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Major axis steel joint under torsion: Stiffness and strength characterization

机译:扭转下的长轴钢接头:刚度和强度表征

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Torsional effects in joints need to be investigated in order to get a complete model of the joint and also to assess the real boundary conditions for the lateral torsional effects in the beams of structural frames. Phenomena such as: torsion, warping, lateral buckling, etc. are usually analysed assuming simplified boundary conditions, namely pinned or rigid, in frame analysis which can lead to erroneous and non-conservative results.With the aim of knowing the correct boundary conditions and real behaviour of the joints under torsion, an experimental program is carried out consisting of two tests of mayor axis doubled extended bolted end plate joints subjected to torsion about the axis along the length of the beam. These experimental results have allowed the validation of the finite element models carried out using the program Abaqus. Once the models are validated models, a parametric study is performed to assess the stiffness and resistance. This study also verifies that these joints behave in a semi-rigid way when compared with the torsional characteristics of the attached beam. Besides, the beam fails prior to the connection in most cases, and therefore, the joints can be assumed to behave as full-strength.Analytical expressions are proposed and checked with the FEM results proving that the proposed analytical formulae and the proposed mechanical model can predict the stiffness quite accurately, with an average error of 8.5%. Despite these joints can be classified as full-strength under torsion, an assessment of their resistance is done as well.
机译:为了获得完整的关节模型并评估结构框架梁中的横向扭转效应的真实边界条件,还需要研究节点的扭转效应。通常在框架分析中假设简化的边界条件(例如钉扎或刚性)来分析诸如扭转,翘曲,横向屈曲等现象,这可能会导致错误和非保守的结果。根据受扭接头的真实行为,进行了一个实验程序,该试验程序包括两个对市长轴加倍的螺栓固定端板接头进行两次测试的过程,这些接头沿梁的长度绕轴发生扭转。这些实验结果允许验证使用程序Abaqus进行的有限元模型。一旦模型经过验证,就可以进行参数研究以评估其刚度和阻力。这项研究还验证了与连接梁的扭转特性相比,这些接头的行为是半刚性的。此外,在大多数情况下,梁在连接之前就失效了,因此可以假定接头具有全强度。提出了解析表达式,并用有限元方法进行了验证,证明所提出的解析公式和所提出的力学模型可以可以非常准确地预测刚度,平均误差为8.5%。尽管这些关节在扭转下可以被分类为全强度,但也可以评估它们的抵抗力。

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