Experimental Study on Mechanical Coupler Splices in Reinforced Concrete Beams under Cyclic Flexural Loading

Jafar Aji Pramono, Ashar Saputra, Bambang Supriyadi
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Abstract

This study presents an experiment on the utilization of rebar waste as a mechanical coupler splice material on the reinforced concrete beam. The purpose of using rebar waste is to save costs in a construction project. Experiments were conducted with 3 test specimens, which are reinforced concrete beam without coupler splice (B-13NC), reinforced concrete beam with 19 mm diameter coupler splice (B-13C19) and reinforced concrete beam with 22 mm coupler splice with welding (B-13C22W). Each coupler splice was installed in the plastic hinge area of the beam to determine the maximum capability of the coupler splice. Tests were conducted under cyclic flexural loading on the reinforced concrete beam. The results showed that the 22 mm diameter coupler splice at B-13C22W has almost the same strength as the reinforced concrete beam without coupler splice (B-13NC). However, the 19 mm diameter coupler splice has a significant decrease in strength, which is more than 30% of the strength of the reinforced concrete beam without a coupler splice (B-13NC). This experiment also shows that the utilization of a coupler splice in the reinforced concrete beams results in a decrease in structural ductility.
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循环挠曲荷载下钢筋混凝土梁中机械耦合器拼接的实验研究
本研究介绍了利用钢筋废料作为钢筋混凝土梁机械耦合器拼接材料的实验。使用钢筋废料的目的是节约建筑工程成本。实验使用了 3 个试样,分别是不带耦合器拼接材料的钢筋混凝土梁(B-13NC)、带直径 19 毫米耦合器拼接材料的钢筋混凝土梁(B-13C19)和带焊接 22 毫米耦合器拼接材料的钢筋混凝土梁(B-13C22W)。每个耦合器接合器都安装在梁的塑性铰链区域,以确定耦合器接合器的最大能力。试验在钢筋混凝土梁的循环弯曲荷载下进行。结果表明,B-13C22W 处直径为 22 毫米的耦合器拼接处与不带耦合器拼接处的钢筋混凝土梁(B-13NC)具有几乎相同的强度。然而,直径为 19 毫米的耦合器拼接处的强度明显下降,是无耦合器拼接处钢筋混凝土梁(B-13NC)强度的 30% 以上。该实验还表明,在钢筋混凝土梁中使用耦合器拼接会导致结构延展性下降。
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