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Chin J Mater Res  2005, Vol. 19 Issue (1): 28-34    DOI:
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The curing reaction of phenolic fibers
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中国科学院山西煤炭化学研究所炭材料重点实验室
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;. The curing reaction of phenolic fibers. Chin J Mater Res, 2005, 19(1): 28-34.

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Abstract  Phenolic fibers were prepared by the cross--linking of heat-meltable spun filaments derived from the melt--spinning of a novolak resin in a combined solution of formaldehyde and hydrochloric acid. The physical and chemical changes of the fibers during curing reaction were investigated. The results show that formaldehyde with high concentration can increase both the content of the crosslinking agent and the swellability with the resin. Hydrochloric acid not only promotes the formation of $^{+}$CH$_{2}$OH as a catalyst, but also leads the polymer branching occurring. It is found that under the conditions of formaldehyde concentration of 18.5\%, hydrochloric acid concentration of 12\%, and the heating rate of 15.4℃/h, the highly homogeneous crosslinking fibers with the maximum tensile strength of the 260 MPa can be obtained, suggesting that the crosslinking rate in both the skin and the inner of the fibers and the curing time are well--matched in these conditions, and the carbon yield of the fibers at 800℃ was 63\%.
Key words:  organic polymer materials      phenolic fibers      crosslinking reaction      
Received:  11 March 2005     
ZTFLH:  TB324  
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1 Jong Kyoo Park, Donghwan Cho, Tae Jin Kang, Carbon, 42(4), 5(2004)
2 Donghwan Cho, Byung Il Yoon, Comp Sci Tech, 61(2), 271(2001)
3 Kelly R. Benak, Lourdes Dominguez, James Economy, Christian L. Mangun, Carbon, 40(13), 2323(2002)
4 Hsieh F, Beeson HD, Fire Mater, 21, 41(1997)
5 Tomomi Okuhashi, Yasuaki Watanable, Junji Shimizu, Yuji Umezu, Japan Pat, US Patent, C08g, 3808289,1974
6 A.P.Mouritz, Z.Mathys, C.P.Gardiner, Comp Part B: Eng, In Press
7 Cihat Tascioglu, Barry Goodell, Roberto Lopez-Anido, Michael Peterson, William Halteman Jody Jellison, International Biodeterioration & Biodegradation, 51(3), 157(2003)
8 Nakorn Worasuwannarak, Shin Hatori, Hiroyuki Nakagawa, Kouichi Miura, Carbon, 41(5), 933(2003)
9 R.Imamura, K.Matsui, J.Ozaki, A.Oya, Carbon, 36(7-8), 1243(1998)
10 C.L.Mangun, M.A.Daley, R.D.Braatz, J.Economy, Carbon, 36(1-2), 123(1998)
11 A.Oya, S.YoshidaJ, Alcaniz-MongeA, Linares-Solano, Carbon, 33(8), 1085(1995)
12 A.Oya, S.YoshidaY.Abe, T.Iizuka, N.Makiyam, Carbon, 31(1), 71(1993)
13 Ichiro Tanahashi, Akihiko Yoshida, Atsushi Nishino, Carbon, 29(7), 1033(1991)
14 J.Economy, R.A.Clark, America Pat, U S Paten, 3650102, 1968
15 Pauline J.de Bruyn, Linda M.Foo, Audrey S.C.Lim, Mark G.Looney, David H.Solomon, Tetrahedron, 53(40), 13915(1997)
16 Knopp A, Pilato LA, Phenolic Resins: Chemistry, Application and Performance-Future Direction (New York, Springer, 2000) p.25-67
17 Koichiro Ohtomo, Thuyoshi Nakamori, Japan Pat, U.S.Patent, 3996327, 1976
18 G.Camino, M.P.Luda, L.Costa, L.Trossarelli, Thermal Analysis Vol.Ⅱ (New York, Willey, 1982)p.1137
19 Wang Xiaodong, Zhang Qiang, Chem. J. Chinese Universities, 22, 669(2001) (汪晓东,张强,高等学校化学学报,22,669(2001))
20 C.Morterra, M.J.D.Low, Carbon, 23(5), 525(1985)
21 G.Socrates, Infrared Characteristic Group Frequencies (New York, Willey, 1980)p.67
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