Yan Jin, Downey Austin, Cancelli Alessandro, Laflamme Simon, Chen An, Li Jian, Ubertini Filippo
Department of Civil, Construction and Environmental Engineering, Iowa State University, 813 Bissell Road, Ames, IA 50011, USA.
Department of Mechanical Engineering, University of South Carolina, 300 Main St, Columbia, SC 29208, USA.
Sensors (Basel). 2019 Apr 18;19(8):1843. doi: 10.3390/s19081843.
Cracks in concrete structures can be indicators of important damage and may significantly affect durability. Their timely identification can be used to ensure structural safety and guide on-time maintenance operations. Structural health monitoring solutions, such as strain gauges and fiber optics systems, have been proposed for the automatic monitoring of such cracks. However, these solutions become economically difficult to deploy when the surface under investigation is very large. This paper proposes to leverage a novel sensing skin for monitoring cracks in concrete structures. This sensing skin is constituted of a flexible electronic termed soft elastomeric capacitor, which detects a change in strain through changes in measured capacitance. The SEC is a low-cost, durable, and robust sensing technology that has previously been studied for the monitoring of fatigue cracks in steel components. In this study, the sensing skin is introduced and preliminary validation results on a small-scale reinforced concrete beam are presented. The technology is verified on a full-scale post-tensioned concrete beam. Results show that the sensing skin is capable of detecting, localizing, and quantifying cracks that formed in both the reinforced and post-tensioned concrete specimens.
混凝土结构中的裂缝可能是重大损伤的指示器,并且可能会显著影响耐久性。对其及时识别可用于确保结构安全并指导适时的维护作业。已经提出了诸如应变计和光纤系统等结构健康监测解决方案,用于自动监测此类裂缝。然而,当被调查表面非常大时,这些解决方案在经济上难以部署。本文提出利用一种新型传感表皮来监测混凝土结构中的裂缝。这种传感表皮由一种称为软弹性体电容器的柔性电子器件构成,它通过测量电容的变化来检测应变的变化。软弹性体电容器是一种低成本、耐用且坚固的传感技术,此前已被用于监测钢构件中的疲劳裂缝。在本研究中,介绍了这种传感表皮,并给出了在小尺寸钢筋混凝土梁上的初步验证结果。该技术在全尺寸后张法混凝土梁上得到了验证。结果表明,这种传感表皮能够检测、定位和量化在钢筋混凝土和后张法混凝土试件中形成的裂缝。