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Fatigue performance of RC beams strengthened with self-prestressed iron-based shape memory alloys

机译:自应力铁基形状记忆合金增强RC梁的疲劳性能

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The behavior of RC beams strengthened with self-prestressed NSM Iron-Based Shape Memory Alloy (Fe-SMA) bars under fatigue loading is experimentally investigated. Four beams divided into two sets are tested; the first set of beams is exposed to 6 million cycles of fatigue loading at different loading limits, while no fatigue loading is applied to the second set. Each set contains one control beam and one strengthened beam. The results of the first static load cycle indicates that strengthening with NSM Fe-SMA bars significantly improves the performance of the RC beams under service load conditions. During fatigue loading, the beam strengthened with NSM Fe-SMA performs much better than the control beam at relatively low levels of fatigue loading (when the upper and lower limit of the fatigue loading induces 0.294f(y) and 0.53f(y) stress in the tension steel of the control beam, respectively). The stiffness degradation of the strengthened beam stabilizes after two million loading cycles. However, higher load limits cause continued degradation in the bond between the Fe-SMA bar and the grouting material. This degradation causes higher stress levels at the anchors, which consequently provokes the rupture of the Fe-SMA bar at the anchors' location after 5.5 million loading cycles.
机译:实验研究了自应力预应力NSM铁基形状记忆合金(Fe-SMA)钢筋增强的RC梁在疲劳载荷下的行为。测试分为两组的四个光束;第一组梁在不同的载荷极限下承受了600万次疲劳载荷循环,而第二组没有施加疲劳载荷。每套包含一个控制梁和一个加强梁。第一个静态载荷循环的结果表明,使用NSM Fe-SMA钢筋进行加固可显着改善在工作载荷条件下的RC梁的性能。在疲劳载荷期间,用NSM Fe-SMA增强的梁在相对较低的疲劳载荷水平下比控制梁的性能要好得多(当疲劳载荷的上限和下限引起0.294f(y)和0.53f(y)应力时在控制梁的拉力钢中)。经过200万次加载循环后,加固梁的刚度退化趋于稳定。但是,较高的载荷极限会导致Fe-SMA棒材与灌浆材料之间的粘结力持续下降。这种降级会在锚固件上产生更高的应力水平,从而导致在550万次加载循环后,Fe-SMA钢筋在锚固件处破裂。

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