首页> 外文期刊>Progress in reaction kinetics and mechanism >Non-isothermal curing kinetics, chemorheological behaviour, and IR spectral study of two trifunctional phenylethynyl-terminated imide oligomers compared with the corresponding bifunctional structure
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Non-isothermal curing kinetics, chemorheological behaviour, and IR spectral study of two trifunctional phenylethynyl-terminated imide oligomers compared with the corresponding bifunctional structure

机译:两种三官能苯基乙炔基封端的酰亚胺低聚物与相应双功能结构的非等温固化动力学,化学流变行为和红外光谱研究

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Two trifunctional phenylethynyl-terminated imide oligomers, m-TPEPA and p-TPEPA, were systematically compared with the corresponding bifunctional phenylethynyl-terminated imide oligomer, BPEPA. The non-isothermal curing kinetics, Master Plots method, and rheological behaviour of the three high performance oligomers were systematically studied by dynamic DSC, small amplitude oscillatory shear rheometry, and infrared spectroscopy. The results show that the activation energy (E-a) depended on the extent of conversion evaluated with three different methods, and the lower E-a values of the trifunctional oligomers, which may lead to different curing reactions, compared with the sustained growth of E-a values of BPEPA. The chemorheological properties of the oligomers were measured and fit numerically with the dual Arrhenius model and gel model. Moreover, the degree of cure (a(gel)) at the gel time (t(gel)) was calculated by the value of glass transform temperature at different curing temperature combined with rheological and isothermal DSC results. According to structural changes during the curing reaction characterised using FTIR spectra, it was inferred that the structures of the cured trifunctional imide resins have cis-configurations, which may change the part of the configuration from cis to trimerisation with the lower activation energies found in the later part of the conversion, while the difunctional imide structure is trans.
机译:系统地比较了两个三官能苯基乙炔基封端的酰亚胺低聚物,m-TPEPA和p-TPEPA,与相应的双官能苯基乙炔基封端的酰亚胺低聚物,BPEPA。通过动态DSC,小振幅振荡剪切流变学和红外光谱系统研究了这三种高性能低聚物的非等温固化动力学,Master Plots方法和流变行为。结果表明,活化能(Ea)取决于三种不同方法评估的转化程度,而三官能低聚物的Ea值较低,这可能导致不同的固化反应,而BPEPA的Ea值则持续增长。 。测量低聚物的化学流变性质,并在数值上与双重阿伦尼乌斯模型和凝胶模型拟合。此外,结合流变和等温DSC结果,通过在不同固化温度下的玻璃化转变温度值来计算在胶凝时间(t(gel))的固化度(a(gel))。根据使用FTIR光谱表征的固化反应过程中的结构变化,可以推断出固化的三官能酰亚胺树脂的结构具有顺式构型,这可能会使构型的一部分从顺式变为三聚,而活化能较低。转化的后期部分,而双官能酰亚胺结构是反式的。

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