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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Curing behaviors and properties of an extrinsic toughened epoxy/anhydride system and an intrinsic toughened epoxy/anhydride system
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Curing behaviors and properties of an extrinsic toughened epoxy/anhydride system and an intrinsic toughened epoxy/anhydride system

机译:外在增韧环氧/酸酐体系和本征增韧环氧/酸酐体系的固化行为和性能

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摘要

The curing kinetics of an extrinsic toughened epoxy (mixture of diglycidyl ether of bisphenol-A and 1,4-butanediol epoxy resin, DGEBA/DGEBD) and an intrinsic toughened epoxy (ethoxylated bisphenol-A epoxy resin with two oxyethylene units, DGEBAEO-2) using hexahydrophthalic anhydride (HHPA) as curing agent and tris-(dimethylaminomethyl) phenol (DMP-30) as accelerator were comparatively studied by non-isothermal DSC with a model-fitting Málek approach and a model-free advanced isoconversional method of Vyazovkin. The dynamic mechanical properties and thermal stabilities of the cured materials were investigated by DMTA and TGA, respectively. The results showed that ?esták-Berggren model can generally simulate well the reaction rates of these two systems. The activation energy of DGEBA/DGEBD/HHPA/DMP-30 at high fractional conversion changed much higher than that of DGEBAEO-2/HHPA/DMP- 30, indicating the increased steric hindrance mainly affected the reaction kinetic scheme of DGEBA/DGEBD/HHPA/DMP-30. The T_g and storage moduli of cured DGEBAEO-2/HHPA/DMP-30 were lower than those of cured DGEBA/DGEBD/HHPA/DMP-30 according to DMTA while TGA showed that the thermal stabilities of these two cured systems were similar.
机译:外在增韧环氧树脂(双酚A的二缩水甘油醚和1,4-丁二醇环氧树脂的混合物,DGEBA / DGEBD)和固有增韧环氧树脂(具有两个氧乙烯单元的乙氧基化双酚A环氧树脂,DGEBAEO-2)的固化动力学)使用非等温DSC,模型Málek拟合和无模型Vyazovkin先进先进等转化方法,对六氢邻苯二甲酸酐(HHPA)作为固化剂和三-(二甲基氨基甲基)苯酚(DMP-30)作为促进剂进行了比较研究。分别通过DMTA和TGA研究了固化材料的动态力学性能和热稳定性。结果表明,?esták-Berggren模型通常可以很好地模拟这两个系统的反应速率。 DGEBA / DGEBD / HHPA / DMP-30在高分馏下的活化能比DGEBAEO-2 / HHPA / DMP-30的活化能高得多,这表明增加的空间位阻主要影响DGEBA / DGEBD / HHPA的反应动力学方案。 / DMP-30。根据DMTA,固化的DGEBAEO-2 / HHPA / DMP-30的T_g和储能模量低于固化的DGEBAEO / DGEBD / HHPA / DMP-30,而TGA显示这两个固化系统的热稳定性相似。

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