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Sulfonated poly(styrene-ethylene/butylene-styrene) triblock copolymer ionomers: Influence of absorbed water on dielectric properties.

机译:磺化聚(苯乙烯-乙烯/丁烯-苯乙烯)三嵌段共聚物离聚物:吸收水对介电性能的影响。

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The present work has shown that a sulfonated poly(styrene-ethylene/butylene-styrene) (S-SEBS) triblock copolymer ionomer is a material capable of exhibiting dielectric constants on the order of hundreds of thousands. This discovery has suggested the possibility that this polymer, as well as other members of the class known as ionomers, might find use as transducer materials. The portion of electrostriction due to a phenomenon known as the Maxwell effect may allow improved strain performance and voltage requirements over other technologies that have been employed to date.; Experimental results for films with a certain sulfonation degree have shown dielectric constants on the order of epsilon' ∼ 100,000 and dielectric loss tangents near D = tan delta ∼ 0.3, when the material has been exposed to humid conditions. Experiments have indicated that water content in these ionomers is strongly correlated to the relative humidity of the environment in which they operate. Water uptake is thus a primary consideration for obtaining materials with high dielectric constants, well suited to electroactive applications. Additional considerations for such applications include the effect of water on the material's breakdown strength when subjected to an electric field, and its plasticizing effect on the modulus.
机译:本工作表明,磺化的聚(苯乙烯-乙烯/丁烯-苯乙烯)(S-SEBS)三嵌段共聚物离聚物是一种能够表现出数十万数量级的介电常数的材料。这一发现暗示了这种聚合物以及其他称为离聚物的成员可能会用作换能器材料的可能性。与迄今已采用的其他技术相比,由于称为麦克斯韦效应的现象引起的电致伸缩部分可以改善应变性能和电压要求。具有一定磺化度的薄膜的实验结果表明,当材料暴露于潮湿条件下时,介电常数约为ε100,000,介电损耗正切值接近D = tanδ约为0.3。实验表明,这些离聚物中的水含量与它们在其中运行的环境的相对湿度密切相关。因此,吸水率是获得具有高介电常数,非常适合电活性应用的材料的主要考虑因素。此类应用的其他考虑因素包括:水在电场作用下对材料击穿强度的影响及其对模量的增塑作用。

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