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首页> 外文期刊>Sensors and Actuators, A. Physical >High-performance low-voltage soft electrothermal actuator with directly printed micro-heater
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High-performance low-voltage soft electrothermal actuator with directly printed micro-heater

机译:高性能低压软电热驱动器,直接印刷微加热器

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摘要

Soft actuators are widely studied due to their high flexibility and adaptability. In this paper, a soft electrothermal actuator with directly printed microfilament heater was designed, fabricated, and tested. In this soft actuator, a polyimide (PI) film and a polydimethylsiloxane (PDMS) layer were selected as the two structural layers because of their distinct thermal expansion properties. Embedded between these two layers, a metallic microfilament heater that was made of low-melting-point metal alloy (i.e. Bi58/Sn42) was directly printed with custom-designed pattern using an electrohydrodynamic (EHD) printing process. The pattern of the microfilament heater and the thickness of the soft thermoelectric actuator were carefully designed towards the improved actuation capability. When an electric current was applied, the high temperature generated by the resistive heater causes large mismatch in the thermal expansion of the two structural layers, which bent the actuator. The fabricated soft actuator can achieve a maximum bending curvature of 1.0 cm(-1) under an extremely low voltage about 3V. The soft actuator has been demonstrated for potential applications in soft robotics as a soft lifter and a soft gripper. At the full capability, the soft lifter provided a maximum actuation force about 3 mN, and was able to fully lift a load that was twice of its own weight. A four-finger soft gripper was designed and fabricated using four soft actuators to mimic humanoid motions and was implemented for pick-and-place operation for delicate objects. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于其具有高柔韧性和适应性,软致动器被广泛研究。本文设计了一种具有直接印刷的微丝加热器的软电热致动器,设计,制造和测试。在该软致动器中,选择聚酰亚胺(PI)膜和聚二甲基硅氧烷(PDMS)层作为两个结构层,因为它们不同的热膨胀性能。嵌入在这两层之间,用低熔点金属合金(即Bi58 / Sn42)的金属微丝加热器用电流动力学(EHD)印刷方法直接用定制设计的定制图案直接印刷。微丝加热器的图案和软热电致动器的厚度朝向改进的致动能力设计。当施加电流时,电阻加热器产生的高温导致两个结构层的热膨胀中的大不匹配,这两个结构层弯曲了致动器。制造的软致动器可以在约3V的极低电压下实现1.0cm(-1)的最大弯曲曲率。软致电器已经证明软机器人中的潜在应用,作为软升降机和软夹具。在完全的能力下,软升降机提供约3米的最大致动力,并且能够完全提升其自身重量的两倍。使用四个软致动器设计和制造了四指软夹具,以模仿人形运动,并为精细物体的拾取和放置操作实施。 (c)2019 Elsevier B.v.保留所有权利。

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