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Quantitative Verification of Thin-film Polyvinylidene Fluoride (PVDF) Transducer Array Performance up to 60 °C

机译:薄膜聚偏二氟乙烯(PVDF)换能器阵列性能的定量验证可达60°C

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Thin-film PVDF (polyvinylidene fluoride) transducers are appealing as low cost, light weight, durable, and flexible sensors for structural health monitoring applications in aircraft structures. However, due to the relatively low Curie temperature of PVDF, there is a concern that it's performance will drop below acceptable levels during elevatedtemperature operating conditions. To verify acceptable performance in these environmental operating conditions, temperature history data were collected between 23-60 °C. The effect of temperature on the thin-film PVDF was investigated and a temperature-independent damage feature was assessed. The temperature dependence of the signal's peak amplitude was investigated in both the time domain and the spectral domain to get two damage features. It was found that the measurement of the incident guided wave by the thin-film PVDF transducer had a temperature dependence that varied with frequency. A third damage feature, the mode ratio, was also calculated in the spectral domain with the goal of defining a damage feature that is temperature independent. A comparison of how well these damage features performed when used to identify a notch in an aluminum plate was made using receiver operating characteristic curves and their respective area under the curve values. This result demonstrated that a temperature-independent damage feature can be calculated, to some degree, by using a mode ratio between two modes of similar temperature dependence.
机译:薄膜PVDF(聚偏二氟乙烯)换能器吸引了用于在飞机结构中的结构健康监测应用的低成本,重量轻,耐用和柔性传感器。然而,由于PVDF的居里温度相对较低,因此担心它的性能将在高温操作条件下降低低于可接受的水平。为了验证在这些环境操作条件下的可接受的性能,在23-60°C之间收集温度历史数据。研究了温度对薄膜PVDF的影响,并评估了温度无关的损伤特征。在时域和光谱域中研究了信号峰值幅度的温度依赖性,以获得两个损坏特征。发现薄膜PVDF换能器的入射导波的测量具有随频率而变化的温度依赖性。在光谱域中还计算了第三种损伤特征,模式比率,其目的是定义温度独立的损坏特征。使用接收器操作特性曲线及其各自的区域在曲线值中使用时,在用于识别铝板中的凹陷时所执行的损坏特征的比较。这结果证明,通过使用两种类似温度依赖性的模式比来计算温度无关的损坏特征。

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