环氧有机改性层状硅酸盐纳米复合材料的制备及性能研究

T. Imai, Y. Hirano, H. Hirai, S. Kojima, T. Shimizu
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引用次数: 47

摘要

采用烷基铵离子对合成的层状硅酸盐进行分散改性,制备了环氧硅酸盐纳米复合材料。在分散过程中,将有机改性的层状硅酸盐剪切混合在环氧树脂中,将环氧树脂与硅酸盐混合后,通过离心分离去除硅酸盐的团聚体。透射电子显微镜(TEM)观察结果表明,复合材料具有平行硅酸层(0.1 ~ 0.5 /spl μ m, 5 ~ 15层)和脱落硅酸层(纳米级分散)混合形貌。在耐热性能方面,纳米复合材料的玻璃化转变温度(T/sub g/)比纯环氧树脂更高(/spl δ /20/spl℃/C)。此外,在玻璃化转变温度以上的高温下,改性硅酸盐的分散阻止了相对介电常数(/spl epsiv//sub r/)和介电损耗(tan/spl delta/)的增加。
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Preparation and properties of epoxy-organically modified layered silicate nanocomposites
Epoxy-silicate nanocomposites were prepared by dispersing synthetic layered silicates modified with alkylammonium ions. In the dispersing process, the organically modified layered silicates were mixed in epoxy resin with shearing, and aggregations of the silicates were removed by centrifugal separation after mixing epoxy resin and silicates. Micrographs taken by transmission electron microscopy (TEM) indicate that the nanocomposites have a mixed morphology including both parallel silicate layers (0.1-0.5 /spl mu/m, 5-15 layers) and exfoliated silicate layers (nano-scale dispersion) area. In terms of thermal resistance properties, the glass transition temperature (T/sub g/) of the nanocomposite was shifted to a higher temperature (/spl Delta/20/spl deg/C) than pure epoxy. Furthermore, dispersion of modified silicate prevented relative permittivity (/spl epsiv//sub r/) and dielectric loss (tan/spl delta/) from increasing at a high temperature above the glass transition temperature.
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