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Modelling beam-to-girder semi-rigid composite connection with angles including the effects of concrete tension stiffness

机译:模拟梁到梁的半刚性组合连接,其角度包括混凝土抗拉刚度的影响

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The present paper aims to propose a theoretical model for beam-to-girder steel-concrete composite connection. Typical web and seat angles connection was investigated in order to define its moment-rotation behaviour, including the initial stiffness, bending strength and rotational capacity. The proposed theoretical model describes the semi-rigid response of the connection and incorporates the tension stiffening effects of the concrete slab by means of a four parameter power function in which the concrete stiffness and cracking evolution are taken into account.rnThe comparison between the theoretical model and the experimental results of four cruciform-type tests, including two types of connections, with and without web angles, resulted in accurate validation of the proposed moment vs. rotation model and allowed concluding on the importance of the presence of the web angles, which strongly contribute to the control of the concrete cracking process. In addition, the experimental results confirmed fundamental assumptions of the composite semi-rigid connections, as the effect of the concrete before and after cracking stabilization, the actual contribution of the bolts of the web connection and the shear lag effect in the slab.
机译:本文旨在为梁-梁钢-混凝土组合连接提出理论模型。为了确定其力矩-旋转行为,包括初始刚度,弯曲强度和旋转能力,对典型的腹板和座椅角连接进行了研究。所提出的理论模型描述了连接的半刚性响应,并通过考虑混凝土刚度和裂纹发展的四参数幂函数,结合了混凝土板的拉伸刚度效应。以及四种十字形测试的实验结果,包括两种连接方式(带或不带腹角),都可以对所提出的力矩与旋转模型进行准确验证,并可以得出存在腹角的重要性的结论。有助于控制混凝土开裂过程。此外,实验结果证实了复合半刚性连接的基本假设,即混凝土在裂缝稳定前后的影响,腹板连接螺栓的实际贡献以及板中的剪切滞后效应。

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