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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Effect of carbon fiber surface functional groups on the mechanical properties of carbon-carbon composites with HTT
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Effect of carbon fiber surface functional groups on the mechanical properties of carbon-carbon composites with HTT

机译:碳纤维表面官能团对HTT碳-碳复合材料力学性能的影响

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摘要

The present investigation describes the quantitative measurement of surface functional groups present on commercially available different PAN based fibers, their effect on the development of interface with resol-type phenol formaldehyde resin matrix and its effect on the physico-mechanical properties of carbon-carbon composites at various stages of heat treatment. An ESCA study of the carbon fibers has revealed that high strength (ST-3) carbon fibers possess almost 10% reactive functional groups as compared to 5.5 and 4.5% in case of intermediate modulus (M-500) and high modulus (HM-45) carbon fibers, respectively. As a result, ST-3 carbon fibers are in a position to make strong interactions with phenolic resin matrix and HM-45 carbon fibers make weak interactions, while IM-500 carbon fibers make intermediate interactions. This observation is also confirmed from the pyrolysis data (volume shrinkage) of the composites. Bulk density and kerosene density more or less increase in all the composites with heat treatment up to 2600 deg C. It is further observed that bulk density is minimum and kerosene density is maximum upon heat treatment at 2600 deg C in case of ST-3 based composites compared to HM-45 and IM-500 composites. It has been found for the first time that the deflection temperature (temperature at which the properties of the material start to decrease or increase) of flexural strength as well as interlaminar shear strength is different for the three composites (A, B and C) and is determined by the severity of interactions established at the polymer stage. Above this temperature, flexural strength and interlaminar shear strength increase in all the composites up to 2600 deg C. The maximum value of flexural strength at 2600 deg C is obtained for HM-45 composites and that of ILSS for ST-3 composites.
机译:本研究描述了定量测量存在于市售的不同PAN基纤维上的表面官能团,它们对与可熔酚醛型酚醛树脂基体界面形成的影响以及对碳-碳复合材料物理力学性能的影响。热处理的各个阶段。 ESCA对碳纤维的研究表明,高强度(ST-3)碳纤维具有近10%的反应性官能团,而中模量(M-500)和高模量(HM-45)则为5.5%和4.5% )碳纤维。结果,ST-3碳纤维可以与酚醛树脂基体发生强相互作用,而HM-45碳纤维则具有弱相互作用,而IM-500碳纤维则具有中间相互作用。从复合材料的热解数据(体积收缩率)也证实了这一观察结果。在热处理温度高达2600摄氏度的情况下,所有复合材料的体积密度和煤油密度或多或少地增加。进一步观察到,在ST-3型的情况下,在2600摄氏度进行热处理时,体积密度最小,煤油密度最大。与HM-45和IM-500复合材料相比。首次发现三种复合材料(A,B和C)的挠曲强度和层间剪切强度的挠曲温度(材料性能开始下降或升高的温度)不同。取决于在聚合物阶段建立的相互作用的严重性。在此温度以上,所有复合材料的挠曲强度和层间剪切强度在2600摄氏度以下都会增加。对于HM-45复合材料,其抗弯强度在2600℃时达到最大值,对于ST-3复合材料,其抗弯强度在ILSS处达到最大值。

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