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Ultra-high strain response of elastomeric polymer dielectrics

机译:弹性聚合物电介质的超高应变响应

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The strain response of dielectric elastomers sandwiched between compliant electrodes was studied. These electroactive polymer artificial muscle (EPAM) materials show excellent overall performance and appear more attractive than many competing actuator technologies. Based on the available data, the actuation mechanism is due to the free charge interaction of the compliant electrodes, enhanced by the dielectric properties of the elastomer (Maxwell stress). Strains over 200%, actuation pressures up to 8 MPa, and energy densities up to 3.4 J/cm{sup}3 have been demonstrated with silicone rubber and acrylic elastomers. Response time is rapid, and the potential efficiency is high. The fabrication of EPAM actuators can be simple and low cost. A wide range of small devices have been made, to demonstrate the potential of the technology and reveal more about performance and fabrication issues. These devices include bending beam actuators for scanners and clamps, diaphragm actuators for pumps and valves, stretched-film actuators for electro-optics, and bow actuators for muscle-like actuators for small robots and other micro machines.
机译:研究了夹在柔顺电极之间夹在柔顺电极之间的介电弹性体的应变响应。这些电活性聚合物人工肌肉(EPAM)材料表现出优异的整体性能,并且看起来比许多竞争的执行器技术更具吸引力。基于可用数据,致动机构是由于柔顺电极的自由电荷相互作用,通过弹性体的电介质性能增强(麦克斯韦胁迫)。用硅橡胶​​和丙烯酸弹性体证明了超过8MPa的致动压力,致动压力,高达8MPa的能量密度,以及3.4J / cm {sup} 3。响应时间快速,潜在效率高。 EPAM致动器的制造可以简单且低成本。已经进行了各种小型设备,以展示技术的潜力,并揭示了有关性能和制造问题的更多信息。这些装置包括用于扫描仪和夹具的弯曲梁致动器,用于泵和阀的隔膜致动器,用于电光的拉伸薄膜致动器,以及用于小型机器人和其他微机器的肌肉状致动器的弓致动器。

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