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Gas pressure combustion sintering

Matsuzaki, Y., Fujioka, J., Minakata, S., and Miyamoto, Y, Fabrication of MoSi2-SiC/TlAl functional gradient materials by gas-pressure combustion sintering process. Proceedings of the 1st Int. Symposium on Functionally Gradient Materials, Tokyo, 263 (1990). [Pg.218]

Miyamoto, Y, Nakanishi, H., Tanaka, I., Okamoto, T and Yamada, O., Processing study for the functionally gradient material TiC-Ni by the gas-pressure combustion sintering. Proceedings of the First US-Japanese Workshop on Combustion Synthesis, Tokyo, Japan, 173 (1990b). [Pg.219]

Tanihata, K., Miyamoto, Y, Matsushita, K., Ma, X., Kawasaki, A., Watanabe, R., and Hirano, K., Fabrication of Ct3C2/Ni functionally gradient materials by gas-pressure combustion sintering. Proceedings of the 2nd. Int. Symp. on FGMs, San Francisco (1992). [Pg.224]

Xiangfeng, M., Tanihata, K., and Miyamoto, Y, Gas-pressure combustion sintering and properties of Cr3C2 ceramic and its composite with TiC. J. Ceram. Soc. Japan, 100,605 (1992). [Pg.225]

Klemm H, Tanihata K, Miyamoto Y, Gas pressure combustion sintering and hot isostatic pressing in the Ti-Si-C system , J Mater Sci, 1993 28 1557-1562. [Pg.286]

Fig. 15.5. Typical pressure drop and concentration-time curves of a diesel particulate trap in a closed gas-loop experiment with constant heating rate for the characterization of catalyst or filter performance for the combustion of diesel soot. Sintered SiC ceramic filter, without catalyst coating or fuel additive (from Ref. [46]). Fig. 15.5. Typical pressure drop and concentration-time curves of a diesel particulate trap in a closed gas-loop experiment with constant heating rate for the characterization of catalyst or filter performance for the combustion of diesel soot. Sintered SiC ceramic filter, without catalyst coating or fuel additive (from Ref. [46]).

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See also in sourсe #XX -- [ Pg.92 ]

See also in sourсe #XX -- [ Pg.92 ]




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