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SA-based concrete seismic stress monitoring: a case study for normal strength concrete

机译:基于SA的混凝土地震应力监测:以普通强度混凝土为例

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The stress history of concrete structures that have survived an earthquake can serve as a critical index to evaluate the health of the structure. There are currently few reliable monitoring methods to assess concrete stress after a seismic event. Piezoelectric-based smart aggregate (SA) provides an innovative experimental approach to monitor stress on concrete. The principle of SA-based concrete seismic stress monitoring is based on the assumption that concrete stress can be reliably predicted by the average output voltages of limited SAs with an acceptable margin of error. In this study, the meso-scale randomness of concrete was evaluated throughout the overall stress range of concrete and the influence of different load paths was considered. Four cylindrical specimens of normal strength concrete were embedded with a total of 24 SAs. The SA output sensitivity curve in the paths of loading-unloading with different amplitudes and monotonic loading up to failure was obtained. Monitoring errors were analyzed during pre- and post-peak stages from the experimental results. This research suggests that SA-based concrete seismic stress monitoring for normal strength concrete is reliable.
机译:在地震中幸存下来的混凝土结构的应力历史可以作为评估结构健康状况的关键指标。当前,几乎没有可靠的监测方法来评估地震事件后的混凝土应力。基于压电的智能骨料(SA)提供了一种创新的实验方法来监控混凝土上的应力。基于SA的混凝土地震应力监测的原理是基于这样的假设,即可以通过有限SA的平均输出电压可靠地预测混凝土应力,并具有可接受的误差范围。在这项研究中,评估了混凝土在整个应力范围内的细观尺度随机性,并考虑了不同载荷路径的影响。嵌入了四个普通强度混凝土圆柱试样,共包含24个SA。求出了在不同幅度的加载和卸载直至失效的单调加载路径上的SA输出灵敏度曲线。从实验结果分析了峰前和峰后阶段的监测误差。研究表明,基于SA的普通强度混凝土地震应力监测是可靠的。

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