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Recent Progress in FSMA Microactuator Developments

机译:FSMA微致动器开发的最新进展

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The giant magneto-strain effect is particularly attractive for actuator applications in micro- and nanometer dimensions as it enables contact-less control of large deformations, which can hardly be achieved by other actuation principles in small space. Two different approaches are being pursued to develop ferromagnetic shape memory (FSMA) microactuators based on the magnetically induced reorientation of martensite variants: (1) the fabrication of free-standing epitaxial Ni-Mn-Ga thin film actuators in a bottom-up manner by magnetron sputtering, substrate release and integration technologies and (2) the top-down approach of thickness reduction of bulk Ni-Mn-Ga single crystals to foil specimens of decreasing thicknesses (200 - 40 μm) and subsequent integration. This review describes the fabrication technologies, procedures for thermo-mechanical training adapted to the quasi-two-dimensional geometries of film and foil specimens as well as the performance characteristics of state-of-the art actuators after processing and training.
机译:巨大的磁应变效应特别适合在微米和纳米尺寸的执行器应用中使用,因为它可以实现大变形的非接触式控制,而其他驱动原理在小空间内很难实现这种控制。正在寻求两种不同的方法来开发基于马氏体变体的磁感应重新定向的铁磁形状记忆(FSMA)微致动器:(1)通过自下而上的方式制造独立的外延Ni-Mn-Ga薄膜致动器。磁控溅射,衬底释放和集成技术,以及(2)自上而下的方法,将块状Ni-Mn-Ga单晶的厚度减小到厚度减小(200-40μm)的箔样品,然后进行集成。这篇综述描述了制造技术,适用于薄膜和箔片样品的准二维几何形状的热机械培训程序以及经过加工和培训的最新执行器的性能特征。

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