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Quasi-static test and strut-and-tie modeling of precast concrete shear walls with grouted lap-spliced connections

机译:灌浆搭接连接的预制混凝土剪力墙的拟静力试验及压杆与连接模型

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This paper discusses the seismic performance of nine full-scale shear walls including seven precast specimens and two cast-in-place specimens. The precast specimens were designed to emulate monolithic cast-in-place specimens. The precast upper shear wall and the base were connected at their interface through lap splice that one of the spliced bar was embedded into a grout-filled hole, which was reserved by metal bellow or expanded metal mesh. The geometries and reinforcement of precast specimens were identical with those of corresponding cast-in-place specimens in each group. But their stirrups were different. Based on the two types of grouted connections, the specimens were tested under low cyclic lateral loading to study their seismic performance by comparing their carrying capacities, crack patterns, ductility, hysteretic curves and energy dissipation. In general, shear walls with metal bellows at the joint exhibited better structural behaviour than the shear walls with expanded metal mesh due to their well confined effect on the spliced bars and surrounding concrete. Thus, this kind of precast connection may emulate cast-in-place connection. Lastly, a reasonable strut-and-tie model was developed based on ACI 318-14 code to investigate the force transfer mechanism of the precast shear wall. The calculated results were compared with the test results and the shear strength results calculated by empirical expression in the ACI 318-14 code. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文讨论了九个全尺寸剪力墙的抗震性能,包括七个预制标本和两个现浇标本。预制标本旨在模拟整体式现浇标本。预制的上部剪力墙和基座通过搭接接头在它们的界面处连接,其中一个接杆被埋入灌浆孔中,该孔由金属波纹管或金属网保留。预制试样的几何形状和增强与每组中相应的现浇试样的几何形状和增强相同。但是他们的马stir不同。基于两种灌浆连接,在低周期性侧向荷载下对标本进行了测试,通过比较其承载力,裂缝模式,延性,滞回曲线和能量耗散来研究其抗震性能。通常,在接头处带有金属波纹管的剪力墙比在带有扩展金属网的剪力墙方面表现出更好的结构性能,这是因为它们对拼接钢筋和周围混凝土的限制作用良好。因此,这种预制连接可以模拟现浇连接。最后,根据ACI 318-14规范开发了合理的拉杆-拉杆模型,以研究预制剪力墙的力传递机理。将计算结果与测试结果进行比较,并通过ACI 318-14代码中的经验表达式计算出剪切强度结果。 (C)2017 Elsevier Ltd.保留所有权利。

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