New PDF release: Advances in Sintering Science and Technology: Ceramic

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 technology continuing  (CESP) series.  This sequence features a choice of papers facing matters in either conventional ceramics (i.e., glass, whitewares, refractories, and porcelain teeth) and complex ceramics. subject matters lined within the zone of complex ceramic contain bioceramics, nanomaterials, composites, reliable oxide gasoline cells, mechanical homes and structural layout, complicated ceramic coatings, ceramic armor, porous ceramics, and more.Content:

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In general, the precursors for metal nitrides already contain M-N bonds that are terminated into organic groups. A majority of these precursors are soluble in organic solvents enabling synthesis of powders. A major benefit of ceramic precursor processing is that the nano-particles of metal nitrides can be easily synthesized. These nano-particles can then be converted to particles of various sizes under carefully controlled thermal conditions. These powders have been blended to form bimodal distribution.

Figure 1: Size distribution of ZrN particles/agglomerates that formed during treatment at 1130'C for 45 minutes in vacuum. 457756 nm from JCPDS 35-0753). This is a general approach and can be extended to synthesis of other nitrides. EDS spectra of the particles does not show Si or Cl impurities and particles are stable to oxidation under ambient conditions. There are no known ceramic precursors for Dysprosium Nitride, DyN. It is prepared from traditional methods by heating a source of Dy and a source of nitrogen at very high temperatures.

A. E. J. T. Elizalde Instituto de Ingeniería y Tecnología. Universidad Autónoma de Ciudad Juárez. Av. , México 32310 A. García Interceramic Technological Center, Av. Carlos Pacheco No. , México 31060 A. Aguilar, M. Bocanegra, C. C. , México 31109 ABSTRACT Bentonite clays are frequently used in the formulation of structural ceramics at low concentration in spite of its chemical composition which is similar to kaolinite, the most used clay for this purpose. During the study of the sintering properties of natural bentonite clay, we found that the studied bentonite can be used as main component to formulate structural ceramic products where control of dimension is fundamental.

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


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