Ladle working lining brick and preparation method thereof
A working lining and ladle technology, applied in metal processing equipment, manufacturing tools, casting equipment, etc., can solve the problems of accelerated erosion, inability to take into account the oxidation resistance of materials, anti-stripping performance and anti-corrosion performance, etc., to achieve low production costs , easy industrial production, simple production process
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Embodiment 1
[0040] A ladle working lining brick and a preparation method thereof. The preparation method described in this embodiment is:
[0041] The first step, 40~50wt% of high alumina bauxite particles, 30~40wt% of sintered magnesia particles, 0.1~1wt% of organic additives and 13~20wt% of absolute ethanol are placed in a blender, and 300 Stir at ~600 rpm for 2~5 hours, dry at 80~100°C for 12~17 hours, and sieve to obtain pretreated particles with a particle size of 1~5mm.
[0042] In the second step, 20~30wt% flake graphite, 30~40wt% silicon carbide fine powder, 10~15wt% antioxidant, 10~15wt% high alumina fine powder and 5~10wt% surface active The agent is placed in a mixer and stirred at a speed of 200-400 rpm for 2-5 hours to obtain the pretreated powder.
[0043]The third step, mix 30~40wt% of the pretreatment particles, 40~50wt% of the pretreatment powder, 10~15wt% corundum particles and 3~5wt% thermosetting phenolic resin, and mix them at 150~180MPa Under the condition of pres...
Embodiment 2
[0047] A ladle working lining brick and a preparation method thereof. The preparation method described in this embodiment is:
[0048] The first step, 50~60wt% of high alumina bauxite particles, 20~30wt% of sintered magnesia particles, 1~2wt% of organic additives and 13~20wt% of absolute ethanol are placed in a blender, and 300 Stir at a speed of ~600 rpm for 4~6 hours, dry at 90~110°C for 16~20 hours, and sieve to obtain pretreated particles with a particle size of 1~5mm.
[0049] In the second step, 30~40wt% flake graphite, 20~30wt% silicon carbide fine powder, 15~20wt% antioxidant, 10~15wt% high alumina fine powder and 2~5wt% surface active The agent is placed in a mixer, and stirred at a speed of 200-400 rpm for 4-6 hours to obtain a pretreated powder.
[0050] The third step is to mix 40~50wt% of the pretreatment particles, 30~40wt% of the pretreatment powder, 15~20wt% corundum particles and 3~5wt% thermosetting phenolic resin, and mix them at 170~200MPa Under the cond...
Embodiment 3
[0054] A ladle working lining brick and a preparation method thereof. The preparation method described in this embodiment is:
[0055] The first step, 50~60wt% of high alumina bauxite particles, 28~38wt% of sintered magnesia particles, 0.1~1wt% of organic additives and 5~12wt% of absolute ethanol are placed in the mixer, with 300 Stir at ~600 rpm for 2~5 hours, dry at 80~100°C for 20~24 hours, and sieve to obtain pretreated particles with a particle size of 1~5mm.
[0056] In the second step, 25~35wt% flake graphite, 25~35wt% silicon carbide fine powder, 12~18wt% antioxidant, 15~20wt% high alumina fine powder and 3~8wt% surface active The agent is placed in a mixer and stirred at a speed of 200-400 rpm for 2-5 hours to obtain the pretreated powder.
[0057] The third step, mix 35~45wt% of the pretreatment particles, 35~45wt% of the pretreatment powder, 12~18wt% corundum particles and 3~5wt% thermosetting phenolic resin, and mix them at 150~180MPa Under the condition of pres...
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