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首页> 外文期刊>Journal of aerospace engineering >Experimental Study of RC Prefabricated Shear Walls with Shear Keys Affected by a Slotted Floor Slab
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Experimental Study of RC Prefabricated Shear Walls with Shear Keys Affected by a Slotted Floor Slab

机译:开槽楼板影响剪力键的钢筋混凝土预制剪力墙的试验研究

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摘要

Prefabricated RC shear walls are widely used in practical engineering due to their convenient construction. For ease of transport, they are commonly divided into smaller limbs and assembled on site. Steel panel shear keys are therefore adopted to connect the wall limbs and ensure assembly strength and ductility. However, the relative displacement between precast wall limbs can lead to severe damage of floors and, conversely, the wall limbs may be damaged due to the uncoordinated deformation of floor slabs. To this end, the present paper proposes a slotted floor slab with polystyrene-infilled slots set near the wall limbs for increasing the independence of the deformation of limbs. The study focused on the interaction of shear wall limbs and slotted floors. Three specimens of reinforced concrete prefabricated shear walls with shear keys were designed: (1) one specimen without floor slabs; (2) one specimen equipped with a conventional floor slab; and (3) one specimen with a slotted floor slab. Quasi-static tests were conducted, which revealed that conventional floor slabs can increase the lateral resistance and stiffness of the specimen while sacrificing ductility. The slotted floor slabs, in comparison, guarantee deformation ability without weakening the dry-connected shear walls. Above all, floor slabs are better protected if slots are set to release concentrated deformation. (c) 2019 American Society of Civil Engineers.
机译:预制RC剪力墙施工方便,因此在实际工程中得到了广泛的应用。为了便于运输,通常将它们分成较小的肢体并在现场组装。因此,采用钢板剪力键来连接墙肢,并确保组装强度和延展性。但是,预制墙肢之间的相对位移会导致地板的严重损坏,反之,由于楼板的不协调变形,可能损坏墙肢。为此,本文提出了一种开缝地板,其在壁肢附近设置有填充聚苯乙烯的狭缝,以增加肢体变形的独立性。该研究集中于剪力墙肢和开槽地板的相互作用。设计了三个带有剪切键的钢筋混凝土预制剪力墙试样:(1)一个没有楼板的试样; (2)一个装有常规地板的样本; (3)一个带有开缝地板的样品。进行了准静态测试,结果表明,传统的楼板可以在增加延展性的同时增加试样的侧向阻力和刚度。相比之下,开槽的楼板可确保变形能力,而不会削弱干式剪力墙。最重要的是,如果设置槽缝以释放集中变形,则可以更好地保护楼板。 (c)2019美国土木工程师学会。

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