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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Shape Memory Alloy-Based Spring Bundle Actuator Controlled by Water Temperature
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Shape Memory Alloy-Based Spring Bundle Actuator Controlled by Water Temperature

机译:水温控制的基于形状记忆合金的弹簧束执行器

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摘要

This paper proposes a novel artificial muscle, shape memory alloy (SMA) spring bundle actuator (SSBA), which can be applied to robotic arms while replacing the motor-gear mechanism. Artificial muscles applicable to robotic arms should have characteristics, such as high contraction strain comparable to that of skeletal muscles, high load capacity, fast actuation frequency, and force/position controllability. To improve the low efficiency and slow cooling of the Joule heating, which is widely used for SMA heating, the SMA spring bundle is heated and cooled using hot and cold water. A faucet-like valve was developed to control the temperature of water supplied to the SSBA, and the force generated by the SSBA with respect to the water temperature change was confirmed to be very linear compared to that of the conventional SMA actuators. Owing to this linearity, the force control of the SSBA was easy by using a simple proportional-integral-derivative controller. A bundle weighing 12 g and consisting of 24 SMA springs was able to actuate with a contraction strain of more than 50% and actuating frequency of 1 Hz under a mass condition of 10 kg. Further, it could generate 130 N of force with respect to a temperature change from 28 degrees C to 82 degrees C. The flexion-extension motion of an arm of 1-Hz actuating speed was possible by applying two SSBAs antagonistically to an arm of one degree-of-freedom. This proposed artificial muscle offers the possibility of lightweight and safe robotic arms.
机译:本文提出了一种新型的人造肌肉,形状记忆合金(SMA)弹簧束致动器(SSBA),它可以在代替机械齿轮机构的同时应用于机器人手臂。适用于机械臂的人造肌肉应具有诸如与骨骼肌相当的高收缩应变,高负载能力,快速致动频率以及力/位置可控性等特性。为了提高被广泛用于SMA加热的焦耳加热的低效率和缓慢冷却,使用冷热水对SMA弹簧束进行加热和冷却。已开发出类似水龙头的阀来控制供应到SSBA的水的温度,并且与传统的SMA执行器相比,已确认SSBA产生的相对于水温变化的力非常线性。由于这种线性关系,通过使用简单的比例积分微分控制器,可以轻松控制SSBA。重量为12 g且由24个SMA弹簧组成的束在10 kg的质量条件下能够以大于50%的收缩应变和1 Hz的驱动频率进行驱动。此外,相对于从28摄氏度到82摄氏度的温度变化,它可以产生130 N的力。通过将两个SSBA对立地施加到一个手臂上,可以以1-Hz的驱动速度进行手臂的屈伸运动。自由度。提出的人造肌肉提供了轻巧安全的机械臂的可能性。

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