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Polyimide foams derived from a high Tg polyimide with grafted poly(α-methylstyrene)

机译:高Tg聚酰亚胺与接枝的聚(α-甲基苯乙烯)衍生的聚酰亚胺泡沫

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摘要

A new route to high-Tg, thermally stable polyimide foams has been developed. Foams were prepared by casting microphase-separated graft copolymers comprising a thermally stable main chain, polyimide, and a thermally labile graft, poly(α-methylstyrene). The copolymer compositions were designed so that the thermally labile block would be the dispersed phase. This can unzip to its monomer upon heating, and the decomposition product diffuses out of the film, leaving pores embedded in a matrix of the thermally stable component. The copolymers were synthesized through either the poly(amic acid) precursor, followed by chemical cyclodehydration to the imide form, or the poly(amic alkyl ester) precursor followed by thermal imidization. The decomposition of the α-methylstyrene in the block copolymer was studied by thermogravimetric, dynamic mechanical and thermomechanical analyses. Mild decomposition conditions were required to avoid rapid depolymerization of the α-methylstyrene and excessive plasticization of the polyimide matrix. The foams showed pore sizes with diameters ranging from less than 20 nm to over 1 µm, depending upon the synthetic route employed, and the reduction in the mass density was generally consistent with the starting composition.
机译:已经开发出一种高Tg,热稳定的聚酰亚胺泡沫的新途径。通过浇铸微相分离的接枝共聚物来制备泡沫,该接枝共聚物包括热稳定的主链聚酰亚胺和热不稳定的接枝聚(α-甲基苯乙烯)。设计共聚物组合物,使得热不稳定的嵌段为分散相。在加热时,它可以解压缩到其单体上,并且分解产物从薄膜中扩散出去,从而在热稳定成分的基质中留下孔隙。通过聚(酰胺酸)前体,然后将其化学环脱水为酰亚胺形式,或者通过聚(酰胺烷基酯)前体,然后进行热酰亚胺化,来合成共聚物。通过热重,动态力学和热力学分析研究了α-甲基苯乙烯在嵌段共聚物中的分解。需要温和的分解条件,以避免α-甲基苯乙烯快速解聚和聚酰亚胺基体过度塑化。取决于所采用的合成途径,泡沫显示出孔径范围小于20nm至大于1μm的孔径,并且质量密度的降低通常与起始组合物一致。

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