Composition for injection molding, sintered compact, and method for producing sintered compact
US-2015376397-A1 · Dec 31, 2015 · US
US2017275205A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017275205-A1 |
| Application number | US-201515513969-A |
| Country | US |
| Kind code | A1 |
| Filing date | Sep 8, 2015 |
| Priority date | Dec 2, 2014 |
| Publication date | Sep 28, 2017 |
| Grant date | — |
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The invention relates to a refractory product, a batch for producing the product, a method for producing the product, and a use of the refractory product.
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1 . A refractory product based on Al 2 O 3 , comprising at least one MAX phase. 2 . The product according to claim 1 , having a proportion of MAX phases of at least 0.5 mass %. 3 . The product according to claim 1 , having a proportion of Al 2 O 3 of at least 50 mass %. 4 . The product according to claim 1 , containing at least one of the following phases: metallic aluminium, metallic silicon, metallic titanium, metallic iron, or at least one alloy from at least two of these metals. 5 . The product according to claim 1 , containing at least one of the following phases: at least one carbide, at least one oxycarbide, at least one oxycarbonitride, or at least one SiCAlON. 6 . The product according to claim 1 , in which the structure is formed from a matrix of Al 2 O 3 , into which at least one MAX phase is incorporated. 7 . A batch for producing a refractory product based on Al 2 O 3 , comprising at least one MAX phase, wherein the batch has the following features: the batch comprises one or more components comprising aluminium, carbon, silicon or titanium; the proportions of aluminium, carbon, silicon and titanium in the batch, which are introduced into the batch by the components, lies in the following ranges, in each case in relation to the total mass of the batch: aluminium, calculated as Al 2 O 3 : 10 to 97 mass %; carbon: 1 to 30 mass %; silicon, calculated as SiO 2 : 1 to 20 mass %; titanium, calculated as TiO 2 : 1 to 50 mass %. 8 . The batch according to claim 7 , having an aluminium-comprising component in the form of at least one of the following components: sintered corundum, fused corundum, calcined alumina, tabular alumina, or bauxite. 9 . The batch according to claim 7 , having a carbon-comprising component in the form of at least one of the following components: graphite, anthracite, petroleum coke, or carbon black. 10 . The batch according to claim 7 , having a silicon-comprising component in the form of at least one of the following components: kaolin, fireclay, at least one refractory clay, at least one raw material comprising mullite, quartzite, quartz sand, or zirconium. 11 . The batch according to claim 7 , having a titanium-comprising component in the form of rutile. 12 . A method for producing a refractory product, the refractory product based on Al 2 O 3 , the refractory product comprising at least one MAX phase, the method comprising the following steps: providing a batch for producing the refractory product, wherein the batch has the following features: the batch comprises one or more components comprising aluminium, carbon, silicon or titanium; the proportions of aluminium, carbon, silicon and titanium in the batch, which are introduced into the batch by the components, lies in the following ranges, in each case in relation to the total mass of the batch: aluminium, calculated as Al 2 O 3 : 10 to 97 mass %; carbon: 1 to 30 mass %; silicon, calculated as SiO 2 : 1 to 20 mass %; and titanium, calculated as TiO 2 : 1 to 50 mass %; applying heat to the batch; and cooling the batch applied to heat. 13 - 14 . (canceled)
based on aluminium oxide · CPC title
containing non-oxide refractory materials, e.g. carbon (C04B35/106 takes precedence) · CPC title
open porosity · CPC title
Non-oxides with a defined oxygen content, e.g. SiOC, TiON · CPC title
Graphite · CPC title
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