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首页> 外文期刊>Polymer international >Surface morphology, thermomechanical and barrier properties of poly(ether sulfone)-toughened epoxy clay ternary nanocomposites
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Surface morphology, thermomechanical and barrier properties of poly(ether sulfone)-toughened epoxy clay ternary nanocomposites

机译:聚醚砜增韧环氧粘土三元纳米复合材料的表面形貌,热力学和阻隔性能

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Poly(ether sulfone) (PES)-toughened epoxy clay ternary nanocomposites were prepared by melt blending of PES with diglycidyl ether of bisphenol A epoxy resin along with Cloisite 30B followed by curing with 4,4-diaminodiphenylsulfone. The effect of organoclay and thermoplastic on the fracture toughness, permeability, viscoelasticity and thermomechanical properties of the epoxy system was investigated. A significant improvement in fracture toughness and modulus with reduced coefficient of thermal expansion (CTE) and gas permeability were observed with the addition of thermoplastic and clay to the epoxy system. Scanning electron microscopy of fracture-failed specimens revealed crack path deflection and ductile fracture without phase separation. Oxygen gas permeability was reduced by 57% and fracture toughness was increased by 66% with the incorporation of 5 phr clay and 5 phr thermoplastic into the epoxy system. Optical transparency was retained even with high clay content. The addition of thermoplastic and organoclay to the epoxy system had a synergic effect on fracture toughness, modulus, CTE and barrier properties. Planetary ball-milled samples gave exfoliated morphology with better thermomechanical properties compared to ultrasonicated samples with intercalated morphology.
机译:聚(醚砜)(PES)增韧的环氧粘土三元纳米复合材料是通过将PES与双酚A环氧树脂的二缩水甘油醚与Cloisite 30B熔融共混,然后用4,4-二氨基二苯砜固化而制备的。研究了有机粘土和热塑性塑料对环氧体系的断裂韧性,渗透性,粘弹性和热机械性能的影响。通过在环氧树脂体系中添加热塑性塑料和粘土,可以显着改善断裂韧性和模量,同时降低热膨胀系数(CTE)和透气性。断裂失败试样的扫描电子显微镜显示裂纹路径变形和延性断裂,没有相分离。在环氧树脂体系中加入5份粘土和5份热塑性塑料后,氧气的渗透率降低了57%,断裂韧性提高了66%。即使粘土含量高,也保持了光学透明性。在环氧树脂体系中添加热塑性塑料和有机粘土对断裂韧性,模量,CTE和阻隔性能具有协同作用。与具有插层形貌的超声样品相比,行星式球磨样品给出了具有更好的热机械性能的剥落形貌。

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