Wear-resistant anti-erosion castable
A castable and anti-corrosion technology, which is applied in the field of refractory materials, can solve the problems of hidden dangers in molten salt furnace production safety, poor fluidity of castables, and low bonding strength, etc., to achieve improved oxidation resistance, continuous and reliable construction performance, and improved Effect of Thermal Shock Resistance
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2017-01-04
- Estimated Expiration
- Not applicable · inactive patent
Smart Images

Figure 1
Abstract
Description
technical field
[0001] The invention belongs to the technical field of refractory materials, and in particular relates to a wear-resistant and anti-erosion castable. Background technique
[0002] The characteristics of high alumina, high silicon, poor grindability and difficult dissolution in my country's durasite-type bauxite have brought great troubles to the alumina production process. For now, the pipeline dissolution method has gradually become a The development trend, and the molten salt furnace is the most critical heating equipment in the pipeline dissolution system.
[0003] At present, the hearth of the molten salt furnace in an alumina plant is usually integrally cast with high-alumina refractory castables, which makes the structure of the furnace lining very loose or even cracked. In the process of use, the strong erosion of high-temperature flue gas and coal ash, and the fluctuation of furnace temperature will cause serious erosion of the furnace lining and caus...
Examples
Embodiment 1
[0067] Example 1, 50 parts of 12-5mm chrome corundum, 10 parts of 5-3mm silicon carbide, 5 parts of 3-1mm calcium hexaaluminate, 4 parts of 1-0mm andalusite, 1 part of 200 mesh Yongji clay, 325 mesh chrome corundum powder 10 parts, 5 parts of 325 mesh cutting powder, 5 parts of zinc silicate zirconium powder, 3 parts of 800 mesh andalusite powder, 1 part of 1000 mesh iron zinc spinel powder, 3 parts of 1000 mesh zinc oxide powder, 3 parts of CA60 cement, Additive REFPAC ® 100 1 part, plus fluidity improving additive Peramin ® 0.1 part of AL 200, plus 0.1 part of nanocellulose.
Embodiment 2
[0068] Example 2, 50 parts of 12-5mm chrome corundum, 7 parts of 5-3mm silicon carbide, 5 parts of 3-1mm calcium hexaaluminate, 3 parts of 1-0mm andalusite, 1 part of 200 mesh Yongji clay, 325 mesh chromium corundum powder 8 parts, 325 mesh cutting powder 6 parts, zinc silicate zirconium powder 5 parts, 800 mesh andalusite powder 3 parts, 1000 mesh iron zinc spinel powder 1 part, 1000 mesh zinc oxide powder 5 parts, CA60 cement 6 parts, Additive REFPAC ® 100 1 part, plus fluidity improving additive Peramin ® 0.1 part of AL 200, plus 0.1 part of nanocellulose.
Embodiment 3
[0069] Example 3, 55 parts of 12-5mm chrome corundum, 8 parts of 5-3mm silicon carbide, 5 parts of 3-1mm calcium hexaaluminate, 3 parts of 1-0mm andalusite, 2 parts of 200 mesh Yongji clay, 325 mesh chrome corundum powder 9 parts, 3 parts of 325 mesh cutting powder, 3 parts of zinc silicate zirconium powder, 4 parts of 800 mesh andalusite powder, 1 part of 1000 mesh iron-zinc spinel powder, 3 parts of 1000 mesh zinc oxide powder, 4 parts of CA60 cement, Additive REFPAC ® 100 1 part, plus fluidity improving additive Peramin ® 0.1 part of AL 200, plus 0.1 part of nanocellulose.