Ghadarah Noor, Ayre David
School of Aerospace, Transport and Manufacturing, Cranfield University, Cranfield MK43 0AL, UK.
Sensors (Basel). 2023 Aug 4;23(15):6945. doi: 10.3390/s23156945.
Acoustic emission (AE) has received increased interest as a structural health monitoring (SHM) technique for various materials, including laminated polymer composites. Piezoelectric sensors, including PZT (piezoelectric ceramic) and PVDF (piezoelectric polymer), can monitor AE in materials. The thickness of the piezoelectric sensors (as low as 28 µm-PVDF) allows embedding the sensors within the laminated composite, creating a smart material. Incorporating piezoelectric sensors within composites has several benefits but presents numerous difficulties and challenges. This paper provides an overview of acoustic emission testing, concluding with a discussion on embedding piezoelectric AE sensors within fibre-polymer composites. Various aspects are covered, including the underlying AE principles in fibre-based composites, factors that influence the reliability and accuracy of AE measurements, methods to artificially induce acoustic emission, and the correlation between AE events and damage in polymer composites.
声发射(AE)作为一种用于包括层压聚合物复合材料在内的各种材料的结构健康监测(SHM)技术,已受到越来越多的关注。压电传感器,包括PZT(压电陶瓷)和PVDF(压电聚合物),可以监测材料中的声发射。压电传感器的厚度(低至28 µm的PVDF)允许将传感器嵌入层压复合材料中,从而形成智能材料。在复合材料中加入压电传感器有几个好处,但也带来了许多困难和挑战。本文概述了声发射测试,并以在纤维聚合物复合材料中嵌入压电声发射传感器的讨论作为结尾。涵盖了各个方面,包括基于纤维的复合材料中的基本声发射原理、影响声发射测量可靠性和准确性的因素、人工诱发声发射的方法,以及聚合物复合材料中声发射事件与损伤之间的相关性。