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首页> 外文期刊>Journal of intelligent material systems and structures >A Study on the Thermomechanical Properties of Shape Memory Alloys-based Actuators used in Artificial Muscles
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A Study on the Thermomechanical Properties of Shape Memory Alloys-based Actuators used in Artificial Muscles

机译:基于形状记忆合金的人工肌肉致动器的热机械性能研究

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摘要

Shape memory alloys (SMAs) are a class of smart material having the unique ability to return to a predefined shape when heated. These materials are employed in a variety of emerging applications, and may potentially be used to avoid traditionally voluminous and heavy prosthetic actuators. The primary focus of this article is to convey the design and evaluation of a compact, lightweight, and high-strain SMA ribbon-based artificial muscle for use in such biomimetic applications. A key factor in the design of such an actuator is a thorough understanding of the thermomechanical response of the shape memory material. As such, a review of the relevant constitutive models is included. A selected hysteresis model is evaluated for potential application to ribbon type elements. The proposed actuator achieves strains of 31.6%; a marked improvement over previously documented SMA-based actuators.
机译:形状记忆合金(SMA)是一类智能材料,具有独特的加热后可恢复为预定形状的能力。这些材料被用于各种新兴的应用中,并且可能潜在地用于避免传统上体积大且重的假体致动器。本文的主要重点是传达用于此类仿生应用的紧凑,轻巧和高应变SMA带基人造肌肉的设计和评估。这种致动器的设计中的关键因素是对形状记忆材料的热机械响应的透彻理解。这样,就包括对本构模型的回顾。评估选定的磁滞模型,以潜在地应用于带状元素。拟议的执行器达到31.6%的应变;与以前记录的基于SMA的执行器相比有明显的改进。

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