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Development of Ultralight Hybrid Pneumatic Artificial Muscle for Large Contraction and High Payload

机译:大收缩高负荷超轻型混合动力人工肌肉的研制

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This paper presents a novel pneumatic artificial muscle (PAM) that is able to generate a high payload and buckling pressure. The proposed actuator exploits open-cell foam, and 0.8 mm thick rigid rings to reinforce structure stiffness, and to implement stable contraction under depressurization. All components are embedded in a sealing elastomeric skin. The actuator can support 6.8 N of external load, which is 34.5 times greater than its own weight (20g). When depressurized, the actuator deforms stably, without buckling. The results of the preliminary experimental analysis show that it is able to contract up to 51.8% upon -80kPa, with a 5.6% hysteresis for pressure vs. contraction ratio. Moreover, a quasi-static model is proposed to estimate the actuator blocking force, of which the measured maximum value is 32.7 N at -80kPa vacuum. The presented actuator shows repeatable and reliable performance, providing a promising soft material solution for pneumatic driven movement.
机译:本文介绍了一种新型的气动人造肌肉(PAM),它能够产生较高的有效载荷和屈曲压力。提出的执行器利用开孔泡沫和0.8 mm厚的刚性环来增强结构刚度,并在减压下实现稳定的收缩。所有组件均嵌入密封的弹性表皮中。执行器可以承受6.8 N的外部负载,是其自身重量(20g)的34.5倍。减压时,执行器稳定变形,不会弯曲。初步实验分析的结果表明,它在-80kPa时可收缩至51.8%,压力对收缩率的滞后值为5.6%。此外,提出了一种准静态模型来估计执行器的阻挡力,在-80kPa真空下测得的最大值为32.7N。提出的执行器具有可重复和可靠的性能,为气动驱动的运动提供了一种有希望的软材料解决方案。

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