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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Cationic copolymerization of DGEBA with two bicyclic bis(gamma-lactone) derivatives using rare earth metal triflates as initiators
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Cationic copolymerization of DGEBA with two bicyclic bis(gamma-lactone) derivatives using rare earth metal triflates as initiators

机译:使用稀土金属三氟甲磺酸酯作为引发剂的DGEBA与两种双环双(γ-内酯)衍生物的阳离子共聚

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摘要

The thermal cationic curing of mixtures in different proportions of diglycidylether of bisphenol A (DGEBA) with two differently substituted condensed bis(gamma-lactone)s (BisMe and BisPhe) initiated by scandium, ytterbium and lanthanum triflates or a conventional BF3.MEA initiator was investigated. Non-isothermal differential scanning calorimetry (DSC) experiments at a controlled heating rate were used to evaluate the evolution of the reactive systems. BF3.MEA and rare earth metal triflates initiated curing systems follow a different evolution. Among rare earth metal triflates tested, the scandium was the most active initiator. The phenomenological changes that take place during curing were studied and represented in time-temperature-transformation (TTT) diagrams. The improvement in the reworkable character of the materials prepared was confirmed by thermogravimetry. The thermomechanical characteristics were also evaluated.
机译:通过scan 、,和镧三氟甲磺酸酯或传统的BF3.MEA引发剂将不同比例的双酚A二缩水甘油醚(DGEBA)与两个不同取代的稠合双(γ-内酯)(BisMe和BisPhe)混合物的热阳离子固化。调查。使用非等温差示扫描量热法(DSC)在受控加热速率下的实验来评估反应体系的演变。 BF3.MEA和稀土金属三氟甲磺酸酯引发的固化系统遵循不同的发展历程。在测试的稀土金属三氟甲磺酸酯中,the是最活跃的引发剂。研究了固化过程中发生的现象学变化,并将其表示在时间-温度转换(TTT)图中。通过热重分析证实了所制备材料的可再加工性的改善。还评估了热机械特性。

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