Preparation of carbon fibers with excellent mechanical properties from isotropic pitches

被引:96
作者
Kim, Byung-Jun [1 ]
Eom, Youngho [4 ]
Kato, Osamu [2 ]
Miyawaki, Jin [2 ]
Kim, Byoung Chul [4 ]
Mochida, Isao [3 ]
Yoon, Seong-Ho [1 ,2 ]
机构
[1] Kyushu Univ, Interdisciplinary Grad Sch Engn Sci, Kasuga, Fukuoka 8168580, Japan
[2] Kyushu Univ, Inst Mat Chem & Engn, Kasuga, Fukuoka 8168580, Japan
[3] Kyushu Univ, Res Educ Ctr Carbon Resources, Kasuga, Fukuoka 8168580, Japan
[4] Hanyang Univ, Dept Organ & Nano Engn, Seoul 133791, South Korea
关键词
RHEOLOGICAL PROPERTIES; COAL-TAR; COMPRESSIVE STRENGTH; MESOPHASE SPHERES; SOFTENING POINT; NANOPARTICLES; COMPOSITES; NMR;
D O I
10.1016/j.carbon.2014.05.079
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A novel isotropic pitch composed of linear methylene chains of polycondensed aromatic molecules was synthesized from naphtha-cracked oil through bromination and subsequent dehydrobromination (NB). Isotropic pitch-based carbon fiber obtained from the prepared NB yielded an unprecedentedly high tensile strength and elongation at break of 1500 MPa and 3.2%, respectively, following carbonization at only 800 degrees C for 5 min. The aromatic components of NB were primarily condensed cyclic compounds containing three and four aromatic rings. In contrast, a pitch prepared by simple distillation (ND), was composed of compounds containing three to six aromatic rings, which carried the tensile strength of carbon fiber by only 700 MPa with the similar fiber diameter. Interestingly, TOF-Mass analysis indicated that the molecular weight of the NB was higher than that of the ND. C-13-NMR analyses revealed that the NB pitch contained up to 18.8% aliphatic and naphthenic components compared to the 2.8% found in the ND pitch. Both isotropic pitches exhibited Bingham behavior above their softening temperatures. However, the linear chains of the NB pitch resulted in a higher degree of shear-thinning than was observed with the nonlinear ND pitch. This could result in a greater degree of molecular orientation during spinning. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:747 / 755
页数:9
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