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Design model for bolted angle members in compression including joint stiffness

机译:压缩中螺栓角构件的设计模型,包括关节刚度

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Knowledge of type and size of rotational restraints at the member's ends (provided by the adjacent structure) is crucial for the prediction of the compression member capacity of bolted angles. This was highlighted by means of experimental and numerical investigations in the past. Due to the eccentric connection on only one angle leg, additional bending moments are acting on the member, leading to a complex load carrying behaviour with flexural and/or lateral torsional buckling phenomena.Detailed analytical models for the estimation of appropriate spring stiffness values have been developed for several practical applications in buildings with two-bolt connections at both member's ends. The investigated connection details comprise a simply fixed gusset plate (e.g. as attachment to concrete walls), a joint to the flange of an I-shaped section and a joint to the web of an I-shaped section via a gusset plate. Based on that, a design model was developed for bolted angle members with rotational spring restraints at the member's ends and an eccentric compression loading N, in order to calculate the compression capacity NR. The thereby determined resistances N-R,N-model are compared with the results of sophisticated 3D nonlinear finite element calculations NR,FE that consider the detailed joint configuration and the eccentric load introduction as well as equivalent geometric imperfections. It is shown that the resistances based on the proposed design procedure are slightly conservative compared to the real behaviour of the angle member. In addition, the large increase in capacity (compared to the simply supported reference case) is highlighted. (C) 2021 Elsevier Ltd. All rights reserved.
机译:关于成员端部的旋转限制的类型和尺寸的知识(由相邻结构提供)对于预测螺栓角的压缩构件容量至关重要。这是通过过去的实验和数值调查突出的。由于仅在一个角度腿上的偏心连接,额外的弯矩作用在构件上,导致具有弯曲和/或横向扭转屈曲现象的复载荷行为。估计适当的弹簧刚度值的估计的分析模型已经存在在两个成员端的两个螺栓连接中为建筑物中的几种实际应用开发。所研究的连接细节包括简单的固定角撑板(例如,作为混凝土壁的附着),通过角撑板将凸缘的凸缘和I形部分的接头的接头。基于此,为螺栓角构件开发了设计模型,该螺栓角构件在构件的末端处具有旋转弹簧限制和偏心压缩加载N,以便计算压缩容量NR。由此确定的电阻N-R,N模型与复杂的3D非线性有限元计算NR,FE的结果进行比较,以考虑详细的联合配置和偏心载荷引入以及等效的几何缺陷。结果表明,与角度构件的真实行为相比,基于所提出的设计过程的电阻是略微保守的。此外,容量的大幅增加(与简单支持的参考情况相比)突出显示。 (c)2021 elestvier有限公司保留所有权利。

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