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Bio-inspired Artificial Muscle Structure for Integrated Sensing and Actuation

机译:生物启发的人工肌肉结构,用于集成的传感和驱动

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In this paper, a novel artificial muscle/tendon structure is developed for achieving bio-inspired actuation and self-sensing. The hybrid structure consists of a dielectric elastomer (DE) material connected with carbon fibers, which incorporates the built-in sensing and actuation capability of DE and mechanical, electrical interfacing capability of carbon fibers. DEs are light weight artificial muscles that can generate compliant actuation with low power consumption. Carbon fibers act as artificial tendon due to their high electro-conductivity and mechanical strength. PDMS material is used to electrically and mechanically connect the carbon fibers with the DE material. A strip actuator was fabricated to verify the structure design and characterize its actuation and sensing capabilities. A 3M VHB 4905 tape was used as the DE material. To make compliant electrodes on the VHB tape, carbon black was sprayed on the surface of VHB tape. To join the carbon fibers to the VHB tape, PDMS was used as bonding material. Experiments have been conducted to characterize the actuation and sensing capabilities. The actuation tests have shown that the energy efficiency of artificial muscle can reach up to 0.7% and the strain can reach up to 1%. The sensing tests have verified that the structure is capable of self-sensing through the electrical impedance measurement.
机译:在本文中,开发了一种新型的人造肌肉/肌腱结构,以实现生物启发的驱动和自我感觉。混合结构由与碳纤维连接的介电弹性体(DE)材料组成,该材料具有DE的内置感应和驱动功能以及碳纤维的机械,电气接口功能。 DE是重量轻的人造肌肉,可以以低功耗产生顺应性的驱动力。碳纤维由于其高导电性和机械强度而充当人造腱。 PDMS材料用于将碳纤维与DE材料进行电气和机械连接。制造了条形致动器以验证结构设计并表征其致动和感测能力。使用3M VHB 4905胶带作为DE材料。为了在VHB胶带上制作柔顺的电极,将炭黑喷涂在VHB胶带的表面上。为了将碳纤维连接到VHB胶带上,PDMS被用作粘结材料。已经进行了实验以表征致动和感测能力。致动测试表明,人造肌肉的能量效率可以达到0.7%,应变可以达到1%。传感测试已经证明该结构能够通过电阻抗测量进行自我传感。

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