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Experimental study on shear strengthening of shear critical RC beams using iron-based shape memory alloy strips

机译:铁基形状记忆合金带剪切临界RC梁的试验研究。

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摘要

Shape memory alloys (SMAs) have been introduced into structural engineering in recent years. This paper presents research results about developing a new methodology to actively strengthen reinforced concrete (RC) beams by low-cost iron-based SMA strips (Fe-SMA). These strips can transversally prestress, or confine, the cross-section of beams thanks to the shape memory effect of Fe-SMA, without having to apply prestressing force. Activation of strips is carried out by heating them up to 160 degrees C and then cooling them. An experimental campaign was carried out at two levels: characterization of Fe-SMA strips, and the practical application of the strengthening technique on small-scale beams without internal stirrups. The retrofitted beams with activated strips failed by bending, and the appearance of shear cracks was clearly delayed. Meanwhile, the reference beams failed due to shear.
机译:近年来,形状记忆合金(SMA)已被引入结构工程中。本文介绍了有关开发一种新方法的研究成果,该方法可以通过低成本的铁基SMA带(Fe-SMA)来积极加强钢筋混凝土(RC)梁。由于Fe-SMA的形状记忆效应,这些条带可以横向预应力或限制梁的横截面,而无需施加预应力。通过将条带加热到160摄氏度然后冷却来进行条带的激活。在两个级别上进行了实验活动:Fe-SMA条带的表征,以及在没有内部箍筋的小梁上加固技术的实际应用。带有激活条的翻新梁由于弯曲而失效,剪切裂纹的出现明显延迟了。同时,参考光束由于剪切而失效。

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