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CARBON-CARBON COMPOSITES MADE WITH OXIDISED PAN (PANEX) FIBERS

机译:用氧化潘(PANEX)纤维制成的碳-碳复合材料

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摘要

Carbon-carbon composites have been developed using Panex fibers (oxidised PAN fibers) possessing varying amounts of surface groups as reinforcement and phenolic resin and coal tar pitch as matrix precursors. Pyrolysis behaviour of resin based composites exhibited cross-sectional shrinkage and weight loss varying from 18 to 24% and from 32 to 40%, respectively, depending upon the amount of surface groups present on the surface of the Panex fibers. The flexural strength and flexural modulus of resin based composites (HTT 1000℃) were in the range of 11.0-30 MPa and 30.0-50 GPa, respectively, whereas for coal tar pitch based composites the values were 35-55 MPa and 30-50 GPa. On graphitisation (HTT 2700℃) there is very little improvement in the values of mechanical properties in case of resin based composites (the composites became fragile to handle) but the values increased to 4-6-fold (flexural strength, 200-250 MPa) and 2-3-fold (flexural modulus, 100-120 GPa) in the case of coal tar pitch based composites. It is possible to develop carbon-carbon composites with Panex fibers having mechanical properties equivalent to those developed with commercial carbon fibers (T-300 by Toray).
机译:已经使用具有不同数量的表面基团作为增强剂和酚醛树脂和煤焦油沥青作为基质前体的Panex纤维(氧化PAN纤维)开发了碳-碳复合材料。树脂基复合材料的热解行为表现出横截面收缩率和重量损失,分别取决于Panex纤维表面上存在的表面基团的数量,其变化范围为18%至24%和32%至40%。树脂基复合材料(HTT 1000℃)的抗弯强度和弯曲模量分别在11.0-30 MPa和30.0-50 GPa的范围内,而煤焦油沥青基复合材料的抗弯强度和弯曲模量分别为35-55 MPa和30-50 GPa。在石墨化(HTT 2700℃)下,基于树脂的复合材料(复合材料变得易碎)的机械性能值几乎没有改善,但增加到4-6倍(抗弯强度200-250 MPa) )和2到3倍(弯曲模量,100-120 GPa)(在煤焦油沥青基复合材料的情况下)。有可能开发出具有Panex纤维的碳-碳复合材料,其机械性能与市售碳纤维(Toray的T-300)相同。

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