By Deborah D.L. Chung
In Carbon Fiber Composites, the reader is brought to quite a lot of carbon fiber composites, together with polymer-matrix, steel matrix, carbon-matrix, ceramic-matrix and hybrid composites. the topic is tested in an educational type, in order that no past wisdom of the sector is needed. unlike different books on composites, this booklet emphasizes fabrics instead of mechanics, because the prominence of composite fabrics has resulted from their elevated presence in purposes except constitution. presents up to date info at the whole spectrum of carbon fiber composites. Emphasizes processing because the beginning of composite fabrics improvement. Addresses the processing, homes and purposes of every form of materialsystematically.
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Additional resources for Carbon Fiber Composites
The treatment and disposal cost for the hydrogen cyanide by-product increases the production cost of PAN-based carbon fibers. The rate of heating in the early stages of carbonization is low (less than 5"C/min. up to about 600°C) so that the release of volatiles is slow and does not cause pores or surface irregularities in the fiber. %). At 1 OOCL 1 500"C, the residual nitrogen is progressively removed [4,29]. The overall residence time for carbonization is of the order of an hour, with residence at temperatures above 1 O00"C of the order of minutes .
23,598 (1988). J. Johnson, Chemistry and Industry 18, 692-698 (1982). W. Johnson, in Strong Fibres, edited by W. V. Perov, North-Holland, Amsterdam, 1985, pp. 3894l3. C. D. thesis, University of k e d s , 1976. K. K. Paliwal, and P. Bajaj, J. Macromol. , Rev. Macromol. Chem. Phys. C31(1), 1-89 (1991). P. Marshall and J. Price, Composites 22(5), 388-393 (1991). K. M. Phillips, in Proc. Int. SAMPE Symp. , 35, Advanced Materials: Challenge Next Decade, edited by G. Janicki, V. Bailey, and H. Schjelderup, 1990, pp.
Com to remove this watermark. Processing of Carbon Fibers 53 46. K. L. A. K. J. Huttinger, Kluwer Academic, Dordrecht, 1990, pp. 405-439. 47. G. L. A. K. J. Huttinger, Kluwer Academic, Dordrecht, 1990, pp. 525-540. 48. A. L. A. K. J. Huttinger, Kluwer Academic, Dordrecht, 1990, pp. 459-505. 49. S. Motojima, M. Kawaguchi, K. Nozaki and H. Iwanaga, Carbon 29(3), 379-385 (1991); Appl. Phys. Lett. 56(4), 321-323 (1990). 50. M. Ishioka, T. Okada, and K. Matsubara, Carbon 31(1), 123-127 (1993). 51. G.