。数值有限元参数研究提出了偏斜X型板到CHS连接在支板张力下的行为。使用商业上可用的有限元软件对总共91个具有广泛几何特性值的连接进行了建模和分析。数值有限元分析表明,在纵向和横向正交极限之间有一个平滑的S形(S形)过渡。为在纵向和横向设计建议之间应用,开发了非线性插值函数,该函数可以在广泛的几何连接配置范围内充分预测偏斜的连接行为。因此,提出了针对偏斜X型板到CHS的部分设计强度函数,该函数基于对非偏斜板连接的现有设计建议而提出,具有较低的边界减小(电阻)因子。

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