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Whisker-reinforced ceramics

Hsueh, C.H., Becher, P.F. and Angelini, P. (1988). Effects of interfacial films on thermal stresses in whisker-reinforced ceramics. J. Am. Ceram. Soc. 71, 929-933. [Pg.322]

Whisker-reinforced ceramic composites have come into prominence for structural applications because of their potential for high strength and fracture toughness which can be retained at elevated temperatures. Originally applied... [Pg.58]

G. C. Wei (U.S. Dept, of Energy), Silicon Carbide Whisker Reinforced Ceramic Composites and Method for Making Same, U.S. Patent 4,543,345, September 24, 1985. [Pg.87]

T. N. Tiegs and P. F. Becher, Whisker Reinforced Ceramic Composites, in Tailoring Multiphase and Composite Ceramics, eds. R. E. Tressler, G. L. Messing, C. G. Pontano, and R. E. Newnham, Materials Science Research Series, Plenum Press, New York, NY, 1986, pp. 639-647. [Pg.87]

D. A. Koester, R. D. Nixon, S. Chevacharoenkul, and R. R. Davis, High Temperature Creep of SiC Whisker-Reinforced Ceramics, in Proceedings of the International Conference on Whisker- and Fiber-Toughened Ceramics, eds. R. A. Bradley, D. E. Clark, D. C. Larsen, and J. O. Stiegler, ASM International, Metals Park, OH, 1988, pp. 139-145. [Pg.156]

When compared to monolithic and whisker-reinforced ceramics, the fatigue behavior of fiber-reinforced ceramics exhibits several unique features. For example, the fatigue failure of monolithic ceramics generally occurs by the... [Pg.189]

Experimental studies of the influence of stress ratio on elevated temperature fatigue life have been conducted by Suresh71 for whisker-reinforced AI2O3 (see Chapter 7 by Suresh for a discussion of the fatigue behavior of whisker-reinforced ceramics). In this section, the influence of stress ratio on the fatigue life of continuous fiber-reinforced ceramic matrix composites is discussed. [Pg.226]

High Temperature Crack Growth in Unreinforced and Whisker-Reinforced Ceramics under Cyclic Loads... [Pg.227]

J. R. Porter, Dispersion Processing of Creep-Resistant Whisker-Reinforced Ceramic-Matrix Composites, Mater. Sci. Eng., A107[l-2], 127-131 (1988). [Pg.261]

Fig. 11.1 Examples of transversely isotropic whisker-reinforced ceramic composites. Fig. 11.1 Examples of transversely isotropic whisker-reinforced ceramic composites.
Insertion of Eqn. (19) into Eqn. (4) along with Eqn. (20) through Eqn. (23) yields a noninteractive reliability model for a three-dimensional state of stress in a transversely isotropic whisker-reinforced ceramic composite. The noninteractive representation of reliability for orthotropic ceramic composites would follow a similar development. The analytical details for this can be found in Duffy and Manderscheid.20... [Pg.376]


See other pages where Whisker-reinforced ceramics is mentioned: [Pg.215]    [Pg.46]    [Pg.57]    [Pg.41]    [Pg.42]    [Pg.46]    [Pg.94]    [Pg.25]    [Pg.215]    [Pg.58]    [Pg.69]    [Pg.86]    [Pg.87]    [Pg.128]    [Pg.153]    [Pg.249]    [Pg.259]    [Pg.334]    [Pg.382]   
See also in sourсe #XX -- [ Pg.150 ]




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