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Metallic Glass/PVDF Magnetoelectric Laminates for Resonant Sensors and Actuators: A Review

机译:用于谐振传感器和执行器的金属玻璃/ PVDF磁电层压板:综述

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摘要

Among magnetoelectric (ME) heterostructures, ME laminates of the type Metglas-like/PVDF (magnetostrictive+piezoelectric constituents) have shown the highest induced ME voltages, usually detected at the magnetoelastic resonance of the magnetostrictive constituent. This ME coupling happens because of the high cross-correlation coupling between magnetostrictive and piezoelectric material, and is usually associated with a promising application scenario for sensors or actuators. In this work we detail the basis of the operation of such devices, as well as some arising questions (as size effects) concerning their best performance. Also, some examples of their use as very sensitive magnetic fields sensors or innovative energy harvesting devices will be reviewed. At the end, the challenges, future perspectives and technical difficulties that will determine the success of ME composites for sensor applications are discussed.
机译:在磁电(ME)异质结构中,类Metglas / PVDF(磁致伸缩+压电成分)的ME层压板显示出最高的感应ME电压,通常在磁致伸缩成分的磁弹性共振中检测到。由于磁致伸缩材料与压电材料之间的高互相关耦合而发生这种ME耦合,并且通常与传感器或执行器的应用前景相关。在这项工作中,我们详细介绍了此类设备的操作基础,以及一些有关其最佳性能的问题(如尺寸影响)。此外,将审查其用作非常敏感的磁场传感器或创新的能量收集设备的一些示例。最后,讨论了决定用于传感器应用的ME复合材料成功与否的挑战,未来前景和技术难题。

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