首页> 外文期刊>Journal of structural engineering >Branch Plate-to-Circular Hollow Structural Section Connections. II: X-Type Parametric Numerical Study and Design
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Branch Plate-to-Circular Hollow Structural Section Connections. II: X-Type Parametric Numerical Study and Design

机译:分支板到圆形空心结构截面连接。 II:X型参数数值研究与设计

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This paper presents a numerical finite-element parametric study on the behavior of transverse or longitudinal X-type plate-to-circular hollow section connections loaded under branch plate tension or compression, to evaluate the suitability of present international (CIDECT) design recommendations, the effect of boundary conditions and chord length, and the influence of applied chord normal stress. A total of 449 connections with wide-ranging values of geometric properties and chord normal stress levels were modeled and analyzed using commercially available software. An analysis of the effect of chord length determined that, to exclude the influence of chord end boundary conditions, an effective chord length of at least 10 times the chord diameter should be used for experimental and numerical studies. Further, the present CIDECT chord stress functions (Q_f) provide an acceptable lower bound for all connections examined. Evaluation of present CIDECT partial design strength functions (Q_u) indicated general conservatism, lack of plate thickness incorporation, and underutilization of tension-only connections. Partial design strength functions, determined through regression analysis, are hence proposed with lower-bound reduction (resistance) factors.
机译:本文提供了一种数值有限元参数研究,用于研究在支板受拉或受压的情况下横向或纵向X型板-圆形空心截面连接的行为,以评估当前国际(CIDECT)设计建议的适用性,边界条件和和弦长度的影响,以及施加的和弦法向应力的影响。使用商业软件对总共449个具有广泛几何特性值和弦法向应力水平的连接进行了建模和分析。对弦长影响的分析确定,要排除弦端边界条件的影响,有效弦长至少应为弦直径的10倍,用于实验和数值研究。此外,当前的CIDECT弦应力函数(Q_f)为所有检查的连接提供了可接受的下限。对当前CIDECT局部设计强度函数(Q_u)的评估表明,总体保守性,缺乏板厚结合以及仅利用张力连接的利用不足。因此,提出了通过回归分析确定的部分设计强度函数,并具有下界减小(阻力)因子。

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