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Plastic hinge relocation in reinforced concrete beams using Cu-Al-Mn SMA bars

机译:使用Cu-Al-Mn SMA钢筋在钢筋混凝土梁中进行塑料铰链重定位

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Self-centering earthquake resistant systems have attracted the attention of researchers because of their promising potential in controlling seismic residual drifts, and, therefore, reducing the associated repair costs. The use of NiTi superelastic shape memory alloy (SMA) constitutes a considerable portion of this research. Cu-Al-Mn superelastic SMA has been recently developed to eliminate the high cost of Ni-Ti SMA, as well as, to have better machining characteristics. This paper explores the use of Cu-Al-Mn SMA bars to relocate the plastic hinge of concrete beams through an experimental numerical study. The cyclic performance of four beams was examined. The first was reinforced with steel bars and the remaining three were reinforced with combination of SMA and steel bars. The location of the SMA bars was different for each of the examined beams. The beams were loaded such that the moment diagram is zero at midspan and maximum at the ends to simulate the expected seismic moments. Results of the experimental numerical investigation confirmed the recentering capability of SMA RC beams. Relocating the plastic hinge, by placing Cu-Al-Mn SMA bars away from the beam ends, improved the strength, rigidity, and energy dissipation.
机译:自定心抗震系统因其在控制地震残余漂移方面的潜在潜力而吸引了研究人员的注意力,因此降低了相关的维修成本。 NiTi超弹性形状记忆合金(SMA)的使用构成了这项研究的重要部分。最近开发了Cu-Al-Mn超弹性SMA,以消除Ni-Ti SMA的高成本以及具有更好的加工特性。本文通过实验数值研究探索了使用Cu-Al-Mn SMA棒重新定位混凝土梁的塑料铰链。检查了四个光束的循环性能。第一个用钢筋加固,其余三个用SMA和钢筋组合加固。对于每个检查的光束,SMA条的位置都不同。加载梁,使得弯矩图在中跨处为零,在端部处为最大值,以模拟预期的地震矩。实验数值研究的结果证实了SMA RC梁的对中能力。通过将Cu-Al-Mn SMA棒放置在远离梁端的位置来重新定位塑料铰链,从而提高了强度,刚度和能量耗散。

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