Performance of column-to-column mechanical connection in precast concrete building under seismic loading

Ahmed D. Abdulateef, Ammar A. Abdul Rahman
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Abstract

Precast columns in precast concrete structures with floor heights require connections that need confident, reliable, and cost-effective design and implementation methods that can speed up both processes. At the same time, still ensure adequate strength, stiffness, and ductility to the column behavior. Columns specifically have the main role in structures for transmitting vertical and horizontal loads due to seismic effects to the base to fulfill life safety requirements, but the existence of a connection in the column cannot ensure the required. This work aims to study the performance and efficiency of mechanical bolted column connections under the action of seismic loading. In this regard, a column connection used in the precast structure of the new Karbala Provincial Council (KPC) under seismic loading is used as the case study. This building was analyzed and then designed employing special mechanical bolted connections produced by Peikko’s products (Column-shoe & Anchor bolts). The analysis gave the exact forces at the connection location and the design using Peikko’s column connection performed well under all loading cases including the seismic case. The analysis and design lead to smaller column section selection since it takes into account the interaction of applied loads using special equations.
地震荷载作用下预制混凝土建筑柱对柱力学连接性能研究
在地板高度的预制混凝土结构中,预制柱需要连接,需要自信、可靠、经济高效的设计和实施方法,可以加快这两个过程。同时,仍然保证足够的强度、刚度和延性给柱的性能。在结构中,柱的主要作用是将地震作用引起的竖向和水平荷载传递给基础,以满足生命安全要求,但柱中存在连接并不能保证这一要求。本文旨在研究地震荷载作用下机械螺栓柱连接的性能和效率。在这方面,在地震荷载下,新卡尔巴拉省议会(KPC)的预制结构中使用的柱连接作为案例研究。对该建筑进行了分析,然后采用Peikko产品生产的特殊机械螺栓连接(柱鞋和地脚螺栓)进行设计。分析给出了连接位置的确切力,采用Peikko柱连接的设计在包括地震情况在内的所有荷载情况下都表现良好。由于采用特殊方程考虑了外加荷载的相互作用,分析和设计使柱截面选择更小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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