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Epoxy/Anhydride Networks Modified With Polyhedral Oligomeric Silsesquioxanes

机译:多面体低聚倍半硅氧烷修饰的环氧/酸酐网络

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Epoxy/anhydride networks were modified, in the presence of benzyldimethylamine as catalyst, with two polyhedral oligomeric silsesquioxanes (POSS), whose inorganic framework had a compact and stable Si-0 core and an organic substituent shell. The influence of the content and type of POSS during curing and on the properties of the thermosets was investigated by thermal analysis and infrared spectroscopy. The curing kinetics was analyzed by means of an integral isocon-versional nonisothermal procedure. When the POSS modifier was added, the storage modulus in the rubbery plateau increased and the glass transition temperature decreased because of the presence of the flexible organic moieties and the influence in the crosslinking density. The presence of these POSS structures hardly affected the thermodegradation behavior of cured materials. The dispersion of the POSS structures in the epoxy/anhydride matrix was good, but some submicron-sized POSS agglomerates could be observed by transmission electron microscopy.
机译:在苄基二甲基胺作为催化剂的存在下,用两种多面体低聚倍半硅氧烷(POSS)对环氧/酸酐网络进行了修饰,其无机骨架具有致密且稳定的Si-0核和有机取代壳。通过热分析和红外光谱研究了固化过程中POSS的含量和类型以及对热固性材料性能的影响。通过积分等温转化非等温程序分析固化动力学。当添加POSS改性剂时,由于存在柔性有机部分和交联密度的影响,橡胶态高原中的储能模量增加并且玻璃化转变温度降低。这些POSS结构的存在几乎不会影响固化材料的热降解行为。 POSS结构在环氧/酸酐基体中的分散性良好,但可以通过透射电子显微镜观察到一些亚微米级的POSS附聚物。

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