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Thermal imidization behavior of aromatic polyimides by rigid-body pendulum rheometer

机译:刚性摆流变仪对芳族聚酰亚胺的热酰亚胺化行为

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摘要

Two types of polyamic acid (PAA) precursors were synthesized via combining 3,3',4,4'-Oxydiphthalicdianhydride (ODPA) with 4,4'-thioetherdianiline (TDA) and 4,4'-sulfonyldianiline (SDA), respectively. Thermal gravity analysis (TGA), rigid-body pendulum rheometer experiment (RPR), and Fourier transform infrared (FTIR) spectroscopy were combined to analyze the thermal imidization processes from precursors PAA to polyimides (PI). This procedure provides the new PAA-PI system with new methods for observing the imidization behavior, thermal properties, and finding the optimization of processing conditions. The results of the TGA and FTIR imidization conversion analysis revealed that the PAA-PI systems synthesized with identical dianhydride and different diamines have distinct reaction temperature regions and reaction speed. The inductive effect of withdrawing and releasing group and the rigidity-flexibility of the molecular chain in the structure of molecular backbone chain influence the imidization reaction. We have seen from the RPR test results that the entire imidization reaction in every isothermal testing temperature reaches an equilibrium condition and completes the gradation reaction of each isothermal temperature within 20 min. Glass transition temperatures (T-g) of PIs increase with increasing the conversion rate from PAA into PI and the rigidity of molecular chain. (C) 2008 Wiley Periodicals, Inc.
机译:分别通过将3,3',4,4'-氧代二邻苯二甲酸酐(ODPA)与4,4'-硫代醚二苯胺(TDA)和4,4'-磺酰基二苯胺(SDA)结合来合成两种类型的聚酰胺酸(PAA)前体。结合热重力分析(TGA),刚体摆式流变仪实验(RPR)和傅里叶变换红外(FTIR)光谱,分析了从前体PAA到聚酰亚胺(PI)的热酰亚胺化过程。该程序为新的PAA-PI系统提供了新的方法,可用于观察酰亚胺化行为,热性质以及寻找最佳加工条件。 TGA和FTIR酰亚胺化转化分析的结果表明,用相同的二酐和不同的二胺合成的PAA-PI体系具有不同的反应温度范围和反应速度。分子骨架链结构中分子基团的释放和释放的诱导作用以及分子链的刚度-柔韧性影响酰亚胺化反应。从RPR测试结果可以看出,每个等温测试温度下的整个酰亚胺化反应达到平衡条件,并在20分钟内完成每个等温温度的分级反应。 PI的玻璃化转变温度(T-g)随着从PAA到PI的转化率和分子链的刚性的增加而增加。 (C)2008 Wiley期刊公司

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