基于脂环共聚物和丙烯酸与丙烯酰胺共聚物的复合材料

M. B. Umerzakova, R.M. Iskakov, R.B. Sarieva, Zh.N. Kainarbayeva, A.A. Espenbetov
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引用次数: 0

摘要

高分子材料科学的进步主要与新型复合材料的发展有关,这种材料是通过在基体聚合物中引入改性添加剂而产生的,改性添加剂由于其特性而改善了聚合物的特性。以三环四羧酸和二苯基氧基四羧酸二酐为基料,用丙烯酸与丙烯酰胺共聚物改性二氨基二苯基醚,制备热性能和力学性能均得到改善的复合材料。结果和讨论。制备了芳基环结构的共聚亚胺与丙烯酸共聚物和丙烯酰胺结合的聚合物组合物及其复合材料(薄膜)。结果表明,当添加组分的含量从0.35 wt%增加到2.0 wt%时,聚合物混合物的均匀性保持不变。红外光谱方法表明,在上述聚合物混合物的形成过程中,所研究的聚合物的官能团与氢键的形成相互作用,这决定了混合物的均匀性。采用热重法和恒变形率拉伸法分别测定了复合薄膜的热阻和力学性能。薄膜的热阻和强度的增加可以解释为混合物组分之间部分分子间交联的形成和材料的弹性-添加剂的塑化作用。结论。得到聚合物混合物,并在此基础上成型复合薄膜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPOSITE MATERIALS BASED ON ALICYCLIC COPOLYIMIDE AND ACRYLIC ACID COPOLYMER WITH ACRYLAMIDE
Progress in polymer materials science is mainly associated with the development of new composite materials, created by the introduction of modifying additives into the matrix polymer which which improve polymer characteristics due to their properties. The purpose of this work is to obtain composite materials with improved thermal and mechanical properties from copolyimide based on dianhydrides of tricyclotetracarboxylic and diphenyloxydtetracarboxylic acids with diaminodiphenyl ether modified by a copolymer of acrylic acid with acrylamide. Results and discussion. Polymer compositions of copolyimides of arylalycyclic structure in combination with acrylic acid copolymer and acrylamide, as well as composite materials (film) based on them, were obtained. It was found that with an increase in the content of the added component from 0.35 to 2.0 wt%, uniformity is maintained in the polymer mixture. The infrared (IR) spectroscopy method shows that during formation of the above polymer mixtures the interaction of functional groups of the polymers under study with the formation of hydrogen bonds, which determine the homogeneity of the mixture. By methods of thermogravimetry and stretching of the sample with a constant deformation rate were used to determine, respectively, the thermal resistance and mechanical properties of the developed composite films. The increase of thermal resistance and strength of the film is explained by the formation of partial intermolecular cross-linking between the components of the mixture and the elasticity of the material – with the plasticizing effect of the additive. Conclusion. Polymer mixtures were obtained and composite films were molded on their basis.
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