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基于 NiTi 扭绞纱线的快速扭转人工肌肉

Fast Torsional Artificial Muscles from NiTi Twisted Yarns.

机构信息

BioInstrumentation Laboratory, Department of Mechanical Engineering, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.

出版信息

ACS Appl Mater Interfaces. 2017 May 17;9(19):16321-16326. doi: 10.1021/acsami.7b02335. Epub 2017 May 2.

Abstract

Torsional artificial muscles made of multiwalled carbon nanotube/niobium nanowire yarns have shown remarkable torsional speed and gravimetric torque. The muscle structure consists of a twisted yarn with half of its length infiltrated with a stimuli-responsive guest material such as paraffin wax. The volumetric expansion of the guest material creates the torsional actuation in the yarn. In the present work, we show that this type of actuation is not unique to wax-infiltrated carbon multiwalled nanotube (MWCNT) or niobium nanowire yarns and that twisted yarn of NiTi alloy fibers also produces fast torsional actuation. By gold-plating half the length of a NiTi twisted yarn and Joule heating it, we achieved a fully reversible torsional actuation of up to 16°/mm with peak torsional speed of 10 500 rpm and gravimetric torque of 8 N·m/kg. These results favorably compare to those of MWCNTs and niobium nanowire yarns.

摘要

由多壁碳纳米管/铌纳米线纱制成的扭转型人工肌肉表现出了显著的扭转速度和重量扭矩。该肌肉结构由扭绞纱线组成,其一半长度浸渍有一种响应性客体材料,如石蜡。客体材料的体积膨胀在纱线中产生扭转致动。在目前的工作中,我们表明,这种致动方式不仅限于蜡浸渍的碳多壁纳米管 (MWCNT) 或铌纳米线纱,而且 NiTi 合金纤维的扭绞纱也会产生快速的扭转致动。通过对 NiTi 扭绞纱线的一半长度进行镀金并对其进行焦耳加热,我们实现了高达 16°/mm 的完全可逆扭转致动,峰值扭转速度为 10500 rpm,重量扭矩为 8 N·m/kg。这些结果与 MWCNT 和铌纳米线纱的结果相当。

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