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界面极化和吸水性对环氧纳米复合材料介电性能的影响

Effect of Interfacial Polarization and Water Absorption on the Dielectric Properties of Epoxy-Nanocomposites.

作者信息

Marx Philipp, Wanner Andrea J, Zhang Zucong, Jin Huifei, Tsekmes Ioannis-Alexandros, Smit Johan J, Kern Wolfgang, Wiesbrock Frank

机构信息

Polymer Competence Center Leoben (PCCL), Roseggerstraße 12, Leoben 8700, Austria.

Chair of Chemistry of Polymeric Materials, Montanuniversitaet Leoben, Otto-Glöckel Straße 2, Leoben 8700, Austria.

出版信息

Polymers (Basel). 2017 May 28;9(6):195. doi: 10.3390/polym9060195.

Abstract

Five types of nanofillers, namely, silica, surface-silylated silica, alumina, surface-silylated alumina, and boron nitride, were tested in this study. Nanocomposites composed of an epoxy/amine resin and one of the five types of nanoparticles were tested as dielectrics with a focus on (i) the surface functionalization of the nanoparticles and (ii) the water absorption by the materials. The dispersability of the nanoparticles in the resin correlated with the composition (OH content) of their surfaces. The interfacial polarization of the thoroughly dried samples was found to increase at lowered frequencies and increased temperatures. The β relaxation, unlike the interfacial polarization, was not significantly increased at elevated temperatures (below the glass-transition temperature). Upon the absorption of water under ambient conditions, the interfacial polarization increased significantly, and the insulating properties decreased or even deteriorated. This effect was most pronounced in the nanocomposite containing silica, and occurred as well in the nanocomposites containing silylated silica or non-functionalized alumina. The alternating current (AC) breakdown strength of all specimens was in the range of 30 to 35 kV·mm. In direct current (DC) breakdown tests, the epoxy resin exhibited the lowest strength of 110 kV·mm; the nanocomposite containing surface-silylated alumina had a strength of 170 kV·mm. In summary, water absorption had the most relevant impact on the dielectric properties of nanocomposites containing nanoparticles, the surfaces of which interacted with the water molecules. Nanocomposites containing silylated alumina particles or boron nitride showed the best dielectric properties in this study.

摘要

本研究测试了五种纳米填料,即二氧化硅、表面硅烷化二氧化硅、氧化铝、表面硅烷化氧化铝和氮化硼。由环氧/胺树脂与五种纳米颗粒之一组成的纳米复合材料作为电介质进行了测试,重点关注(i)纳米颗粒的表面功能化和(ii)材料的吸水性。纳米颗粒在树脂中的分散性与其表面组成(OH含量)相关。发现完全干燥的样品的界面极化在较低频率和升高温度下会增加。与界面极化不同,β弛豫在升高温度(低于玻璃化转变温度)时没有显著增加。在环境条件下吸水后,界面极化显著增加,绝缘性能下降甚至恶化。这种效应在含二氧化硅的纳米复合材料中最为明显,在含硅烷化二氧化硅或未功能化氧化铝的纳米复合材料中也会出现。所有试样的交流(AC)击穿强度在30至35 kV·mm范围内。在直流(DC)击穿测试中,环氧树脂的强度最低,为110 kV·mm;含表面硅烷化氧化铝的纳米复合材料的强度为170 kV·mm。总之,吸水对含有与水分子相互作用的纳米颗粒的纳米复合材料的介电性能影响最大。在本研究中,含硅烷化氧化铝颗粒或氮化硼的纳米复合材料表现出最佳的介电性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abc0/6431941/58f5ebebcd96/polymers-09-00195-sch001.jpg

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