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ALUMINUM TITANATE COMPOSITIONS AND METHODS OF MAKING ALUMINUM TITANATE ARTICLES
A ceramic composition is disclosed comprising an inorganic batch composition comprising a magnesia source, a silica source, an alumina source, a titania source, and at least one rare earth oxide wherein the rare earth oxide comprises a particle size distribution (D90) of less than 5 μm and a median particle size (D50) of about 0.4 μm. A ceramic article comprising a first crystalline phase comprised predominantly of a solid solution of aluminum titanate and magnesium dititanate, a second crystalline phase comprising cordierite, a third crystalline phase comprising mullite, and a rare earth oxide, and a method of making same are disclosed.
ALUMINUM TITANATE COMPOSITIONS AND METHODS OF MAKING ALUMINUM TITANATE ARTICLES
A ceramic composition is disclosed comprising an inorganic batch composition comprising a magnesia source, a silica source, an alumina source, a titania source, and at least one rare earth oxide wherein the rare earth oxide comprises a particle size distribution (D90) of less than 5 μm and a median particle size (D50) of about 0.4 μm. A ceramic article comprising a first crystalline phase comprised predominantly of a solid solution of aluminum titanate and magnesium dititanate, a second crystalline phase comprising cordierite, a third crystalline phase comprising mullite, and a rare earth oxide, and a method of making same are disclosed.
ALUMINUM TITANATE COMPOSITIONS AND METHODS OF MAKING ALUMINUM TITANATE ARTICLES
ALUMINIUMTITANATZUSAMMENSETZUNGEN UND VERFAHREN ZUR HERSTELLUNG VON ALUMINIUMTITANATARTIKELN
COMPOSITIONS DE TITANATE D'ALUMINIUM ET PROCÉDÉS DE FABRICATION D'ARTICLES EN TITANATE D'ALUMINIUM
BACKHAUS-RICOULT MONIKA (author) / TEPESCH PATRICK DAVID (author) / VILENO ELIZABETH MARIE (author)
2023-07-26
Patent
Electronic Resource
English
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