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首页> 外文期刊>Journal of Applied Polymer Science >Curing and toughening of a stryyrene-modified epoxy resin
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Curing and toughening of a stryyrene-modified epoxy resin

机译:苯乙烯系改性环氧树脂的固化和增韧

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摘要

A commercially available epoxy resin (E907) formulated with a viscosity-reducing styrene monomer and several additives was subjected to thermal cure studies and mechanical property measurements. Thermoplastic poly(arylene ether sulfone) (PES) and poly(arylene ether phosphine oxide) (PEPO) with reactive amine or hydroxyl end groups were utilized to tqughen and co-cure with the system. The cure cycle was optimized and the networks were analyzed via differential scanning calorimetry, ther-mogravimetric analysis, dynamic mechanical analyzer, scanning electron microscopy, sol—gel extractions, and fracture toughness. A model epoxy resin was prepared from a tetrafunctional epoxy, e.g., MY722, difunctional EP0N828, styrene monomer, and benzoyl peroxide initiator (BPO), and was evaluated as a control to assess the possible role of the styrene monomer. The optimized cure cycle for E907 was 6 h at 930C, followed by a postcure of 2 h at 2040C. The fracture toughness of E907 was increased only marginally with PES and PEPO. In contrast, the model epoxy resin demonstrated a positive effect due to the styrene monomer and BPO and exhibited significantly increased fracture toughness with PES modification.
机译:将由降低粘度的苯乙烯单体和几种添加剂配制的市售环氧树脂(E907)进行热固化研究和机械性能测量。使用具有反应性胺或羟基端基的热塑性聚(亚芳基醚砜)(PES)和聚(亚芳基醚氧化膦)(PEPO)来固化并与该体系共固化。优化了固化周期,并通过差示扫描量热法,热重分析,动态机械分析仪,扫描电子显微镜,溶胶-凝胶萃取和断裂韧性对网络进行了分析。由四官能环氧树脂,例如MY722,双官能EP0N828,苯乙烯单体和过氧化苯甲酰引发剂(BPO)制备环氧树脂模型,并作为对照评估苯乙烯单体的可能作用。 E907的最佳固化周期是在930°C下进行6小时,然后在2040°C下进行2小时后固化。 PES和PEPO仅略微增加了E907的断裂韧性。相反,由于苯乙烯单体和BPO,模型环氧树脂显示出积极的作用,并且通过PES改性显示出明显提高的断裂韧性。

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