Advances in SiC Fibers for High Temperature Applications

Author:

Ichikawa Hiroshi1

Affiliation:

1. Nippon Carbon Co., Ltd.

Abstract

The oxygen free SiC fiber (Hi-Nicalon) has been commercially produced by an electron beam curing process. And then the SiC fiber (Hi-Nicalon Type S) having stoichiometric SiC composition and high crystallinity has been developed. Hi-Nicalon fiber has higher elastic modulus and thermal stability than Nicalon fiber. The Type S fiber has the highest elastic modulus and thermal stability and excellent creep resistance in three types of Nicalon fibers. Recently,Type S fibers as industrial products have been developed and put on the market. The Type S fibers have a high tensile strength of 2.8 GPa, a high elastic modulus of 390 GPa. Against thermal exposure, Type S retains a tensile strength of 2.3 GPa and hardly changes its elastic modulus even at 1873K. Moreover, Type S has outstanding creep resistance. Type S shows higher stress relaxation ratio than many other ceramic fibers after thermal exposure over 1673K. Now, Hi-Nicalon Type S fiber/BN/SiC composites are being developed as the components of gas turbine for aerospace and land based power generation such as shrouds and combustors. Type Hi-Nicalon S can be supplied about 30 kg per a month at present.

Publisher

Trans Tech Publications Ltd

Reference9 articles.

1. T. Ishikawa and T. Nagaoki: Recent Carbon Technology (JEC Press Inc., Cleveland, OH, 1983), p.348.

2. ] gh ter. Chem., Vol. 4, (1987).

3. Temp. Ma.

4. K. Okamura, M. Sato, T. Seguchi and S. Kawanishi, Proc. 1 Japan Int. SAMPE Symp., (1989), p.929.

5. M. Takeda, Y. Imai, H. Ichikawa, T. Ishikawa, N. Kasai, T. Seguchi and K. Okamura, Ceram. Eng. Sci. Proc., Vol. 14[9-10], (1993) p.540.

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