首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Electrically induced soft actuators based on thermoplastic polyurethane and their actuation performances including tiny force measurement
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Electrically induced soft actuators based on thermoplastic polyurethane and their actuation performances including tiny force measurement

机译:基于热塑性聚氨酯的电诱导的软致动器及其致动性能,包括微小力测量

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摘要

Many gel-like soft composites were obtained by using thermoplastic polyurethane (TPU) as the matrix in this work. Different contents of plasticizer dibutyl adipate (DBA) was added to TPU to swell its molecular chains and allowed them to pass through each other easily. These samples were then sandwiched between two electrodes as actuators and their actuation abilities were investigated. The results showed that the largest deflection among those samples was up to 12.11 mm, which corresponds to 48.44% of the length of samples (at 2.86 V mu m(-1)). The deflection increased with increasing of the electric field intensity. Besides, the actuator was able to promptly respond to the change of voltage within 0.12 s. A wide response ability in the frequency region from 0.5 Hz to 10 Hz was confirmed, and the largest amplitude over 22 mm of the actuator was observed at 5 Hz. Furthermore, a new method was proposed in this paper to estimate the tiny force generated by the actuator. The small variation (less than 3%) of the measured results indicated that the proposed method is reliable even at a small bending angle. It is believed that the rapid bending capability and large deformation of the developed actuator at low intensity of electric field will make its considerable contributions to the field of soft robotics or biomaterials.
机译:通过使用热塑性聚氨酯(TPU)作为该工作中的基质获得许多凝胶状软复合材料。向TPU加入不同的增塑剂二丁基含量(DBA)以溶胀其分子链,并允许它们容易地通过彼此。然后将这些样品夹在两个电极之间,因为致动器并研究了它们的致动能力。结果表明,这些样品中最大的偏转量高达12.11毫米,其对应于样品长度的48.44%(在2.86 V mu m(-1))。随着电场强度的增加,偏转增加。此外,执行器能够及时响应0.12秒内的电压的变化。确认频率区域中的宽响应能力在5Hz中观察到致动器的最大幅度超过22mm。此外,本文提出了一种新方法,以估计致动器产生的微小力。测量结果的小变化(小于3%)表明即使以小弯曲角度也可靠地是可靠的。据信,在低强度的电场下发达致动器的快速弯曲能力和大变形将为软机器人或生物材料的领域产生相当大的贡献。

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