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Electrodeposited magnetostrictive Fe-Ga alloys for miniaturised actuators

机译:电沉积磁致伸缩Fe-Ga合金,用于小型执行器

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摘要

The application of magnetostrictive materials in MEMS devices requires the development of suitable micromachining technologies for the deposition and patterning at the microscale. Some alloys of iron and gallium, generally classified under the generic name of Galfenol (Fe-Ga, 0.10 ≤x≤ 0.35), are known for their excellent magnetostrictive and mechanical properties, which make them ideal candidates for the manufacturing of magnetostrictive microactuator devices. Although techniques have been reported for the machining of such materials at a bigger scale, adequate miniaturisation technologies are sought after to enable the integration of Galfenol into MEMS devices. For this purpose, electrodeposition is an appealing technique as it enables rapid and relatively inexpensive growth, while eliminating the need for selective etching processes. This paper presents advances towards the development of a reliable and reproducible process for the electrodeposition of micrometre-thick Galfenol films through systematic experimental characterisation. A preliminary application is finally presented in the form of bilayer cantilevers fabricated by depositing Galfenol on top of copper beams that can be deflected by applying a uniform external magnetic field.
机译:磁致伸缩材料在MEMS器件中的应用需要开发合适的微加工技术,以进行微尺度的沉积和构图。一些铁和镓的合金通常归类为Galfenol(Fe-Ga,0.10≤x≤0.35),以其出色的磁致伸缩和机械性能而闻名,这使其成为制造磁致伸缩微致动器设备的理想选择。尽管已经报道了用于大规模加工此类材料的技术,但仍在寻求适当的小型化技术以使加尔芬诺能够集成到MEMS器件中。为此目的,电沉积是一种吸引人的技术,因为它能够快速且相对便宜地生长,同时消除了对选择性蚀刻工艺的需求。本文通过系统的实验表征,提出了一种可靠且可重现的方法,用于电沉积微米厚的Galfenol膜。最后,提出了一种双层悬臂形式的初步应用,该悬臂形式是通过将Galfenol沉积在铜束上方而制成的,该铜束可以通过施加均匀的外部磁场来偏转。

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