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Magnetostrictive resonators as sensors and actuators

机译:磁致伸缩谐振器作为传感器和执行器

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Two types of magnetostrictive resonators - magnetostrictive microcantilever (MSMC) and magnetostrictive particle (MSP) - have been introduced as sensor platforms. Their principles and advantages as sensor platforms are discussed along with the materials selection. A detailed and complete comparison between the MSMC and MSP is given. It is concluded that for the resonators with the same size, an MSP exhibits a higher sensitivity and has a much higher resonant frequency. For the resonators with the same resonant frequency, MSMCs exhibit a much higher sensitivity and have a much smaller size than MSPs. Using antibody as the sensing element, MSP biosensors for in situ detection of Escherichia coli and Listeria monocytogenes are developed and characterized. These biosensors exhibit a high performance. For example, the MSP-antibody biosensors of 1 mm × 0.3 mm × 15 μm exhibit a detection limit less than 100cfu/ml for in situ detection of bacterial cell in water. A new type actuator is introduced using MSPs. The MSP actuator is operated using AC magnetic field with a frequency close to, but different than, its resonant frequency. The MSP actuator exhibits an unlimited displacement, and its moving direction is controlled by the operating frequency used.
机译:两种类型的磁致伸缩谐振器-磁致伸缩微悬臂梁(MSMC)和磁致伸缩微粒(MSP)-已作为传感器平台推出。讨论了它们作为传感器平台的原理和优势以及材料选择。在MSMC和MSP之间进行了详细而完整的比较。结论是,对于具有相同尺寸的谐振器,MSP表现出更高的灵敏度并具有更高的谐振频率。对于具有相同谐振频率的谐振器,MSMC的灵敏度要高得多,并且尺寸要比MSP小得多。使用抗体作为传感元件,开发并鉴定了用于大肠杆菌和单核细胞增生李斯特菌原位检测的MSP生物传感器。这些生物传感器表现出高性能。例如,用于原位检测水中细菌细胞的1 mm×0.3 mm×15μm的MSP抗体生物传感器的检测限小于100cfu / ml。使用MSP推出了新型执行器。 MSP执行器使用交流磁场来操作,该交流磁场的频率接近但不同于其共振频率。 MSP执行器具有无限的排量,其运动方向由所使用的工作频率控制。

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