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首页> 外文期刊>Journal of Applied Polymer Science >Hydroxyl terminated poly(ether ether ketone) with pendant methyl group-toughened epoxy clay ternary nanocomposites: Preparation, morphology, and thermomechanical properties
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Hydroxyl terminated poly(ether ether ketone) with pendant methyl group-toughened epoxy clay ternary nanocomposites: Preparation, morphology, and thermomechanical properties

机译:具有甲基侧基的环氧粘土三元纳米复合材料的羟基封端的聚醚醚酮:制备,形态和热机械性能

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摘要

Hydroxyl terminated poly(ether ether ketone) oligomer with pendant methyl group (PEEKMOH) was prepared. Ternary nanocomposites were processed by blending PEEKMOH oligomer with diglycidyl ether of bisphenol-A (DGEBA) epoxy resin along with organically modified montmorillonite (Cloisite 25A) followed by curing with 4,4'-diamino diphenyl sulfone. Tensile moduli and flexural moduli were increased, while the tensile strength and Izod impact strength were decreased with increase in clay content. Similarly, storage moduli and loss moduli were increased and glass transition temperature was decreased as the percentage of clay increased. X-ray diffractograms showed exfoliated morphology even with higher concentration of clay content (8 phr). Scanning electron microscopy of fractured surfaces and tensile failed specimens revealed slow crack propagation and increase in river markings with nanoclay incorporation confirming the improvement in toughness. The domain size of PEEKMOH was decreased with the incorporation of nanoclay into the epoxy matrix, indicating the restriction of growth mechanism by nucleation during phase separation. With increase in clay content, phase separation disappeared indicating gelation occurs before phase separation. Fracture toughness was increased with the addition of PEEKMOH and clay in epoxy resin. Coefficient of thermal expansion of nanocomposites decreases up to 3 phr clay concentrations thereafter it increases. A marginal increase in thermal stability was observed with increase in clay content. (c) 2007 Wiley Periodicals, Inc.
机译:制备了具有甲基侧基的羟基封端的聚醚醚酮低聚物(PEEKMOH)。通过将PEEKMOH低聚物与双酚A(DGEBA)环氧树脂的二缩水甘油醚与有机改性的蒙脱石(Cloisite 25A)混合,然后用4,4'-二氨基二苯砜进行固化,来处理三元纳米复合材料。随着粘土含量的增加,拉伸模量和弯曲模量增加,而拉伸强度和悬臂梁式冲击强度降低。同样,随着粘土含量的增加,储能模量和损耗模量增加,玻璃化转变温度降低。 X射线衍射图显示了剥落的形态,即使粘土含量较高(8 phr)也是如此。断裂表面和拉伸失效试样的扫描电子显微镜显示,随着纳米粘土的掺入,裂纹扩展缓慢,河流痕迹增加,证实了韧性的提高。 PEEKMOH的畴尺寸随纳米粘土掺入环氧基质而减小,表明相分离过程中成核作用限制了生长机理。随着粘土含量的增加,相分离消失,表明在相分离之前发生了凝胶化。通过在环氧树脂中添加PEEKMOH和粘土,可以提高断裂韧性。纳米复合材料的热膨胀系数降低至3 phr粘土浓度,然后增加。随着粘土含量的增加,观察到热稳定性略有增加。 (c)2007年Wiley Periodicals,Inc.

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