Preparation method for special casting material of ferronickel rotary kiln discharge opening
The technology of a nickel-iron rotary kiln and a production method is applied in the field of the production of special castables for the discharge port of the nickel-iron rotary kiln, and can solve the problems of corrosion resistance, thermal shock resistance and poor strength at medium temperature, and the service life of the refractory material of the nickel-iron rotary kiln. short, increase the cost of ferronickel smelting, etc., to achieve the effects of excellent thermal shock resistance, improved anti-bonding slag performance, and improved anti-erosion performance
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Embodiment 1
[0031] The special casting material for the discharge port of nickel-iron rotary kiln according to the present invention is composed of 70% of corundum aggregate with a particle size of 1~8mm, 10% of fused mullite fine powder with a particle size of ≥180 mesh, and fine alumina powder with a particle size of >300 mesh. 5%; 5% silica powder with particle size > 300 mesh; 5% pure calcium aluminate cement; 5% calcium zirconate.
Embodiment 2
[0033] The special casting material for the discharge port of nickel-iron rotary kiln according to the present invention is composed of 60% of bauxite aggregate with particle size of 1~8mm, 10% of corundum aggregate with particle size of 1~8mm; 10% fine powder of limestone; 7% alumina micropowder with particle size >300 mesh; 5% silica micropowder with particle size >300 mesh; 3% pure calcium aluminate cement; 5% zircon.
Embodiment 3
[0035] The special casting material for the discharge port of nickel-iron rotary kiln according to the present invention is composed of 30% of bauxite aggregate with a particle size of 1~8mm, 42% of corundum aggregate with a particle size of 1~8mm; 8% lime powder; 3% alumina fine powder with particle size > 300 mesh; 7% silica powder with particle size > 300 mesh; 5% pure calcium aluminate cement; 3% calcium zirconate and 2% zircon.
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