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首页> 外文期刊>ACS applied materials & interfaces >Ultra-High Actuation Stress Polymer Actuators as Light-Driven Artificial Muscles
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Ultra-High Actuation Stress Polymer Actuators as Light-Driven Artificial Muscles

机译:超高致动应力聚合物致动器作为光驱动的人工肌肉

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摘要

Remotely addressable actuators are of great interest in fields like microrobotics and smart textiles because of their simplicity, integrity, flexibility, and lightweight. However, most of the existing actuator systems are composed of complex assemblies and/or offer a low response rate. Here, the actuation performance of a light-driven, highly oriented film based on ultra-high molecular weight polyethylene (UHMW-PE), containing a photo-responsive additive, 2-(2H-benzotriazol-2-y1)-4,6-ditertpentylphenol (BZT), is reported. The material exhibits a fast (<1 s) and reversible photo-induced thermal response upon exposure to UV light, which results in an exceptionally high actuation stress (similar to 70 MPa) at a low strain (<0.1%). The proposed actuation mechanism originates from light absorption by BZT and energy transfer into heat, in combination with the intrinsic high stiffness (similar to 80 GPa) and a negative thermal expansion (NTE) of the oriented polymer films. This unique set of properties of this actuator, in particular the very high specific actuation stress, compared to existing organic and inorganic actuators, and the remote optical actuation, promises impact in fields related to soft robotics, composites, medical devices, optics, prosthetics, and smart textiles.
机译:远程可寻址的执行器对MicrooRobotics和智能纺织品等领域具有很大的兴趣,因为它们的简单性,完整性,灵活性和轻量级。然而,大多数现有的执行器系统由复杂组件和/或提供低响应速率组成。这里,基于超高分子量聚乙烯(UHMW-PE)的光驱动的高度取向膜的致动性能,含有光响应添加剂,2-(2H-苯并三唑-2-Y1)-4,6 - 据报道 - 苯二酚苯酚(BZT)。在暴露于UV光时,该材料表现出快速(<1秒)和可逆的光致热响应,这导致低菌株(<0.1%)的高致动应力(类似于70MPa)。所提出的致动机制源于BZT和能量转移到热量的光吸收,与所固体高刚度(类似于80GPa)和取向聚合物膜的负热膨胀(NTE)的组合。与现有的有机和无机致动器相比,这种致动器的这种独特的特性,特别是非常高的特定致动应力,以及远程光学致动,承诺在与软机器人,复合材料,医疗设备,光学,假肢有关的田地中的影响,和智能纺织品。

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