首页> 外文期刊>Journal of Applied Polymer Science >Reactive blends of epoxy resin (DGEBA) crosslinked by anionically polymerized polycaprolactam: Process of epoxy cure and kinetics of decomposition
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Reactive blends of epoxy resin (DGEBA) crosslinked by anionically polymerized polycaprolactam: Process of epoxy cure and kinetics of decomposition

机译:阴离子聚合聚己内酰胺交联的环氧树脂(DGEBA)的反应性共混物:环氧固化过程和分解动力学

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The curing reactions, kinetics, morphology, and thermal stability of the reactive blends of diglycidyl ether of bisphenol-A (DGEBA) and polycaprolactam were studied by differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), and thermogravimetric analysis. DSC studies showed that the heat of reaction (DeltaH) increased when the DGEBA content was increased from 50 to 80 wt % and increased drastically above 70 wt % DGEBA content because of an increase in the extent of crosslinking. The activation energy and pre-exponential factor of cure reactions increased drastically with an increase in the DGEBA content above 70 wt % because of a drastic increase in crosslink density. The extent of curing reaction of polycaprolactam with DGEBA is dependent on the blend composition. The nucleophilic attack on oxirane ring by amide nitrogen of polycaprolactam is a dominant curing reaction in low DGEBA compositions, and another type of curing reaction with relatively large activation energy and pre-exponential factor also occurred, which becomes dominant when the DGEBA content reaches above 70 wt %. FTIR studies also revealed that two types of reactions do exist during the curing of polycaprolactam with DGEBA. It was observed during SEM studies that the reactive blends show multiphase system and on increasing the DGEBA content from 50 to 80 wt %, the mixing of the two phases increased. The reactive blend Ep(80)Ca(20) with 80 wt % DGEBA content exhibits a single-phase system because of better mixing of the two phases. The results of thermogravimetric analysis also indicate that the initial degradation temperature (T-i), activation energy (E), and pre-exponential factor (Z) increased with increasing DGEBA content from 50 to 80 wt % in the reactive blends and increased drastically above 70 wt % DGEBA content due to the higher crosslink density. (C) 2004 Wiley Periodicals, Inc. [References: 29]
机译:通过差示扫描量热法(DSC),傅立叶变换红外光谱(FTIR),扫描电子显微镜(SEM)研究了双酚A二缩水甘油醚(DGEBA)与聚己内酰胺的反应性共混物的固化反应,动力学,形态和热稳定性。 )和热重分析。 DSC研究表明,当DGEBA含量从50wt%增加到80wt%时,反应热(DeltaH)增加,并且由于交联程度的增加,超过70wt%DGEBA含量急剧增加。随着交联密度的急剧增加,DGEBA含量增加到70 wt%以上时,固化反应的活化能和指数前因子急剧增加。聚己内酰胺与DGEBA的固化反应程度取决于共混物的组成。在低DGEBA组合物中,聚己内酰胺的酰胺氮对环氧乙烷环的亲核攻击是主要的固化反应,并且还发生了另一种类型的具有较大活化能和预指数因子的固化反应,当DGEBA含量达到70以上时,这种反应就占主导地位。重量%。 FTIR研究还表明,用DGEBA固化聚己内酰胺的过程中确实存在两种类型的反应。在SEM研究期间观察到,反应性共混物显示出多相体系,并且当DGEBA含量从50重量%增加至80重量%时,两相的混合增加。具有80 wt%DGEBA含量的反应性共混物Ep(80)Ca(20)表现出单相体系,因为两相更好地混合。热重分析的结果还表明,随着反应混合物中DGEBA含量从50 wt%增加到80 wt%,初始降解温度(Ti),活化能(E)和预指数因子(Z)升高,而在70以上时则急剧升高由于较高的交联密度,DGEBA含量为wt%。 (C)2004 Wiley Periodicals,Inc. [参考:29]

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