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Novel polymeric elastomers for actuation

机译:用于致动的新型聚合物弹性体

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摘要

Efficient actuators that are lightweight, high performance and compact are needed to support telerobotic requirements for future NASA missions. A new class of electrostrictive polymeric materials has been developed in our recent work. The materials are graft elastomers that exhibit not only large electric field-induced strain (4%) but also a relatively high mechanical modulus (560 MPa). Consequently, the materials offer high actuation output power for enhanced actuation performance. In addition to the promising electromechanical properties, the materials are readily processable by conventional methods. By combining this graft elastomer with a piezoelectric polymer, polyvinylidene fluoride (PVDF), an electrostrictive-piezoelectric multifunctional polymer blend system has also been developed. This multifunctional system exhibits a significantly high piezoelectric strain coefficient, d/sub 31/, of 12 pC/N while the electric field-induced strain is enhanced due to the combination of the mechanisms of electrostriction and piezoelectricity. Experimental results of the electric field-induced strain in the polymeric elastomers and the electrostrictive-piezoelectric polymer blend system are discussed. A prototype bending actuator using the materials is also presented.
机译:需要轻便,高性能和紧凑的高效执行器来支持未来NASA任务的托管性要求。我们最近的工作中已经开发了一类新的电致射流聚合物材料。材料是移植弹性体,其不仅具有大的电场诱导的菌株(4%),而且具有相对高的机械模量(560MPa)。因此,该材料提供了高致动输出功率以增强致动性能。除了有前途的机电性能之外,这些材料还通过常规方法易于加工。通过将该接枝弹性体与压电聚合物组合,还开发了电致伸缩式压电多官能聚合物共混物系统的聚偏二氟乙烯(PVDF)。而电场感生的应变由于电致伸缩和压电性的机制的组合增强该多功能系统表现出12 PC / N的显著高的压电应变系数,d /子31 /。讨论了聚合物弹性体中的电场诱导的菌株和电伸缩式压电聚合物共混物系统的实验结果。还介绍了使用材料的原型弯曲致动器。

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