Freeman E, Harper J, Goel N, Gilbert I, Unguris J, Schiff S J, Tadigadapa S
Department of Electrical Engineering, The Pennsylvania State University, University Park, PA, United States of America.
Center for Neural Engineering, Department of Engineering Science and Mechanics, The Pennsylvania State University, University Park, PA, United States of America.
Smart Mater Struct. 2017;26(8). doi: 10.1088/1361-665X/aa770b. Epub 2017 Jul 24.
A comprehensive investigation of magnetostriction optimization in Metglas 2605SA1 ribbons is performed to enhance magnetoelectric performance. We explore a range of annealing conditions to relieve remnant stress and align the magnetic domains in the Metglas, while minimizing unwanted crystallization. The magnetostriction coefficient, magnetoelectric coefficient, and magnetic domain alignment are correlated to optimize magnetoelectric performance. We report on direct magnetostriction observed by in-plane Doppler vibrometer and domain imagining using scanning electron microscopy with polarization analysis for a range of annealing conditions. We find that annealing in an oxygen-free environment at 400 °C for 30 min yields an optimal magnetoelectric coefficient, magnetostriction and magnetostriction coefficient. The optimized ribbons had a magnetostriction of 50.6 ± 0.2 m m and magnetoelectric coefficient of 79.3 ± 1.5 m m mT. The optimized Metglas 2605SA1 ribbons and PZT-5A (d mode) sensor achieves a magnetic noise floor of approximately 600 pT Hz at 100 Hz and a magnetoelectric coefficient of 6.1 ± 0.03 MV m T.
为提高磁电性能,对Metglas 2605SA1薄带中的磁致伸缩优化进行了全面研究。我们探索了一系列退火条件,以消除残余应力并使Metglas中的磁畴取向一致,同时尽量减少不必要的结晶。关联磁致伸缩系数、磁电系数和磁畴取向以优化磁电性能。我们报告了在一系列退火条件下,通过面内多普勒振动计观察到的直接磁致伸缩以及使用带有极化分析的扫描电子显微镜进行的磁畴成像。我们发现,在无氧环境中于400°C退火30分钟可产生最佳的磁电系数、磁致伸缩和磁致伸缩系数。优化后的薄带磁致伸缩为50.6±0.2μm,磁电系数为79.3±1.5μm/mT。优化后的Metglas 2605SA1薄带与PZT-5A(d模式)传感器在100Hz时实现了约600pT/√Hz的磁本底噪声以及6.1±0.03MV/mT的磁电系数。