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Study of the Effects of the Structure of Phthalazinone’s Side-Group on the Properties of the Poly(phthalazinone ether ketone)s Resins

机译:邻酞嗪酮侧基结构对聚酞嗪酮醚酮树脂性能影响的研究

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摘要

The application of poly(phthalazinone ether ketone)s (PPEKs) resin containing phthalazinone moiety is limited, due to its poor thermoforming processability. To investigate the effects of the phthalazinone’s side-group on the thermal stability and processability of the resin, a series of PPEKs resins with different side-group (–H/–CH3/–Ph) were prepared by nucleophilic aromatic substitution polymerization. The properties of the obtained resins were investigated by differential scanning calorimetry analysis (DSC), thermogravimetric analysis (TGA), dynamic thermomechanical analysis (DMA), and rheogoniometer. The results show that the introduction of methyl or phenyl into the PPEKs resin, significantly reduced the melting viscosity of the resin, but resulted in a slight decrease in the thermal stability of it. This might be due to the presence of methyl or phenyl, which enhanced the free volume of the molecule and reduced the entanglement between the chains; the results of the computer simulation confirmed it. Moreover, the resin films displayed excellent tensile strength with the introduction of methyl or phenyl. In a word, a novel poly(phthalazinone ether ketone)s resin with thermal resistance, easy processing and excellent mechanical properties could be obtained by introducing appropriate bulk-rigid side-groups into the phthalazinone moiety.
机译:含有酞嗪酮部分的聚(酞嗪酮醚酮)(PPEK)树脂的应用由于其热成型加工性差而受到限制。为了研究酞嗪酮侧基对树脂的热稳定性和可加工性的影响,通过亲核芳族取代聚合制备了一系列具有不同侧基(–H / –CH3 / –Ph)的PPEKs树脂。通过差示扫描量热分析(DSC),热重分析(TGA),动态热力学分析(DMA)和流变仪研究了所得树脂的性能。结果表明,将甲基或苯基引入PPEKs树脂中,可显着降低树脂的熔融粘度,但会导致其热稳定性略有下降。这可能是由于甲基或苯基的存在,它们增加了分子的自由体积并减少了链之间的缠结。计算机仿真的结果证实了这一点。此外,通过引入甲基或苯基,树脂膜表现出优异的拉伸强度。简而言之,通过将适当的本体刚性侧基引入到酞嗪酮部分中,可以获得具有耐热性,易于加工和优异的机械性能的新型聚(酞嗪酮醚酮)树脂。

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