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Synergistic effect of surface modification of carbon fabrics and multiwall carbon nanotube incorporation for improving tribological properties of carbon fabrics/resin composites

机译:碳织物表面改性的协同作用及多壁碳纳米管掺入改善碳织物/树脂复合材料的摩擦学性质

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Surface modification of carbon fabrics (CFs) by nitric acid and multiwall carbon nanotube (MWCNT) incorporation into the resin matrix were simultaneously applied for CFs/resin composites to improve their tribological properties. The results show that surface roughness (Ra) of CFs increases from 8.20 to 15.10 nm after nitric acid treatment due to the remove of sizing agent on CFs surface. Surface hardness of the composites with 0.1 wt% MWCNT (CFR-H-0.1%T) is enhanced from 0.745 to 1.216 GPa compared with that of untreated CFs/phenolic resin composites (CFR), which is attributed to the toughening effect of MWCNT in resin matrix. The friction coefficient increases from 0.10 for CFR to 0.16 for CFR-H-0.1%T, while the wear rate significantly decreases from 5.75 x 10(-14) m(3) (N m)(-1) to 2.05 x 10(-14) m(3) (N m)(-1). The improvement of friction and wear properties is ascribed to the synergistic effect of the oxidation etching of nitric acid and the strengthening and toughening of MWCNT.
机译:通过硝酸和多壁碳纳米管(MWCNT)掺入树脂基质中的碳织物(CFS)的表面改性,同时施加CFS /树脂复合材料以改善其摩擦学性质。 结果表明,由于在CFS表面上除去硝酸处理后,CF的表面粗糙度(RA)从8.20增加到15.10nm。 与未处理的CFS /酚醛树脂复合材料(CFR)相比,具有0.1wt%MWCNT(CFR-H-0.1%T)的复合材料的表面硬度从0.745-1.216GPa增强,这归因于MWCNT的增韧效果 树脂基质。 对于CFR-H-0.1%T,摩擦系数从0.10增加到0.16,而CFR-H-0.1%T,则磨损率从5.75×10( - 14)m(3)(n m)( - 1)至2.05 x 10( -14)m(3)(n m)( - 1)。 摩擦和磨损性能的改善归因于硝酸的氧化蚀刻的协同作用及MWCNT的强化和增韧。

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