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一种由形状记忆合金丝驱动的两自由度微型空心关节的设计。

Design of a 2 DOFs Mini Hollow Joint Actuated with SMA Wires.

作者信息

Manfredi Luigi, Cuschieri Alfred

机构信息

Institute for Medical Science and Technology (IMSaT), University of Dundee, Dundee DD1 4HN, UK.

出版信息

Materials (Basel). 2018 Oct 17;11(10):2014. doi: 10.3390/ma11102014.

Abstract

Shape memory alloys (SMAs) are smart materials used in robotics because of its light weight and high force-to-weight ratio. The low energy efficiency, up to 5%, has limited their use for large actuators. However, they have shown advantages in the design of mini-robots because of the limited volume required for the actuation system. The present study reports the design and construction of a mini compliant joint (MCJ) with a 2 degrees of freedom (DOFs) intersecting axis. The MCJ prototype has a 20 mm external diameter surrounding a cavity of 8 mm, weighs 2 g, is 20 mm high and can perform an angle rotation of 30 ∘ in less than 260 ms. It uses SMA NiTi wires in antagonistic configuration and springs to reduce the energy consumption and minimise heat production. The design methods and experimental results of the manufactured prototype are reported and discussed.

摘要

形状记忆合金(SMAs)是一种智能材料,因其重量轻和力重比高而被用于机器人技术中。其低至5%的能量效率限制了它们在大型致动器中的应用。然而,由于致动系统所需的体积有限,它们在微型机器人设计中显示出优势。本研究报告了一种具有两自由度(DOFs)相交轴的微型柔顺关节(MCJ)的设计与构建。该MCJ原型的外径为20毫米,围绕着一个8毫米的腔体,重2克,高20毫米,能够在不到260毫秒的时间内完成30°的角度旋转。它采用了呈对抗配置的形状记忆合金镍钛丝和弹簧,以降低能耗并将热量产生降至最低。文中报告并讨论了所制造原型的设计方法和实验结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bcd/6213736/9931acef2abf/materials-11-02014-g001.jpg

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