Vaganov Gleb, Simonova Maria, Romasheva Margarita, Didenko Andrey, Popova Elena, Ivan'kova Elena, Kamalov Almaz, Elokhovskiy Vladimir, Vaganov Vyacheslav, Filippov Alexander, Yudin Vladimir
Institute of Macromolecular Compounds of Russian Academy of Sciences, Bol'shoy pr. 31, St. Petersburg 199004, Russia.
Higher School of Automation and Robotics, Peter the Great St Petersburg Polytechnic University, Polytechnicheskaya St. 29, St. Petersburg 195251, Russia.
Polymers (Basel). 2023 Jul 1;15(13):2922. doi: 10.3390/polym15132922.
For the first time, a study of the influence of the molecular weight of the thermoplastic partially crystalline polyimide R-BAPB on the thermophysical and mechanical properties of carbon plastics was presented. The molecular weight of polyimide was determined using the method of light scattering and the study of the intrinsic viscosity of polyamic acid solutions. To obtain CFRPs, the uniform distribution of polyimide powder on continuous carbon fibers via electrostatic spraying and further hot calendering and pressing were applied. The study of the structure of the obtained carbon plastics via scanning electron microscopy has shown that the growth of the molecular weight of polyimide prevents the impregnation of carbon fiber with the introduced polyimide. Moreover, an increase in the molecular weight of polyimide leads to a rise in glass transition and thermal decomposition temperatures up to 590 °C, while the degree of crystallinity of CFRP falls. Nonetheless, raising the molecular weight from 22,000 to 70,000 g/mol of a binder polymer improves the interlayer fracture toughness G by more than five times.
首次提出了对热塑性部分结晶聚酰亚胺R-BAPB的分子量对碳塑料热物理和力学性能影响的研究。聚酰亚胺的分子量通过光散射法和聚酰胺酸溶液特性粘度的研究来测定。为了获得碳纤维增强塑料(CFRP),通过静电喷涂使聚酰亚胺粉末在连续碳纤维上均匀分布,然后进行热压延和压制。通过扫描电子显微镜对所得碳塑料结构的研究表明,聚酰亚胺分子量的增加会阻碍引入的聚酰亚胺对碳纤维的浸渍。此外,聚酰亚胺分子量的增加会导致玻璃化转变温度和热分解温度升高至590℃,而CFRP的结晶度下降。尽管如此,将粘结剂聚合物的分子量从22,000提高到70,000 g/mol可使层间断裂韧性G提高五倍以上。