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首页> 外文期刊>Journal of Materials Science >Poly(ether ether ketone) with pendent methyl groups as a toughening agent for amine cured DGEBA epoxy resin
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Poly(ether ether ketone) with pendent methyl groups as a toughening agent for amine cured DGEBA epoxy resin

机译:侧基为甲基的聚醚醚酮作为增韧剂,用于胺固化的DGEBA环氧树脂

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A diglycidyl ether of bisphenol-A (DGEBA) epoxy resin was modified with poly(ether ether ketone) with pendent methyl groups (PEEKM). PEEKM was synthesised from methyl hydroquinone and 4,4'-difluorobenzophenone and characterised. Blends of epoxy resin and PEEKM were prepared by melt blending. The blends were transparent in the uncured state and gave single composition dependent T-g. The T-g-composition behaviour of the uncured blends has been studied using Gordon-Taylor, Kelley-Bueche and Fox equations. The scanning electron micrographs of extracted fracture surfaces revealed that reaction induced phase separation occurred in the blends. Cocontinuous morphology was obtained in blends containing 15 phr PEEKM. Two glass transition peaks corresponding to epoxy rich and thermoplastic rich phases were observed in the dynamic mechanical spectrum of the blends. The crosslink density of the blends calculated from dynamic mechanical analysis was less than that of unmodified epoxy resin. The tensile strength, flexural strength and modulus were comparable to that of the unmodified epoxy resin. It was found from fracture toughness measurements that PEEKM is an effective toughener for DDS cured epoxy resin. Fifteen phr PEEKM having cocontinuous morphology exhibited maximum increase in fracture toughness. The increase in fracture toughness was due to crack path deflection, crack pinning, crack bridging by dispersed PEEKM and local plastic deformation of the matrix. The exceptional increase in fracture toughness of 15 phr blend was attributed to the cocontinuous morphology of the blend. Finally it was observed that the thermal stability of epoxy resin was not affected by the addition of PEEKM.
机译:用具有悬垂甲基的聚醚醚酮(PEEKM)改性双酚A(DGEBA)环氧树脂的二缩水甘油醚。 PEEKM由甲基对苯二酚和4,4'-二氟二苯甲酮合成并表征。通过熔融共混制备环氧树脂和PEEKM的共混物。该共混物在未固化状态下是透明的,并给出了依赖于单一组成的T-g。使用Gordon-Taylor,Kelley-Bueche和Fox方程研究了未固化共混物的T-g组成行为。提取的断裂表面的扫描电子显微照片显示,在共混物中发生了反应诱导的相分离。在含有15phr PEEKM的共混物中获得了共连续形态。在共混物的动态机械光谱中观察到两个分别对应于富环氧相和富热塑性相的玻璃化转变峰。由动态力学分析计算出的共混物的交联密度小于未改性的环氧树脂。拉伸强度,挠曲强度和模量与未改性的环氧树脂相当。从断裂韧性测量结果发现,PEEKM是DDS固化环氧树脂的有效增韧剂。具有连续形态的15 phr PEEKM表现出最大的断裂韧性增加。断裂韧性的增加归因于裂纹路径的偏转,裂纹的钉扎,分散的PEEKM引起的裂纹桥接以及基体的局部塑性变形。 15 phr共混物的断裂韧性异常增加是由于共混物的连续形态。最后,观察到环氧树脂的热稳定性不受添加PEEKM的影响。

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