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首页> 外文期刊>Journal of Applied Polymer Science >CURE CHARACTERIZATION OF TRIGLYCIDYL EPOXY AROMATIC AMINE SYSTEMS
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CURE CHARACTERIZATION OF TRIGLYCIDYL EPOXY AROMATIC AMINE SYSTEMS

机译:三烯丙基环氧芳族胺体系的固化表征

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The curing of triglycidyl para-aminophenol (TGPAP) epoxy resin with three aromatic amine hardeners, diaminodiphenye sulphone (DDS), pyridinediamine (PDA), and toluenediamine (TDA), has been investigated. A series of isothermal cures was conducted and analyzed by Fourier transform infrared spectrometry (FTIR) and differential scanning calorimetry (DSC). The chemical reactions occurring during cure were monitored at different temperatures by qualitative and quantitative estimation of different groups in the IR spectra, and the ratio of rate constants (k(2)/k(1)) were evaluated. Dynamic DSC analysis of TGPAP/TDA resulted in two exothermal peaks, indicating cure kinetics different from those of TGPAP/DDS and TGPAP/PDA systems, which gave a single exothermal peak. Various kinetic parameters such as total heat of reaction Delta H', activation energy E(a). Frequency factor z, and order of reaction n were evaluated for all the three systems. From the initial kick-off temperatures and activation energy values it was concluded that the rate of curing followed the order TDA > PDA > DDS. The reaction conversions during cure, evaluated from IR analysis, were exactly the same as those obtained from DSC Borchardt-Daniels kinetics. Using this model, the plots of time vs. temperature for different conversions were constructed for all the three systems; on the basis of these, the cure cycles can be fixed. (C) 1995 John Wiley and Sons, Inc. [References: 12]
机译:已经研究了使用三种芳族胺固化剂二氨基二苯砜(DDS),吡啶二胺(PDA)和甲苯二胺(TDA)固化三缩水甘油基对氨基苯酚(TGPAP)环氧树脂的方法。进行了一系列等温固化,并通过傅里叶变换红外光谱(FTIR)和差示扫描量热法(DSC)进行了分析。通过定性和定量估算红外光谱中不同基团,在不同温度下监测固化过程中发生的化学反应,并评估速率常数的比率(k(2)/ k(1))。对TGPAP / TDA的动态DSC分析产生两个放热峰,表明固化动力学与TGPAP / DDS和TGPAP / PDA系统的固化动力学不同,后者给出了一个放热峰。各种动力学参数,例如反应总热量Delta H',活化能E(a)。对所有三个系统评估了频率因子z和反应阶数n。从初始开始温度和活化能值可以得出结论,固化速率遵循TDA> PDA> DDS的顺序。根据IR分析评估,固化过程中的反应转化率与DSC Borchardt-Daniels动力学获得的转化率完全相同。使用该模型,为所有三个系统构建了不同转换的时间与温度的关系图。在此基础上,固化周期可以固定。 (C)1995 John Wiley and Sons,Inc. [参考:12]

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