材料科学
熔点
玻璃化转变
热稳定性
双酚A
热分解
熔化温度
热塑性塑料
高分子化学
分解
氧化磷酸化
粘度
化学工程
聚合物
复合材料
有机化学
环氧树脂
化学
生物化学
工程类
作者
Zemin Shi,Masatoshi Hasegawa,Yoichi Shindo,Rikio Yokata,Feifeng He,Hiroaki Yamaguchi,Hideo Ozawa
标识
DOI:10.1088/0954-0083/12/3/302
摘要
Two series of homopolyimides based on oxydiphthalic anhydride and bisphenol A bisether-4-diphthalic anhydride were synthesized with 12 kinds of aromatic diamines. Several thermo-processable homopolyimides were the focus of further investigation. The structure–property relationships of these homopolyimides were examined as functions of the glass transition temperature ( T g ), melting point ( T m ), thermal decomposition temperature ( T d ), and melt-flowability. The effects of the chemical and higher-order structures on these properties were discussed in this work to obtain an indication for the molecular design of high-performance thermoprocessable polyimides. A series of thermoplastic copolyimides were prepared to achieve higher T g and T d without sacrificing thermo-processability. The copolyimides investigated exhibited a comparable or lower melt viscosity, higher T g and T d , and higher long-term thermo-oxidative stability than those of ULTEM type polyimides. One of them exhibited a low melt viscosity (4700 poise at 400 °C), a high T g (224 °C), and excellent thermo-oxidative stability.
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