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Fabrication and performance evaluation of diaphragm-type polymer actuators using segmented polyurethane according to chemical-hard-segment content

机译:根据化学硬段含量,使用分段聚氨酯制造隔膜型聚合物致动器的性能和性能评估

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摘要

Electro-active polymer (EAP), one of the smart materials, is a new alternative offering ultra-precise movements and bio-compatibility. We present the results of the design, fabrication, and performance evaluation of a fabricated diaphragm-type polymer actuator using segmented polyurethane (SPU). This paper illustrates the relationship between the elastic modulus and maximum deflection as a key property of the Maxwell stress effect and also presents the relationship between the dielectric constant and maximum deflection as a key property of the electrostriction effect, especially in polymer actuators using SPU. A diaphragm-type actuator was used to induce an equation of the vertically distributed load by using a fully clamped circular plate as the boundary condition. To verify the equation, the results were compared to the data measured from a load cell.
机译:电活性聚合物(EAP)是一种智能材料,是提供超精密运动和生物相容性的新替代产品。我们介绍了使用分段聚氨酯(SPU)制成的膜片式聚合物执行器的设计,制造和性能评估的结果。本文阐述了弹性模量和最大挠度之间的关系,作为麦克斯韦应力效应的关键属性,并提出了介电常数和最大挠度之间的关系,作为电致伸缩效应的关键属性,特别是在使用SPU的聚合物致动器中。通过使用完全夹紧的圆形板作为边界条件,使用膜片式致动器来推导垂直分布载荷方程。为了验证方程式,将结果与称重传感器测得的数据进行比较。

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