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Cyclic flexural tests of hybrid steel-precast concrete beams with simple connection elements

机译:具有简单连接元件的混合钢预制混凝土梁的循环弯曲试验

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A hybrid H-steel-precast concrete (HSPC) beam system with a simple ductile connection was developed to overcome the limitations of a conventional hybrid beam system with a bolt connection between the H-steel beams supported by columns and H-steel beams embedded into the concrete beams. The developed HSPC beam system has three different sections: H-steel, joint, and reinforced concrete sections. To examine the effectiveness on the moment resistance and ductile performance of the developed HSPC beam system, five fixed-end beam specimens were tested under reversed cyclic one-point concentrated top loads at mid-span. The prepared specimens were designed as follows: H1.0, H0.5, and H0.25 were used to evaluate the effect of the location of the joint on the flexural behavior of the developed HSPC beam; P0.5 was used to introduce the prestressing force; and S0.5 was used to examine the effect of the lap splices of the headed longitudinal reinforcing bars on the stress transfer at a joint. The flexural capacity of the fixed-end HSPC beams was evaluated based on the virtual work principle under the assumption of rigid joints at the connection of the steel and concrete beams. None of the beam specimens showed shear cracks or splitting tensile cracks around the joint region until the beam failed, unlike in the conventional hybrid beam system with a bolt connection. The developed HSPC beam retained a ductility comparable to that of conventional RC beams. From the measured crack propagation, cyclic load displacement curve, consistency of the recorded strain distribution along the beam length with the calculations, and agreement between the ultimate loads and the calculated collapse loads, the proposed joint element connecting the H-steel and RC beams can be regarded as a rigid connection, resisting the applied moments. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了克服传统的混合梁系统的局限性,即在柱支撑的H型钢梁与嵌入其中的H型钢梁之间采用螺栓连接的方式,开发了一种具有简单延性连接的混合H型钢预制混凝土(HSPC)梁系统混凝土梁。发达的HSPC梁系统具有三个不同的部分:H型钢,接缝和钢筋混凝土部分。为了检查已开发的HSPC梁系统在抗弯矩和延性性能方面的有效性,在中跨条件下,在反向循环单点集中顶部荷载下测试了五个固定端梁样本。制备的标本设计如下:使用H1.0,H0.5和H0.25评估接头位置对展开的HSPC梁的弯曲行为的影响。 P0.5用于引入预应力;用S0.5检验带头纵向钢筋的搭接对接头处应力传递的影响。在假定钢和混凝土梁连接处有刚性接缝的情况下,根据虚拟工作原理评估了固定端HSPC梁的抗弯能力。与传统的带螺栓连接的混合梁系统不同,在梁失效之前,没有一个梁试样在接头区域周围显示出剪切裂纹或分裂拉伸裂纹。发达的HSPC光束具有与传统RC光束相当的延展性。根据所测得的裂纹扩展,循环载荷位移曲线,所记录的沿梁长度的应变分布与计算的一致性以及极限载荷与所计算的坍塌载荷之间的一致性,所提出的连接H型钢和RC梁的节点可以被视为刚性连接,抵抗施加的力矩。 (C)2016 Elsevier Ltd.保留所有权利。

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