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Perspectives for new dielectric elastomers with improved electromechanical actuation performance: composites versus blends

机译:具有改善的机电驱动性能的新型介电弹性体的前景:复合材料与共混物

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This work presents a comparison between composites and blends as two alternative approaches for the development of new dielectric elastomers offering superior electromechanical properties at lower driving electric fields. Silicone-and polyurethane-based dielectric elastomers were modified by either making particulate composites with high-permittivity ceramic fillers or by blending with different polymeric phases. Both previous and new data are considered. Experimental observations are compared and discussed to assess which one of the aforementioned approaches might be more generally preferable. Due to a consequent worsening of the mechanical properties, pure composite architectures yielded only limited results. While with the blend approach both an increase of the dielectric permittivity and an unexpected reduction of the tensile elastic modulus were observed, leading to an overall increase of the electromechanical response. The blending approach permits one to obtain a new dielectric elastomer with improved electromechanical properties by simply combining two low-dielectric-constant polymers. This is the first time such a type of result has been reported. This study indicates that formulating all-polymeric compounds may represent a very promising route for obtaining new dielectric elastomers with improved actuation performance.
机译:这项工作提出了复合材料和共混物之间的比较,作为开发新型介电弹性体的两种替代方法,这些介电体在较低的驱动电场下具有出色的机电性能。通过使用高介电常数陶瓷填料制备颗粒状复合材料,或与不同的聚合物相共混,可对有机硅和聚氨酯基介电弹性体进行改性。既要考虑以前的数据,也要考虑新的数据。比较和讨论了实验观察结果,以评估上述方法中的哪一种可能更普遍。由于随之而来的机械性能下降,纯复合材料结构仅产生有限的结果。虽然采用混合方法,但同时观察到介电常数的增加和拉伸弹性模量的意外降低,从而导致机电响应的总体增加。通过简单地组合两种低介电常数的聚合物,共混方法可以使人们获得一种具有改善的机电性能的新型介电弹性体。这是第一次报告这种类型的结果。这项研究表明,配制全聚合化合物可能代表获得具有改善的驱动性能的新型介电弹性体的非常有前途的途径。

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