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Soft Functional Silicone Elastomers with High Dielectric Permittivty: Simple Additives vs. Cross-Linked Synthesized Copolymers

机译:具有高介电常数的软功能有机硅弹性体:简单添加剂与交联合成共聚物

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摘要

Though dielectric elastomers (DEs) have many favorable properties, the issue of high driving voltages limits the commercial viability of the technology. Improved actuation at lower voltages can be obtained by decreasing the Young’s modulus and/or decreasing the dielectric permittivity of the elastomer. A decrease in Young’s modulus, however, is often accompanied by the loss of mechanical stability and thereby the lifetime of the DE whereas addition of high permittivity fillers such as metal oxides often increases Young’s modulus such that improved actuation is not accomplished. New soft silicone elastomers with high dielectric permittivity were prepared through the use of chloropropyl-functional silicones. One method was through the synthesis of modular cross-linkable chloropropyl-functional copolymers that allow for a high degree of chemical freedom such that a tuneable silicone elastomer system is obtained. This system provides high dielectric permittivity without compromising other important properties of DEs such as viscous and dielectric losses as well as electrical breakdown strength. Another method was through a one-pot system where functional silicone copolymers are added as an additive to commercial silicone elastomer systems. Here the functional copolymer acts both as a permittivity enhancer and plasticizer. We show how the DE properties and the dielectric permittivity to Young’s modulus ratio are improved for these systems and we compare the use of cross-linkable polymers against the use of plasticizers with similar chemical structures on the final mechanical stability and lifetime of DEs.
机译:尽管介电弹性体(DEs)具有许多有利的性能,但高驱动电压的问题限制了该技术的商业可行性。通过降低杨氏模量和/或降低弹性体的介电常数,可以获得在较低电压下的改进驱动。然而,杨氏模量的降低通常伴随着机械稳定性的损失,从而降低了DE的寿命,而添加高介电常数的填料(例如金属氧化物)通常会增加杨氏模量,从而无法实现改善的致动性。通过使用氯丙基官能的有机硅,制备了具有高介电常数的新型软硅弹性体。一种方法是通过合成具有高度化学自由度的模块化可交联氯丙基官能共聚物,从而获得可调节的有机硅弹性体体系。该系统提供了高介电常数,而不会损害DE的其他重要性能,例如粘性和介电损耗以及电击穿强度。另一种方法是通过单罐系统,其中将功能性有机硅共聚物作为添加剂添加到市售有机硅弹性体系统中。在此,功能共聚物既用作介电常数增强剂又用作增塑剂。我们展示了这些系统如何改善DE性能和介电常数与杨氏模量比,并比较了可交联聚合物的使用与具有相似化学结构的增塑剂在DE的最终机械稳定性和使用寿命上的比较。

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