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Shape Memory Alloys and Polymers for MEMS/NEMS Applications: Review on Recent Findings and Challenges in Design, Preparation, and Characterization

机译:用于MEMS / NEMS应用的形状记忆合金和聚合物:综述最近的设计,制备和表征中的最新发现和挑战

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摘要

Rapid progress in material science and nanotechnology has led to the development of the shape memory alloys (SMA) and the shape memory polymers (SMP) based functional multilayered structures that, due to their capability to achieve the properties not feasible by most natural materials, have attracted a significant attention from the scientific community. These shape memory materials can sustain large deformations, which can be recovered once the appropriate value of an external stimulus is applied. Moreover, the SMAs and SMPs can be reprogrammed to meet several desired functional properties. As a result, SMAs and SMPs multilayered structures benefit from the unprecedented physical and material properties such as the shape memory effect, superelasticity, large displacement actuation, changeable mechanical properties, and the high energy density. They hold promises in the design of advanced functional micro- and nano-electro-mechanical systems (MEMS/NEMS). In this review, we discuss the recent understanding and progress in the fields of the SMAs and SMPs. Particular attention will be given to the existing challenges, critical issues, limitations, and achievements in the preparation and characterization of the SMPs and NiTi-based SMAs thin films, and their heterostructures for MEMS/NEMS applications including both experimental and computational approaches. Examples of the recent MEMS/NEMS devices utilizing the unique properties of SMAs and SMPs such as micropumps, microsensors or tunable metamaterial resonators are highlighted. In addition, we also introduce the prospective future research directions in the fields of SMAs and SMPs for the nanotechnology applications.
机译:在材料科学和纳米技术的迅速进展,导致了形状记忆合金(SMA)和形状记忆聚合物(SMP)的基于功能性的多层结构,由于他们的能力,以实现不被大多数自然材料是可行的性质的发展,有吸引了来自科学界的一个显著的关注。这些形状记忆材料可以承受较大的变形,其可一旦施加外部刺激的适当的值被恢复。此外,形状记忆合金和SMP中可以重新编程,以满足几个所需功能特性。其结果是,形状记忆合金和SMP中多层结构从物理前所未有和材料特性中受益,例如形状记忆效应,超弹性,大的位移的致动,可改变机械性能,以及高能量密度。他们认为承诺在功能先进的微型和纳米机电系统(MEMS / NEMS)的设计。在这次审查中,我们讨论了最近的理解,并在形状记忆合金和SMPS的领域取得进展。特别注意将给予在SMPS和基于镍钛记忆合金薄膜的制备和表征现有的挑战,关键的问题,限制和成就,以及他们对MEMS异质/ NEMS应用,包括实验和计算方法。利用形状记忆合金和SMPS的独特性质,例如微型泵,微型传感器或可调谐的谐振器的超材料最近MEMS / NEMS设备的例子被突出显示。此外,我们还介绍了在形状记忆合金的领域和SMP中的纳米技术应用的前瞻性未来的研究方向。

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