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Characterization of Ceramics

Bulk Density/Poi volume PecMng/Homogeneity Pore lze/Di tribution Composition/Homogeneity Chemical Impurities [Pg.83]

Some of the important chemical and physical characteristics of a ceramic body during the consolidation stages of ceramic processing, and some of the pertinent characterization tools that can be used to assess process reproducibility and the consequences of consolidation are summarized in Tables 5.1 and 5-2. [Pg.83]


Voigt J A 1993 Powder and preoursor preparation by solution teohniques Characterization of Ceramics ed R E Loehman (Greenwioh, CT Butterworth-Fleinemann) pp 1-27... [Pg.2773]

Neff, H. (ed.) (1992), Chemical Characterization of Ceramic Pastes in Archaeology, Monographs in World Archaeology, Vol. 7, Prehistory Press, Madison, WI. [Pg.601]

Siriwardane, R.V., J.A. Poston, E.P Fisher, T.H. Lee, S.E. Dorris, and U. Balachandran, Characterization of ceramic-metal composite hydrogen separation membranes consisting of barium oxide, cerium oxide, yttrium oxide, and palladium, Appl. Surf. Sci., 217, 43-49, 2003. [Pg.322]

In the following sections, a cursory review of dynamic fracture mechanics will be given. Procedures for impact and dynamic fracture characterization of ceramics and ceramic composites will then be described, and the properties peculiar to ceramics and ceramic composites will be discussed. [Pg.92]

K.-H. Yang, A. S. Kobayashi, and A. F. Emery, Dynamic Fracture Characterization of Ceramic Matrix Composites, Journal de Physique, Colloque C3, Supplement au No. 9, C3-223-C3-230 (1988). [Pg.120]

Reed, I.S., Principles of Ceramic Processing, John Wiley Sons, New York, 1995. Hench, L.L., and Gould, R.W., Characterization of Ceramics, Marcel Decker, New York, 1971. [Pg.52]

Schwartz, R.W., Electronic and magnetic ceramics, in Characterization of Ceramics, R.E. Loehman, Ed., Butterworth-Heinemann, Boston, 1993, pp. 247-249. [Pg.556]

O. Ariga, M. Kimura, M. Taya, and T. Kobayashi, Kinetic evaluation and characterization of ceramic honeycomb-monolith bioreactor, J. Ferment. Technol. 64(4)321 (1986). [Pg.266]

A. Bottino, G. Capannelli, A. Grosso, O. Monticelli, O. Cavalleri, R. Rolandi and R. Soria, Surface characterization of ceramic membranes by atomic force microscopy. /. Membr. [Pg.112]

C.L. Lin, D.L. Flowers and P.K.T. Liu, Characterization of ceramic membranes. II. Modified commercial membranes with pore size imder 40 A. /. Membr. Sci., 92 (1994) 45. R.J.R. Ulhom, K. Keizer and A.J. Burggraff, Gas transport and separation with ceramic membranes. Part II. Synthesis and separation properties of microporous membranes. /. Membr. Sci., 66 (1992) 271. [Pg.257]

Persson, M., Hermansson, L.. and Carls son. R.. in Ceramic Powders, Vincenzini, P, ed., Elsevier, Amsterdam, 1983. p. 735, cited after Bergstrom, L., Surface chemical characterization of ceramic powders, Sutf. Sci. Ser., 51,71, 1994. [Pg.1008]

D.J., GARRETT R.F., Characterization of ceramic materials with BIGDIFF a synchrotron radiation Debye-Scherrer powder diffractometer , J. Am. Ceram. Soc., vol. 80, p. 1373-1381,1997. [Pg.337]

Bergstrom, L., Surface characterization of ceramic powders, in Surface and Colloid Chemistry in Advanced Ceramics Processing, R.J. Pugh and L. Bergstrom, Eds., Surface Science Series, 51, Marcel Dekker, New York, 1994. [Pg.510]

The first developments of this type of measurements were first introduced in 1974 by Keramidas et coll, and applied to the characterization of ceramic materials [47]. Later, this method was specifically applied to the characterization of oxygen storage materials for TWC and fully described by Bernal et al. [48]. Briefly, experiments consist in injecting 5%02/He pulses (0.25 ml) every 10 seconds into the inert gas flowing on the 200 mg sample (60 ml.min ). Gas composition is followed using a gas chromatograph equipped with a TCD detector. [Pg.256]

Ware, R. K, Characterization of Ceramics, L. L. Hench and R. W. Gould- sds-Marcel-Dekker, New York, 1971, Chap. 9. [Pg.553]


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Ceramic Characterization

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