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Fabrication of rigid polyimide foams via thermal foaming of nadimide-end-capped polyester-amine precursor

机译:赤二聚体末端升温聚酯 - 胺前体热发泡刚性聚酰亚胺泡沫的制造

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摘要

This work provides a method for fabricating rigid polyimide foams via thermal foaming method of nadimide-end-capped polyester-amine oligomer (NPEAO) precursor particles, which were synthesized by reaction of benzophenone-3,3 ',4,4 '-tetracarboxylic dianhydride andcis-5-norbornene-endo-2,3-dicarboxylic anhydride (NA) with different diamines. The foaming mechanism of the rigid PI foams was systematically investigated. The experiment demonstrates that the pre-treatment of the NPEAO precursor particles and foaming temperature are two pivotal factors that determine the foaming processes. The densities of the prepared rigid PI foams are mainly in the range of 40-200 kg m(-3). Moreover, the density and morphology of the PI foams can be effectively controlled by adjusting these two factors. Besides, the obtained rigid PI foams present excellent mechanical and thermal properties, specifically, the flexural and compressive strength reaches as high as to 1.42 MPa and 0.47 MPa, respectively, with the density of 0.076 g cm(-3), which are superior to common PI foams and aerogels that of reported in the literature. Therefore, these superior mechanical and thermal properties make obtained rigid PI foams promising candidates as structural materials in the advanced manufacturing industry.
机译:该工作提供了通过邻亚胺端封端的聚酯 - 胺低聚物(NPEAO)前体颗粒的热发泡方法制造刚性聚酰亚胺泡沫的方法,其通过二苯甲酮-3,3',4,4'-二羧酸二酐的反应合成andcis-5-降冰片烯-endo-2,3-二羧酸酐(Na)用不同二胺。系统地研究了刚性PI泡沫的发泡机理。实验表明,NPEAO前体颗粒和发泡温度的预处理是确定发泡过程的两个枢转因子。制备的刚性PI泡沫的密度主要在40-200kg m(-3)的范围内。此外,可以通过调节这两个因素来有效地控制PI泡沫的密度和形态。此外,所获得的刚性PI泡沫具有优异的机械和热性能,具体地,弯曲和抗压强度分别达到1.42MPa和0.47MPa,密度为0.076g cm(-3),其优于在文献中报道的常见PI泡沫和风凝胶。因此,这些优越的机械和热性能使得获得的刚性PI泡沫具有前景作为先进制造业的结构材料的候选物。

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