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Behavior of slender square steel tubular columns filled with fresh concrete and demolished concrete lumps

机译:细长方形钢管柱充满新鲜混凝土和拆除混凝土块的行为

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Adding large-size demolished concrete lumps (DCLs) into the core of concrete-filled steel tubes (CFTs), a proposal by the authors and co-workers, has been demonstrated to be a practicable alternative means for old concrete recycling. This paper reports preliminary results of an experimental campaign newly implemented concerning the structural behavior of slender square steel tubular columns filled with DCLs and fresh concrete (FC). The replacement ratio of FC by DCLs and the load eccentricity were chosen as the two primary variables. The presented research focuses on the evaluation of the ultimate strength of the aforementioned columns. Design provisions in current codes of practice specified for conventional CFTs were used to check their applicability to the columns studied. The experimental outcomes indicate that: (1) the encasement by the outer square steel tube and the inherent cohesion between DCLs and FC ensured the integrity of inner concrete, thus the failure mode of the columns filled with FC and DCLs was similar to their counterparts filled with FC alone; (2) the initial stiffness, peak load, and post-peak response of the specimens appeared to be influenced only to a rather limited extent by the addition of DCLs; (3) the ultimate strengths of the concentrically and the eccentrically loaded specimens incorporating DCLs can be satisfactorily estimated by the design code Eurocode 4: 2004 and GB 50936-2014, respectively.
机译:将大型拆除混凝土块(DCLS)添加到混凝土钢管(CFT)的核心,由作者和同事提出,已被证明是旧混凝土回收的可行替代方法。本文报告了新实施的实验活动的初步结果,了解填充有DCLS和新混凝土(FC)的细长方形钢管柱的结构行为。选择DCLS和负载偏心的Fc的替换比作为两个主要变量。本研究重点介绍了上述柱的最终强度的评价。用于传统CFT规定的当前实践代码的设计规定用于检查他们对所研究的列的适用性。实验结果表明:(1)由外方形钢管和DCLS和FC之间的固有内聚力确保内部混凝土的完整性,因此填充FC和DCLS的柱的故障模式类似于其填充的对应物单独使用FC; (2)初始刚度,峰值负荷和样本的后峰值响应似乎仅通过添加DCLS来影响相当有限的程度; (3)所同心的最终强度和结合DCLS的偏心装载的样本可以分别通过设计代码4:2004和GB 50936-2014令人满意地估计。

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