Graphite-containing refractory and method of producing graphite-containing refractory
US-2019368815-A1 · Dec 5, 2019 · US
US2017305795A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017305795-A1 |
| Application number | US-201515511473-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 29, 2015 |
| Priority date | Oct 1, 2014 |
| Publication date | Oct 26, 2017 |
| Grant date | — |
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The invention concerns a batch for the production of a refractory magnesia-carbon product or a refractory alumina-magnesia-carbon product, a process for the production of a refractory magnesia-carbon product or a refractory alumina-magnesia-carbon product, a refractory magnesia-carbon product or a refractory alumina-magnesia-carbon product as well as the use of a magnesia-carbon product or a refractory alumina-magnesia-carbon product.
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1 . A batch for the production of a refractory carbon-bonded product, comprising the following components in the following proportions by weight, respectively with respect to the total weight of the product: 70% to 97% by weight of a base component; 1.0% to 2.3% by weight of a binder component in the form of at least one resol; 1.5 to 3% by weight of a binder component in the form of at least one pitch; 1.0% to 28% by weight of a carbon component in the form of at least one of the following carbon sources: graphite or carbon black. 2 . The batch as claimed in claim 1 , having a binder component in the form of at least one pitch in the form of coaltar pitch. 3 . The batch as claimed in claim 1 , having a base component formed by a magnesia component or an alumina-magnesia component. 4 . The batch as claimed in claim 3 , having a magnesia component in the form of at least one of the following MgO-based raw materials: fused magnesia or sintered magnesia. 5 . The batch as claimed in claim 3 , having an alumina-magnesia component in the form of at least one of the following MgO- or Al 2 O 3 -based raw materials: fused corundum, sintered corundum, bauxite, magnesia spinel, sintered magnesia or fused magnesia, wherein the raw materials comprise MgO as well as Al 2 O 3 . 6 . The batch as claimed in claim 1 , having a proportion of solid resin of less than 0.5% by weight. 7 . A process for the production of a refractory carbon-bonded product, comprising the following steps: providing a batch, the batch comprising the following components in the following proportions by weight, respectively with respect to the total weight of the product: 70% to 97% by weight of a base component; 1.0% to 2.3% by weight of a binder component in the form of at least one resol; 1.5 to 3% by weight of a binder component in the form of at least one pitch; 1.0% to 28% by weight of a carbon component in the form of at least one of the following carbon sources: graphite or carbon black; shaping the batch into a shaped article; tempering the shaped article; and applying heat to the tempered shaped article in a manner such that the carbon of the binder components as well as of the carbon component forms a carbon bond in order to produce a refractory carbon-bonded product. 8 . A refractory carbon-bonded product produced by a process, the process comprising: providing a batch, the batch comprising the following components in the following proportions by weight, respectively with respect to the total weight of the product: 70% to 97% by weight of a base component; 1.0% to 2.3% by weight of a binder component in the form of at least one resol; 1.5 to 3% by weight of a binder component in the form of at least one pitch; 1.0% to 28% by weight of a carbon component in the form of at least one of the following carbon sources: graphite or carbon black; shaping the batch into a shaped article; tempering the shaped article; and applying heat to the tempered shaped article in a manner such that the carbon of the binder components as well as of the carbon component forms a carbon bond in order to produce a refractory carbon-bonded product. 9 . (canceled)
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