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首页> 外文期刊>e-Polymers >Study on epoxy resin with high elongation-at-break using polyamide and polyether amine as a two-component curing agent
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Study on epoxy resin with high elongation-at-break using polyamide and polyether amine as a two-component curing agent

机译:以聚酰胺和聚醚胺为双组分固化剂的高断裂伸长率环氧树脂的研究

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This study aimed to improve the flexibility of E-51 epoxy resin by using polyamide/polyether amine as a two-component curing agent. Through solid state nuclear magnetic resonance (SSNMR), it was found that the cross-linking density of epoxy resin could be effectively reduced by adding the polyamide and polyether amine curing agent. The tensile tests showed that the elongation-at-break was remarkably improved. It was found by differential scanning calorimetry (DSC) that the curing behavior of the polyamide epoxy curing system varied with the addition of different polyether amine. Phase contrast microscope showed that phase separation occurred during the reaction of epoxy resin with the polyamide/polyether amine composite curing agent. In this paper, the modified epoxy resin was endowed with high elongation-at-break (100%) and appropriate tensile strength (10~20 MPa).
机译:本研究旨在通过使用聚酰胺/聚醚胺作为二组分固化剂来提高E-51环氧树脂的柔韧性。通过固态核磁共振(SSNMR),发现通过添加聚酰胺和聚醚胺固化剂可以有效地降低环氧树脂的交联密度。拉伸试验表明断裂伸长率显着提高。通过差示扫描量热法(DSC)发现,聚酰胺环氧固化体系的固化行为随添加不同的聚醚胺而变化。相差显微镜显示,在环氧树脂与聚酰胺/聚醚胺复合固化剂反应期间发生了相分离。该改性环氧树脂具有较高的断裂伸长率(> 100%)和适当的拉伸强度(10〜20 MPa)。

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