Patent classifications
C04B35/043
Castable refractory compositions comprising zeolithic microstructures and uses thereof
The present invention relates to a dry refractory particulate composition comprising a zeolithic microstructure, to a green body and to a refractory lining formed therefrom, and to uses thereof.
Castable refractory compositions comprising zeolithic microstructures and uses thereof
The present invention relates to a dry refractory particulate composition comprising a zeolithic microstructure, to a green body and to a refractory lining formed therefrom, and to uses thereof.
GRAPHITE-CONTAINING REFRACTORY AND METHOD OF PRODUCING GRAPHITE-CONTAINING REFRACTORY
A method of producing a graphite-containing refractory within which carbon fiber bundles are placed, the graphite constituting 1% to 80% by mass, the method including a bundling step of bundling carbon fibers to form the carbon fiber bundles; a mixing step of mixing a refractory raw material with graphite to prepare a graphite-containing refractory raw material; a pressing step of pressing the graphite-containing refractory raw material in which the carbon fiber bundles are placed to prepare a formed product; and a drying step of drying the pressed product, wherein the bundling step includes bundling 1000 to 300000 of the carbon fibers with a fiber diameter of 1 to 45 μm/fiber to form carbon fiber bundles 100 mm or more in length.
REFRACTORY PRODUCT, A BATCH FOR PRODUCING THE PRODUCT, A METHOD FOR THE PRODUCTION OF THE PRODUCT AND A USE OF THE PRODUCT
The invention relates to a refractory product, a batch composition for producing said product, a method for producing the product and the use of the refractory product.
REFRACTORY PRODUCT, A BATCH FOR PRODUCING THE PRODUCT, A METHOD FOR THE PRODUCTION OF THE PRODUCT AND A USE OF THE PRODUCT
The invention relates to a refractory product, a batch composition for producing said product, a method for producing the product and the use of the refractory product.
GRAINS FOR THE PRODUCTION OF A SINTERED REFRACTORY PRODUCT, A BATCH FOR THE PRODUCTION OF A SINTERED REFRACTORY PRODUCT, A PROCESS FOR THE PRODUCTION OF A SINTERED REFRACTORY PRODUCT AND A SINTERED REFRACTORY PRODUCT
Grains for the production of a sintered refractory product, a batch for the production of a sintered refractory product, a process for the production of a sintered refractory product and a sintered refractory product
CERAMIC PARTICLE AND METHOD FOR PRODUCING THE SAME
A ceramic particle includes a core and a modification layer. The core is made of magnesium or a magnesium alloy. The core has a diameter of 30-100 μm. The modification layer covers an outer surface of the core. The modification layer includes calcium and phosphorus. A method for producing a ceramic particle includes providing a core made of magnesium or a magnesium alloy and having a diameter of 30-100 μm. A calcium salt and a phosphorus salt are dissolved in a solvent. A chelating agent is added into the solvent to form a modifying solution. The core is added into the modifying solution to form a modification layer on an outer surface of the core in a temperature range of 5-40° C. The modification layer includes calcium and phosphorus.
CERAMIC PARTICLE AND METHOD FOR PRODUCING THE SAME
A ceramic particle includes a core and a modification layer. The core is made of magnesium or a magnesium alloy. The core has a diameter of 30-100 μm. The modification layer covers an outer surface of the core. The modification layer includes calcium and phosphorus. A method for producing a ceramic particle includes providing a core made of magnesium or a magnesium alloy and having a diameter of 30-100 μm. A calcium salt and a phosphorus salt are dissolved in a solvent. A chelating agent is added into the solvent to form a modifying solution. The core is added into the modifying solution to form a modification layer on an outer surface of the core in a temperature range of 5-40° C. The modification layer includes calcium and phosphorus.
A batch for producing a refractory carbon-bonded brick, a method for producing a refractory carbon-bonded brick and a use of Ti2AlC
The invention relates to a batch composition for producing a carbon-bonded refractory stone, a method for producing a carbon-bonded refractory stone, and use of Ti.sub.2AlC.
MANUFACTURING METHOD OF MAGNESIUM-ALUMINIUM SPINEL BRICK AND MAGNESIUM-ALUMINIUM SPINEL BRICK MANUFACTURED BY THE METHOD
A manufacturing method of a low heat-conducting magnesium-aluminium spinel brick includes: (1) evenly mixing sintered magnesia, fused magnesia, magnesium-aluminium spinel and corundum to prepare flame retardant coating raw material mixed powder, adding naphthalene binder to the flame retardant coating raw material mixed powder to prepare the flame retardant coating raw materials after evenly mixing; (2) evenly mixing forsterite, fayalite and magnesia, adding the naphthalene binder to the mixed powder, moulding, drying, and then burning to obtain aggregate composite hortonolite raw materials; adding the naphthalene binder to the aggregate composite hortonolite having granularity 5 mm to prepare the thermal insulating layer raw materials after evenly mixing; (3) spacing and loading the flame retardant coating raw materials and the thermal insulating layer raw materials in a mold, pressing into green bricks, keeping the green bricks at a temperature of 110 C. for 24 hours, drying, and burning into magnesium-aluminium spinel bricks.