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Performance of Smart Piezoelectric Transducers for Structural Health Monitoring on Composite Laminates in a Wide Range of Temperature Environments

机译:智能压电传感器在宽温度环境下对复合材料层压板进行结构健康监测的性能

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In recent years, the impedance-based health monitoring technique has shown its promise in many applications. This technique makes use of the special properties of smart piezoelectric materials to identify the change of material properties due to the nucleation and progression of damage. A major advantage of this technique is that the procedure is nondestructive in nature and does not perturb the properties and performance of the materials and structures. This paper reports the results of applying the impedance-based nondestructive testing technique to the damage identification of composite laminates at cryogenic temperature. These materials have potential application for fuel tanks in future reusable launch vehicles and other applications. Special Single-Crystal Piezoceramic sensor/actuators are tested to assess their performance under a very wide range of temperature environments including cryogenic temperature. The results suggest that a linear relationship exists between the temperature and the measured data over a very wide range of temperatures. This relationship can be used to compensate the data collected in varying temperature environments and is an important tool for sensor data analysis.
机译:近年来,基于阻抗的健康监测技术已在许多应用中显示出其前景。该技术利用智能压电材料的特殊性能来识别由于形核和损伤发展而引起的材料性能变化。该技术的主要优点是该过程本质上是非破坏性的,并且不会干扰材料和结构的特性和性能。本文报道了将基于阻抗的无损检测技术应用于复合材料层压板在低温下的损伤识别结果。这些材料在未来可重复使用的运载火箭和其他应用中具有潜在的燃料箱应用。对特殊的单晶压电陶瓷传感器/执行器进行了测试,以评估其在包括低温温度在内的各种温度环境下的性能。结果表明,在很宽的温度范围内,温度与测量数据之间存在线性关系。这种关系可以用来补偿在变化的温度环境下收集的数据,并且是传感器数据分析的重要工具。

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