Department of Physics, Goethe University Frankfurt, D-60438 Frankfurt am Main, Germany.
Fraunhofer Institut LBF, 64289 Darmstadt, Germany.
Sensors (Basel). 2020 Jul 3;20(13):3732. doi: 10.3390/s20133732.
This paper presents a proof of concept for simultaneous load and structural health monitoring of a hybrid carbon fiber rudder stock sample consisting of carbon fiber composite and metallic parts in order to demonstrate smart sensors in the context of maritime systems. Therefore, a strain gauge is used to assess bending loads during quasi-static laboratory testing. In addition, six piezoelectric transducers are placed around the circumference of the tubular structure for damage detection based on the electro-mechanical impedance (EMI) method. A damage indicator has been defined that exploits the real and imaginary parts of the admittance for the detection of pin failure in the rudder stock. In particular, higher frequencies in the EMI spectrum contain valuable information about damage. Finally, the information about damage and load are merged in a cluster analysis enabling damage detection under load.
本文提出了一种概念验证,用于对混合碳纤维舵柄样本进行同时负载和结构健康监测,该样本由碳纤维复合材料和金属部件组成,旨在展示智能传感器在海洋系统中的应用。为此,应变计用于评估准静态实验室测试中的弯曲载荷。此外,六个压电换能器放置在管状结构的周围,用于基于机电阻抗 (EMI) 方法进行损伤检测。已经定义了一个损伤指标,该指标利用导纳的实部和虚部来检测舵柄中的销钉失效。特别是,EMI 谱中的高频包含有关损伤的有价值信息。最后,将有关损伤和负载的信息合并到聚类分析中,从而能够在负载下进行损伤检测。