McKibben气动人造肌肉动态特性及疲劳试验研究

Wenlin Chen, Tian Ma, Y. Zhang, Lina Hao, Shuopeng Wang, Meng Liu, Rixin Wang
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引用次数: 1

摘要

气动人造肌肉作为软机器人的一种执行器,在过去的几十年里受到了广泛的关注。由于具有较高的功率密度比和灵活性,pam作为柔性驱动器得到了广泛的应用。当pam应用于不同的机器人系统时,其动态输出特性受到输入信号的幅值和频率以及外部负载的影响。实验结果表明,随着输入信号频率的增加,动态磁滞回线宽度增大,高度减小。同时,为了验证实验室制造的Mckibben pam的疲劳寿命能够满足使用要求,本文完成了Mckibben pam的疲劳试验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study on Dynamic Characteristics and Fatigue of McKibben Pneumatic Artificial Muscles
Pneumatic artificial muscles (PAMs), as a type of actuators in soft robots, have been attracted in the past few decades. Because of their higher power density ratio and flexibility, PAMs are now widely used as a flexible actuator. When PAMs are applied to different robot systems, their dynamic output characteristics are influenced by the amplitude and frequency of input signals and external loads. The experimental results show that with the increase of input signals frequency, the width of PAMs dynamic hysteresis loop increases and the height decreases. Meanwhile, in order to verify that the fatigue life of the Mckibben PAMs made in the laboratory can meet the use requirements, this paper has completed the fatigue tests of them.
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