液晶弹性体致动器和传感器:对过去、现在和未来的一瞥

J. Lagerwall
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引用次数: 1

摘要

液晶弹性体(LCEs)是一种卓越的可编程材料。我回顾了LCE材料和工艺发展的历史和现状,从走出学术研究实验室和应用LCE作为软致动器或应变传感器的重要剩余步骤的角度。在为非专家简要介绍了LCE是什么以及它们的主要优点和局限性之后,我讨论了LCE研究在其50年的历史中所经历的关键突破。在此基础上,根据正在进行的研究的新结果,我考虑了未来可能的发展轨迹,这将有助于解决以具有竞争力的成本实现大规模生产的突出关键障碍。最后,我将讨论一组选定的应用程序场景,这些场景有很好的机会让lce执行其他材料无法提供的功能。具体来说,我专注于响应性建筑,包括LCE致动器纤维和片/带,LCE应变传感器的结构健康监测,监测裂缝的生长和传播,或提醒暴露于危险变形水平的建筑物的居民,以及包含LCE纤维致动器和/或应变传感器的动态和响应性服装。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Liquid crystal elastomer actuators and sensors: Glimpses of the past, the present and perhaps the future
Liquid crystal elastomers (LCEs) are programmable materials par excellence. I review the history and state of the art of LCE materials and processing development from the perspective of the important remaining step of moving out of the academic research lab and applying LCEs as soft actuators or strain sensors. After a brief introduction for the non-expert of what LCEs are and which their main advantages and limitations are, I discuss the key breakthroughs that LCE research has undergone over its 50-year history. Building on this and drawing from fresh results from on-going research, I consider possible future development trajectories that would help address the outstanding key obstacles to reach mass production at competitive cost. I end with discussing a selected set of application scenarios with good opportunities for LCEs to perform functions that no other material could deliver. Specifically, I focus on responsive buildings incorporating LCE actuator fibres and sheets/ribbons, structural health monitoring with LCE strain sensors monitoring crack growth and propagation or alerting residents of buildings exposed to dangerous levels of deformation, and kinetic and responsive garments incorporating LCE fibre actuators and/or strain sensors.
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