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A new guided wave-based technique for corrosion monitoring in reinforced concrete

机译:基于导波的钢筋混凝土腐蚀监测新技术

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摘要

Guided waves have been used in the past for monitoring corrosion and other damages in plates, rods, pipes, and reinforced concrete structures. Past investigations tried to relate the recorded signal strength to the extent of corrosion or other damage. The main disadvantage of this approach is that the signal strength is also affected by the bonding condition between the sensors and the structure. Over time, this bonding condition is bound to deteriorate, and therefore, one cannot say for sure if the change in the signal strength is due to corrosion or because of the deterioration of the attachment of the sensors to the structure. A new guided wave-based technique is proposed here, which investigates the change in the time of flight of the propagating wave in loaded reinforced concrete structures at various levels of corrosion. Corrosion affects the bonding strength between concrete and reinforcing steel altering the stress level in the reinforcing steel bar in a loaded beam. Since the wave speed is affected by the internal stress, an increase in corrosion level should affect the wave speed in a steel bar and the wave's time of flight through the bar. The main advantage of the proposed approach is that this result should not be affected by the bonding condition between the sensor and the structure. How delamination at the bar-concrete interface affects the signal strength and the effect of induced corrosion in free bars as well as in bars embedded in the concrete are also investigated.
机译:过去,导波已用于监视板,杆,管道和钢筋混凝土结构中的腐蚀和其他损坏。过去的研究试图将记录的信号强度与腐蚀或其他损坏程度联系起来。这种方法的主要缺点是信号强度还受到传感器和结构之间的粘合条件的影响。随着时间的流逝,这种结合条件必然会恶化,因此,不能确定地说信号强度的变化是由于腐蚀还是由于传感器在结构上的附着力下降引起的。本文提出了一种新的基于导波的技术,该技术研究了在各种腐蚀水平下的荷载钢筋混凝土结构中传播波传播时间的变化。腐蚀会影响混凝土与钢筋之间的粘结强度,从而改变加载梁中钢筋的应力水平。由于波速受内部应力的影响,因此腐蚀程度的增加将影响钢筋中的波速以及波浪通过钢筋的飞行时间。所提出的方法的主要优点是,该结果不应受到传感器与结构之间的粘结条件的影响。还研究了钢筋混凝土界面处的分层如何影响信号强度以及游离钢筋以及埋入混凝土中的钢筋引起的腐蚀的影响。

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