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Kinematics of Corrosion Damage Monitored by Acoustic Emission Techniques and Based on a Phenomenological Model

机译:基于声发射技术并基于现象学模型的腐蚀损伤运动学

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Corrosion of reinforcing steel bar is a critical issue in concrete structures. In response, a variety of techniques have been developed for early detection of corrosion phenomena, including nondestructive evaluation (NDE) techniques. Recently, we have reported that continuous acoustic emission (AE) monitoring is applicable to identify the onset of corrosion and the nucleation of corrosion-induced cracks due to the expansion of corrosion products. In order to clarify the kinematics of these AE activities in concrete, cyclic wet and dry tests on reinforced concrete beams were performed. The SiGMA (Simplified Green's functions for Moment tensor Analysis) procedure was applied to AE waveforms to locate micro-cracks and to determine kinematic information about crack types and orientations of corrosion-induced cracks. These results are visually confirmed through comparison with cracking mechanisms observed by a scanning electron micro-graph (SEM).
机译:钢筋的腐蚀是混凝土结构中的关键问题。作为响应,已经开发了用于早期检测腐蚀现象的多种技术,包括非破坏性评估(NDE)技术。最近,我们报道了连续声发射(AE)监测可用于识别腐蚀的发生以及由于腐蚀产物的膨胀而引起的腐蚀诱发的裂纹的形核。为了阐明这些AE活动在混凝土中的运动学,对钢筋混凝土梁进行了循环的干湿试验。将SiGMA(矩张量分析的简化格林函数)过程应用于AE波形,以定位微裂纹并确定有关裂纹类型和腐蚀诱导裂纹方向的运动学信息。通过与通过扫描电子显微图(SEM)观察到的破裂机理的比较,从视觉上证实了这些结果。

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