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Mechanical properties and morphology of organic silicon/polyurethane IPNs prepared by sol-gel method

机译:溶胶-凝胶法制备有机硅/聚氨酯IPN的力学性能和形貌

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Complex coupling agents system with two kinds of functional, crosslinked groups(-NH_2 and-C=C-) are employed for the first time to generate crosslinked structures in the formation of inorganic-organic interpenetrating polymer networks(IPNs) composed of methyl methacrylate-co-maleic anhydride copolymer and silica polymer formed by hydrolysis of tetraethoxysilane via radical polymerization and sol-gel method of two networks. The polymerization process, morphology and the mechanical properties of hybrids are studied by FTIR, TEM, transparency, TG-DTA and stress-strain curve detection. The results indicate that the component ratio has effect to the transparent and mechanical properties of hybrids. The FT-IR detection results proved the formation of crosslink structures between two networks. The TEM observation results indicate that the introduction of covalent bond can control the phase separation of hybrid within 20nm and thus obtain hybrids with higher transparency(above 85%). The mechanical property detection results show that thermal resistance, elastic modulus and tensile strength are all improved by the interpenetration of inorganic phase into hybrid compared with pure organic components.
机译:首次使用具有两种功能性交联基团(-NH_2和-C = C-)的复杂偶联剂体系,在由甲基丙烯酸甲酯-组成的无机-有机互穿聚合物网络(IPN)的形成中生成交联结构。顺丁烯二酸酐共聚物和二氧化硅聚合物通过自由基聚合和两个网络的溶胶-凝胶法由四乙氧基硅烷水解而形成。通过FTIR,TEM,透明度,TG-DTA和应力-应变曲线检测研究了杂化物的聚合过程,形态和力学性能。结果表明,组分比对杂化材料的透明性和机械性能有影响。 FT-IR检测结果证明了两个网络之间的交联结构的形成。 TEM观察结果表明,共价键的引入可将杂化体的相分离控制在20nm以内,从而获得具有较高透明度(大于85%)的杂化体。力学性能检测结果表明,与纯有机组分相比,无机相互渗可提高耐热性,弹性模量和拉伸强度。

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