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STUDY OF CYANOETHYLATED ALFA FIBER REINFORCED COMPOSITES BY DYNAMIC MECHANICAL ANALYSIS

机译:氰基化阿尔法纤维增强复合材料的动态力学分析研究

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摘要

Cyanoethylation of long alfa fibers was studied, and these chemically modified fibers were used to manufacture alfa-polyester composites. The dynamic mechanical thermal properties of an unsaturated polyester resin (cured) and of composites of unmodified and chemically modified alfa-polyester were studied using a dynamic mechanical analyzer over a wide temperature range. The data suggest that in spite of the fragility of the cyanoethylated alfa fibers compared to the unmodified ones, both unmodified and modified alfa-polyester composites manifest the same order of mechanical properties: T{sub}g, tan δ and E' values are very near in the two cases. Fragility of fibers is compensated by the better interfacial bond between the fibers and the matrix. The scanning electron micrographs of the fracture surface of the samples reveal the improved bonding at the interface between the cyanoethylated fiber and the polyester resin.
机译:研究了长阿尔法纤维的氰乙基化,并将这些化学改性的纤维用于制造阿尔法-聚酯复合材料。使用动态机械分析仪在较宽的温度范围内研究了不饱和聚酯树脂(固化)以及未改性和化学改性的α-聚酯复合材料的动态机械热性能。数据表明,尽管氰乙基化的阿尔法纤维与未改性的纤维相比具有脆性,但未改性和改性的阿尔法-聚酯复合材料均表现出相同的机械性能:T {sub} g,tanδ和E'值非常高。在两种情况下都接近。纤维的脆性通过纤维与基质之间更好的界面结合而得到补偿。样品的断裂表面的扫描电子显微照片显示出在氰基乙基化纤维和聚酯树脂之间的界面处改善了粘合。

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