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Micromachined Shape-Memory-Alloy Microactuators and Their Application in Biomedical Devices

机译:微加工的形状记忆合金微致动器及其在生物医学设备中的应用

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Shape memory alloys (SMAs) are a class of smart materials characterized by shape memory effect and pseudo-elastic behavior. They have the capability to retain their original form when subjected to certain stimuli, such as heat or a magnetic field. These unique properties have attracted many researchers to seek their application in various fields including transportation, aerospace, and biomedical. The ease process adaption from semiconductor manufacturing technology provides many opportunities for designing micro-scale devices using this material. This paper gives an overview of the fabrication and manufacturing technique of thin-film and bulk micromachined SMAs. Key features such as material properties, transformation temperature, material composition, and actuation method are also presented. The application and micromechanism for both thin-film and bulk SMA are described. Finally, the microactuator devices emphasized for biomedical applications such as microgrippers and micropumps are highlighted. The presented review will provide information for researchers who are actively working on the development of SMA-based microscale biomedical devices.
机译:形状记忆合金(SMA)是一类智能材料,其特征在于形状记忆效应和伪弹性行为。当受到某些刺激(例如热或磁场)时,它们具有保持其原始形状的能力。这些独特的特性吸引了许多研究人员在各种领域寻求其应用,包括运输,航空航天和生物医学。半导体制造技术对工艺的简化适应为使用这种材料设计微型器件提供了许多机会。本文概述了薄膜和块状微加工SMA的制造和制造技术。还介绍了关键特性,例如材料特性,转变温度,材料组成和致动方法。描述了薄膜和块状SMA的应用和微机制。最后,重点介绍了针对生物医学应用的微型执行器设备,例如微型夹具和微型泵。提出的综述将为正在积极开发基于SMA的微型生物医学设备的研究人员提供信息。

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