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通过与聚(二甲基硅氧烷-甲基苯基硅氧烷)共聚物共混提高聚二甲基硅氧烷弹性体的机电性能。

Enhancing the electro-mechanical properties of polydimethylsiloxane elastomers through blending with poly(dimethylsiloxane--methylphenylsiloxane) copolymers.

作者信息

Madsen Peter Jeppe, Yu Liyun, Boucher Sarah, Skov Anne Ladegaard

机构信息

Danish Polymer Centre, Department of Chemical and Biochemical Engineering, Technical University of Denmark Søltofts Plads Building 227 2800 Kgs. Lyngby Denmark

出版信息

RSC Adv. 2018 Jun 25;8(41):23077-23088. doi: 10.1039/c8ra02314j. eCollection 2018 Jun 21.

Abstract

In this work, improved electro-mechanical properties of silicone-based dielectric elastomers are achieved by means of adding so-called "voltage-stabilisers" prepared from phenyl-functional copolymers prepared using oxyanionic ring-opening polymerisation of octamethylcyclotetrasiloxane (D4) and either tetramethyltetraphenylcyclotetrasiloxane (T4) or octaphenylcyclotetrasiloxane (O4). The concentration of the voltage stabiliser was varied both by changing the molar ratio between methyl and phenyl groups in the copolymer and also by varying the amount of copolymer mixed into a PDMS-based elastomer. The phenyl-functional copolymers were generally found to disperse homogeneously in the PDMS matrix and this resulted in networks with improved mechanical and electrical properties. The developed elastomers were inherently extensible with enhanced tensile and tear strengths, due to phenyl-rich microphases acting as reinforcing domains. Furthermore, addition of phenyl-functional copolymers resulted in elastomers with increased relative permittivity and electrical breakdown strength compared to control elastomers while retaining a low dielectric loss. This demonstrates their efficiency as voltage stabilisers.

摘要

在这项工作中,通过添加由八甲基环四硅氧烷(D4)与四甲基四苯基环四硅氧烷(T4)或八苯基环四硅氧烷(O4)经氧阴离子开环聚合制备的苯基官能共聚物所制得的所谓“电压稳定剂”,实现了硅基介电弹性体机电性能的改善。通过改变共聚物中甲基和苯基之间的摩尔比以及改变混入基于聚二甲基硅氧烷(PDMS)的弹性体中的共聚物量,来改变电压稳定剂的浓度。通常发现苯基官能共聚物在PDMS基体中均匀分散,这导致网络的机械和电气性能得到改善。由于富含苯基的微相充当增强域,所开发的弹性体固有地具有可扩展性,拉伸强度和撕裂强度增强。此外,与对照弹性体相比,添加苯基官能共聚物导致弹性体的相对介电常数和电击穿强度增加,同时保持低介电损耗。这证明了它们作为电压稳定剂的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b587/9081550/cb4864a87c5e/c8ra02314j-s1.jpg

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