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Processing and characterization of nanographene platelets modified phenolic resin as a precursor to carbon/ carbon composites—part 1

机译:纳米石墨烯片改性酚醛树脂作为碳/碳复合材料的前体的加工和表征,第1部分

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Nanographene platelets have been explored as nanofillers for resole type phenolic resin (GP 486G34) with catalyst (GP 4826C) supplied by Georgia Pacific Resins. Previous studies have shown that carbon nanofillers including single-walled carbon nanotubes, vapor-grown carbon nanofibers and graphite powder are shown to increase dimensional stability, carbon content and thermomechanical properties. In the present study, 0.5%, 1.5%, 3% and 5% by weight dispersions of nanographene platelets in phenolic resin were compared with corresponding dispersions of vapor-grown carbon nanofibers in phenolic resin to investigate the effect on curing reaction and rheological and wetting behaviors. 0.5 wt% nanographene platelets increased the heat of curing of neat phenolic resin by 33% compared with 26% increase in 0.5 wt% vapor-grown carbon nanofibers. Due to the mechanism of inter-platelet sliding of nanographene platelets, 0.5 wt% nanographene platelets reduced the steady shear viscosity of phenolic resin by 48% compared with that of neat resin after 1.5 h at I % strain rate. The lower viscosity of 0.5 wt% nanographene platelets dispersion led to lower (20°) contact angle compared with neat phenolic (29.57°) with 8-harness satin weave carbon fabric after 10 s of contact with the fabric. Due to lower viscosity of nanographene platelets/phenolic dispersions and higher heat of curing, nanographene platelets could be potential carbon nanofiller for densifying carbon/carbon composites during manufacture.
机译:纳米石墨烯血小板已被用作佐治亚太平洋树脂公司提供的带有催化剂(GP 4826C)的甲阶酚醛树脂(GP 486G34)的纳米填料。先前的研究表明,包括单壁碳纳米管,气相生长的碳纳米纤维和石墨粉在内的碳纳米填料可提高尺寸稳定性,碳含量和热机械性能。在本研究中,将纳米石墨烯薄片在酚醛树脂中的重量百分比分别为0.5%,1.5%,3%和5%进行了比较,并比较了气相生长的碳纳米纤维在酚醛树脂中的相应分散度,以研究其对固化反应以及流变和润湿的影响。行为。 0.5%(重量)的纳米石墨烯片晶使纯酚醛树脂的固化热增加了33%,而气相生长的0.5%(重量)的碳纳米纤维则增加了26%。由于纳米石墨烯血小板的血小板间滑动机制,在1%应变速率下1.5小时后,与纯树脂相比,0.5 wt%纳米石墨烯血小板将酚醛树脂的稳态剪切粘度降低了48%。与8线缎纹编织碳纤维织物接触10 s后,与纯酚醛树脂(29.57°)相比,较低粘度的0.5 wt%纳米石墨烯血小板分散液导致较低的(20°)接触角。由于纳米石墨烯片/酚分散体的较低粘度和较高的固化热,纳米石墨烯片可能是用于在制造过程中致密碳/碳复合材料的潜在碳纳米填料。

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