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 incorporates a selection of papers facing matters in either conventional ceramics (i.e., glass, whitewares, refractories, and porcelain teeth) and complex ceramics. issues coated within the region of complex ceramic contain bioceramics, nanomaterials, composites, sturdy oxide gas cells, mechanical houses and structural layout, complicated ceramic coatings, ceramic armor, porous ceramics, and more.Content:

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Extra resources for Advances in Sintering Science and Technology: Ceramic Transactions

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SUMMARY AND INTERPRETATION OF RESULTS The experimental study highlights the effects of a thermal gradient applied in the initial stage of sintering. This gradient must be benefit to the further densification in the case of pure alumina. By delaying the necks formation, a temperature gradient applied in the initial stage of sintering can keep a high sintering potential and therefore lead to a better densification. Advances in Sintering Science and Technology · 47 Modification of Mass Transport during Sintering Induced by Thermal Gradient In other side, this gradient can also block the densification and increase the grain size.

This gradient must be benefit to the further densification in the case of pure alumina. By delaying the necks formation, a temperature gradient applied in the initial stage of sintering can keep a high sintering potential and therefore lead to a better densification. Advances in Sintering Science and Technology · 47 Modification of Mass Transport during Sintering Induced by Thermal Gradient In other side, this gradient can also block the densification and increase the grain size. This phenomena has been observed in the case of alumina which contains intergranular impurities.

Bordia and Eugene A. Olevsky Copyright ©2010 The American Ceramic Society HIGH DENSITY GREEN PELLETS OF ZRN FABRICATED BY PARTICLE PROCESSING Thomas T. Meek1, K. Gwathney2, Chaitanya K. R. ; Knoxville, TN 37996-2200 ABSTRACT Fabrication of nitride nuclear fuels has generally been not successful due to instability of nitrides loss of americium nitride during the high temperature sintering process, (private communication with K. McClellan of Los Alamos National Laboratory) under hot pressing or conventional 1 arm sintering conditions to make net shapes.

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


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