Perera Ricardo, Torres Lluis, Díaz Francisco J, Barris Cristina, Baena Marta
Department of Mechanical Engineering, Technical University of Madrid, 28006 Madrid, Spain.
Analysis and Advanced Materials for Structural Design (AMADE), Polytechnic School, University of Girona, 17003 Girona, Spain.
Sensors (Basel). 2021 Jul 26;21(15):5046. doi: 10.3390/s21155046.
Although some extended studies about the short-term behavior of NSM FRP strengthened beams have been carried out, there is a lack of knowledge about the behavior of this kind of strengthening under sustained loads and high service temperatures. Electromechanical impedance method formulated from measurements obtained from PZT patches gives the ability for monitoring the performance and changes experienced by these strengthened beams at a local level, which is a key aspect considering its possible premature debonding failure modes. This paper presents an experimental testing program aimed at investigating the long-term performance of a concrete beam strengthened with a NSM CFRP laminate. Long term performance under different levels of sustained loading and temperature conditions is correlated with EMI signatures processed using Linear Mixed-effects models. These models are very powerful to process datasets that have a multilevel or hierarchical structure as those yielded by our tests. Results have demonstrated the potential of these techniques as health monitoring methodology under different conditions in an especially complex problem such as NSM-FRP strengthened concrete structures.
尽管已经开展了一些关于NSM FRP加固梁短期行为的扩展研究,但对于这种加固方式在持续荷载和高温服役条件下的性能仍缺乏了解。基于从压电陶瓷(PZT)贴片获得的测量结果所制定的机电阻抗方法,能够在局部层面监测这些加固梁的性能及经历的变化,鉴于其可能出现的过早脱粘破坏模式,这是一个关键方面。本文提出了一个试验测试方案,旨在研究采用NSM CFRP层压板加固的混凝土梁的长期性能。不同持续荷载水平和温度条件下的长期性能与使用线性混合效应模型处理的电磁干扰(EMI)特征相关联。这些模型在处理具有多级或层次结构的数据集(如我们测试所产生的数据集)方面非常强大。结果表明,在诸如NSM - FRP加固混凝土结构这样特别复杂的问题中,这些技术作为不同条件下健康监测方法具有潜力。