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Perovskite-type glass-ceramics

Oxide ratio, 18 815 Oxides, 16 598 acidic, 22 190-191 bond strengths and coordination numbers of, 22 570t diorganotin, 24 819 glass electrodes and, 14 28 gold, 22 707 iron, 14 541-542 lead, 14 786-788 manganese, 15 581-592 nickel, 27 106-108 niobium, 27 151 plutonium, 29 688-689 in perovskite-type electronic ceramics, 14 102... [Pg.662]

Recent applications of e-beam and HF-plasma SNMS have been published in the following areas aerosol particles [3.77], X-ray mirrors [3.78, 3.79], ceramics and hard coatings [3.80-3.84], glasses [3.85], interface reactions [3.86], ion implantations [3.87], molecular beam epitaxy (MBE) layers [3.88], multilayer systems [3.89], ohmic contacts [3.90], organic additives [3.91], perovskite-type and superconducting layers [3.92], steel [3.93, 3.94], surface deposition [3.95], sub-surface diffusion [3.96], sensors [3.97-3.99], soil [3.100], and thermal barrier coatings [3.101]. [Pg.131]

Cd2Nb207) crystals transform themselves into the main crystal phase of the perovskite-type when the temperature of the heat treatment of the glass-ceramic increases. Therefore, the main characteristics of the glass-ceramics at 1050 C are similar to those of the Si02-Al203-Ti02-Pb0 system. [Pg.187]


See other pages where Perovskite-type glass-ceramics is mentioned: [Pg.83]    [Pg.105]    [Pg.186]    [Pg.188]    [Pg.189]    [Pg.221]    [Pg.285]    [Pg.302]    [Pg.468]    [Pg.405]   
See also in sourсe #XX -- [ Pg.183 , Pg.184 , Pg.185 , Pg.186 ]




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Ceramic perovskites

Ceramics types

Glasses glass ceramics

Perovskite type

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