Read e-book online Advances in Sintering Science and Technology: Ceramic PDF

By E. A. Olevsky, Rajendra Bordia

ISBN-10: 0470408499

ISBN-13: 9780470408490

ISBN-10: 0470599731

ISBN-13: 9780470599730

This quantity is a part of the Ceramic Engineering and technological know-how continuing  (CESP) series.  This sequence includes a choice of papers facing matters in either conventional ceramics (i.e., glass, whitewares, refractories, and porcelain tooth) and complex ceramics. subject matters coated within the zone of complicated ceramic contain bioceramics, nanomaterials, composites, sturdy oxide gasoline cells, mechanical homes and structural layout, complicated ceramic coatings, ceramic armor, porous ceramics, and more.Content:

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Other studies have mentioned that a thermal gradient can induce mass transport which lead to a demixing in multi-component oxides12'13. The present study deals with the quantification of the effect induced by the existence of a thermal gradient applied during the initial stage of sintering on submicronics aluminas with different purities. 41 Modification of Mass Transport during Sintering Induced by Thermal Gradient MATERIALS STUDIED AND EXPERIMENTAL METHODS Powder formulation and processing The powder used in this study is a submicronic a-alumina powder (named UF powder) generated by ex-alun process.

SEM images of crack propagation paths in the composites fabricated with and without carbon additions. The scatter of mechanical properties of the reaction bonded boron carbide composites is of relevance. 67 for type-A and for type-B composites, respectively (Fig. 12). 5- > *. 2 1η(σ) Figure 12. Weibull plots of flexural strength of the type-A and type-B composites. SUMMARY AND CONCLUSIONS Reaction bonded boron carbide composites, fabricated with and without free carbon additions, consist of four phases: the original boron carbide particles, the ternary Bi2(B,C,Si)3 compound, ß-SiC and residual silicon.

Jung, Microwave process for sintering of uranium dioxide, J. Nucl. , 325 (2-3), 210-216 (2004). R. Groza, Consolidation of atomizaed NiAl powders by plasma activated sintering process, Scr. , 30, 47-52 (1994). 4 Y. Zhou, K. Hirao, Y. Yamauchi and S. Kanzaki, Densification and grain growth in pulse electric current sintering of alumina, J Eur. Ceram. Soc, 24 (12), 3465-3470 (2004). 5 B. Klotz, K. Cho, RJ. D. Jr. Sisson, Boron carbide consolidated by the plasma pressure compact (P2C) Method in air, CESP, 22, 4 (2001).

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Advances in Sintering Science and Technology: Ceramic Transactions by E. A. Olevsky, Rajendra Bordia

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