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首页> 外文期刊>Journal of Materials Science >TOUGHNESS AND MICROSCOPIC FRACTURE MECHANISMS OF UNFILLED AND SHORT-GLASS-FIBRE-FILLED POLY(CYANO ARYLETHER)
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TOUGHNESS AND MICROSCOPIC FRACTURE MECHANISMS OF UNFILLED AND SHORT-GLASS-FIBRE-FILLED POLY(CYANO ARYLETHER)

机译:未填充和短玻璃纤维填充的聚氰(氰基芳烃)的韧性和微观断裂机理

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摘要

Fracture mechanisms of an advanced high-strength thermoplastic poly(cyano arylether) (PCAE) and its short-glass-fibre (SGF)-reinforced composites have been studied in relation to toughnesses K-C and J(C). Test temperatures were 23 and 100 degrees C. Reflected and transmitted optical observations were combined with scanning electron microscopy for the fractographic investigation. For unreinforced PCAE tested at 100 degrees C, the damage area in front of a notch becomes fairly large in size and consists of numerous tensile microfailures around the local plastic yielding zone, as compared with that tested at 23 degrees C. This resulted in a substantial improvement of K-C and a big increase in J(C). Filling fibres, however, produced both toughening and anti-toughening results: effects of fibre spanning, pull-out and bridging across the local plastic failure zone and zigzag propagation of fracture due to fibre filling, improved the toughness. However, adhesive failure at the fibre-matrix interface, tensile microcleavage at the fibre ends and straightforward fracture in the skin layer, considerably diminished the values of K-C and J(C), except for the trend of K-C at 23 degrees C. [References: 23]
机译:已经研究了与韧性K-C和J(C)相关的先进的高强度热塑性聚氰基芳基醚(PCAE)及其短玻璃纤维(SGF)增强复合材料的断裂机理。测试温度为23摄氏度和100摄氏度。反射和透射光学观察与扫描电子显微镜相结合进行分形研究。对于在100摄氏度下进行测试的未增强PCAE,与在23摄氏度下进行测试的情况相比,缺口前面的损坏区域的尺寸变得相当大,并且由局部塑性屈服区周围的许多拉伸微裂纹组成。 KC的改善和J(C)的大幅增加。但是,填充纤维既产生增韧效果,又产生抗增韧效果:在局部塑性破坏区域内纤维跨接,拉出和桥接以及由于纤维填充引起的断裂的锯齿形传播的影响提高了韧性。但是,除了在23摄氏度时的KC趋势外,在纤维-基质界面处的粘合失败,在纤维末端的拉伸微断裂和表皮层中的直接断裂都大大降低了KC和J(C)的值。 :23]

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