Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, Innovis #08-03, Singapore 138634, Singapore.
Sensors (Basel). 2023 May 12;23(10):4696. doi: 10.3390/s23104696.
Conformability, lightweight, consistency and low cost due to batch fabrication in situ on host structures are the attractive advantages of ultrasonic transducers made of piezoelectric polymer coatings for structural health monitoring (SHM). However, knowledge about the environmental impacts of piezoelectric polymer ultrasonic transducers is lacking, limiting their widespread use for SHM in industries. The purpose of this work is to evaluate whether direct-write transducers (DWTs) fabricated from piezoelectric polymer coatings can withstand various natural environmental impacts. The ultrasonic signals of the DWTs and properties of the piezoelectric polymer coatings fabricated in situ on the test coupons were evaluated during and after exposure to various environmental conditions, including high and low temperatures, icing, rain, humidity, and the salt fog test. Our experimental results and analyses showed that it is promising for the DWTs made of piezoelectric P(VDF-TrFE) polymer coating with an appropriate protective layer to pass various operational conditions according to US standards.
由于可在基体结构上原位批量制造,超声换能器具有良好的一致性、轻便、顺应性以及低成本,这使其成为用于结构健康监测(SHM)的压电聚合物涂层的极具吸引力的优势。然而,对于压电聚合物超声换能器的环境影响的了解还很缺乏,这限制了它们在工业中用于 SHM 的广泛应用。本工作旨在评估直接写入换能器(DWT)是否可以承受各种自然环境的影响。在暴露于各种环境条件(包括高温和低温、结冰、降雨、湿度以及盐雾测试)期间和之后,对 DWT 的超声信号以及在测试试片上原位制造的压电聚合物涂层的性能进行了评估。我们的实验结果和分析表明,具有适当保护层的压电 P(VDF-TrFE)聚合物涂层制成的 DWT 有望根据美国标准通过各种操作条件。