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Experimental assessment of the ultimate performance and lateral drift behaviour of precast concrete building cores

机译:预制混凝土建筑内核极限性能和横向漂移行为的实验评价

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摘要

Precast concrete building cores are a widely used lateral load resisting system in low and mid-rise multi-storey buildings. However, despite their widespread use in countries like Australia or New Zealand, a very little research or experimental testing has been undertaken to assess their lateral drift behaviour. This article will present the findings and observations of a recent experimental testing programme into reinforced concrete precast building cores, which included three large-scale 'box-shaped' precast building core specimens. Adjacent panels in each specimen were connected together using welded stitch plate connections and then connected to foundation blocks on the top and bottom using grout tube connections. The results of the testing showed that the welded stitch plate connections were too flexible to allow full composite action to be developed in the cross-section, which meant the precast building core specimens were around 25% more flexible than an equivalent cast in-situ version. The testing also highlighted common detailing and construction deficiencies that can severely inhibit the ductility of the core.
机译:预制混凝土建筑芯是低于和中升多层建筑物的广泛使用的横向载荷系统。然而,尽管在澳大利亚或新西兰这样的国家广泛使用,但已经进行了很少的研究或实验测试,以评估其横向漂移行为。本文将在钢筋混凝土预制建筑内核中介绍最近的实验测试程序的调查结果和观察,包括三种大型“箱形”预制建筑核心标本。每个样品中的相邻面板使用焊接的缝线连接连接在一起,然后使用灌浆管连接连接到顶部和底部的基础块。测试结果表明,焊接的缝线连接太柔韧,以允许在横截面中开发的完全复合动作,这意味着预制建筑核心样本比同等铸造的原位版本更灵活约25%。 。该测试还强调了常见的细节和施工缺陷,可以严重抑制核心的延展性。

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