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首页> 外文期刊>Artificial Organs >Development of Artificial Muscles Based on Electroactive Ionomeric Polymer-Metal Composites
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Development of Artificial Muscles Based on Electroactive Ionomeric Polymer-Metal Composites

机译:基于电活性离子键聚合物-金属复合材料的人工肌肉的开发

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摘要

This work contextualizes the research of materials that can be applied as artificial muscles. The main motivation of this research is the importance of the development of mechatronic systems for the replacement of traditional devices of actuation and motion based on rotational electrical motors by other devices that reproduce biological muscle movements. Electroactive polymers (EAPs) are materials that respond to electric stimuli with shape and/or dimension changes, and accomplish movements that are smooth enough to mimic biological muscles. Among EAPs, the ionomeric polymer-metal composites (IPMCs) are an interesting alternative to biomimetic devices due to large displacements when submitted to low applied voltage. This article presents a brief review of IPMCs, a sample preparation procedure, and some electromechanical experimental results. We also discuss the applicability of this technology in medical devices and as artificial muscles.
机译:这项工作结合了可以用作人造肌肉的材料的研究。这项研究的主要动机是开发机电一体化系统的重要性,该机电一体化系统已被其他再现生物肌肉运动的设备取代了基于旋转电动机的传统致动和运动设备。电活性聚合物(EAP)是对形状和/或尺寸变化的电刺激做出响应的材料,能够完成足够平滑的运动来模仿生物肌肉。在EAP中,离聚物聚合物-金属复合材料(IPMC)是仿生设备的有趣替代品,因为在施加低电压时会产生大位移。本文简要介绍了IPMC,样品制备程序和一些机电实验结果。我们还将讨论该技术在医疗设备中以及作为人造肌肉的适用性。

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