首页> 外文期刊>Carbon >STUDIES ON THE INFLUENCE OF SECONDARY HEAT TREATMENT ON STRUCTURE AND PROPERTIES OF UNIDIRECTIONAL CARBON/CARBON AND CARBON/FURFURAL-SILOXANE COMPOSITES
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STUDIES ON THE INFLUENCE OF SECONDARY HEAT TREATMENT ON STRUCTURE AND PROPERTIES OF UNIDIRECTIONAL CARBON/CARBON AND CARBON/FURFURAL-SILOXANE COMPOSITES

机译:二次热处理对单向碳/碳及碳/糠醛-硅氧烷复合材料的结构和性能的影响

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摘要

Unidirectional carbon/carbon composites have been prepared using high strength and high modulus carbon fibres as reinforcements and phenolic, polyfurfuryl alcohol and furfuryl—siloxane resins as matrix precursors. The composites were pyrolyzed to 1000℃ and subsequently heat treated to 1450 and 2800℃ in the presence of argon. Changes in volume and density were measured and were found to be dependent on reinforcement and matrix precursors. Porosity and pore size distribution measured by mercury porosimetry suggests that during secondary heat treatment pore and crack closing takes up if the fibre/matrix bonding is strong and the opposite phenomenon takes place otherwise. This has been substantiated by optical and SEM microscopy. The porosity and pore size distribution influences the flexural strength of the composites while the dynamic modulus has been found to be dependent on the graphitic contents of the composite. The secondary heat treatment enhances the oxiresistivity of the composites though porosity is still a determining factor. Presence of silicon compounds in the matrix enhances the oxidation resistance and in the composites with this matrix system is found to be more effective at the fibre/matrix interface.
机译:已经使用高强度和高模量碳纤维作为增强材料,并使用酚醛,聚糠醇和糠基-硅氧烷树脂作为基质前体制备了单向碳/碳复合材料。将该复合物热解至1000℃,然后在氩气存在下热处理至1450和2800℃。测量了体积和密度的变化,发现其取决于增强材料和基质前体。通过水银孔率法测量的孔隙率和孔径分布表明,在二次热处理期间,如果纤维/基体之间的结合力强,则孔隙和裂纹就会闭合,否则就会发生相反的现象。这已经通过光学和SEM显微镜证实。孔隙率和孔径分布影响复合材料的抗弯强度,而动态模量已发现取决于复合材料的石墨含量。尽管孔隙率仍然是决定因素,但是二次热处理提高了复合材料的抗氧化性。基质中存在硅化合物可增强抗氧化性,并且在具有这种基质体系的复合材料中,发现在纤维/基质界面处更有效。

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