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Shear strengthening of slender reinforced concrete T-shaped beams using iron-based shape memory alloy strips

机译:采用铁基形状记忆合金条剪切加强细长钢筋混凝土T形梁

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Recent research works have shown the feasibility of using iron-based shape memory alloys (Fe-SMAs) in structural rehabilitation projects, especially for flexural strengthening. As for the shear strengthening of reinforced concrete (RC) beams with SMAs, most previous works have used small-scale members. This paper presents an experimental campaign involving eight tests run with real-scale RC beams. The total length of the beams was 5800 mm, and their T-shape cross-section was 550 mm deep. External strengthening was done using Fe-SMA strips with a U-configuration. Strips were characterized before being used for the strengthening application. The key results are herein presented. All the beams failed in shear. Tests showed an increase of around 30% in the shear strength of the retrofitted beams versus the reference beams, and flexural capacity was practically reached. For service loads, active strengthening was useful for delaying the appearance of cracks and reducing their widths. However, the U-configuration used for the strips implied having to anchor them to the web, which probably weakened the flange-web connection and impeded the correct transfer of the tensile stresses between the longitudinal tensile reinforcement and the compression flange, which resulted in less ductile behavior than expected.
机译:最近的研究工作表明,在结构康复项目中使用铁基形状记忆合金(FE-SMA)的可行性,特别是对于弯曲强化。至于用SMA的钢筋混凝土(RC)梁的剪切强化,最先前的作品使用了小规模成员。本文介绍了涉及八个试验的实验活动,使用实际RC梁运行。光束的总长度为5800mm,其T形横截面为550毫米。使用Fe-Sma条带有U形配置来完成外部强化。在用于加强应用之前表征了条带。关键结果在此提出。所有光束都在剪切中失败。测试显示在改装梁的剪切强度与参考光束的剪切强度增加约30%,并且实际达到弯曲能力。对于服务负载,主动强化可用于延迟裂缝的外观并降低其宽度。然而,用于条带的U形配置意味着必须将它们锚定到幅材上,这可能削弱了凸缘卷筒纸连接并阻碍了纵向拉伸加强件和压缩凸缘之间的拉伸应力的正确转移,这导致较少韧性行为比预期。

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