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Research on output performance of dielectric elastomer actuators

机译:介电弹性体执行器输出性能研究

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Output pressure and output strain are two most important performance parameters of dielectric elastomer actuators (DEAs). In this research, effective pressure was educed from the perspective of energy conservation. A concept circular acrylic-polymer-based actuator was built with VHB4910 and graphite-silicon-elastomer mixture. Several groups of contrast experiments were performed. Theoretical analysis and experiment results indicated that boundary conditions affected strain output of actuators greatly and DEAs can get its highest output strain under equibiaxial prestrain condition. Output strain was not always monotonously rise with the increase of prestrain, and an appropriate prestrain ratio can improve maximum output strain of actuators up to several times. The changing of prestrain during actuating process also affected output strain greatly and should not be ignored in the design and application of DEAs.
机译:输出压力和输出应变是介电弹性体执行器(DEA)的两个最重要的性能参数。在这项研究中,从节能的角度产生了有效的压力。使用VHB4910和石墨-硅-弹性体混合物构建了基于概念的圆形丙烯酸聚合物驱动器。进行了几组对比实验。理论分析和实验结果表明,边界条件对执行机构的应变输出影响很大,在等双轴预应变条件下,DEA可以获得最大的输出应变。输出应变并非总是随预应变的增加而单调上升,并且适当的预应变比可以将执行器的最大输出应变提高多达几倍。在执行过程中,预应变的变化也极大地影响了输出应变,因此在DEA的设计和应用中不应忽略。

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