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Chrome Magnesia Brick

6 products available

// Refractory Bricks1750°C

Chrome Magnesia Brick

Chrome magnesia refractory brick with excellent resistance to basic slag and high-temperature creep. Used in non-ferrous metal smelting furnaces.

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// Refractory Bricks1800°C

Direct Bonded Chrome Magnesia Brick MgO 70% Cr2O3 12%

Direct bonded chrome magnesia brick with MgO 70% and Cr2O3 12%, providing high-purity periclase-chromite bonding for exceptional corrosion resistance. Ideal for zinc fuming furnaces, lead blast furnaces, and secondary copper refining.

λ = 3.3 W/(m·K) at 600°C

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// Refractory Bricks1820°C

Fused Cast Chrome Magnesia Brick MgO 68% Cr2O3 16%

Fused cast chrome magnesia brick with MgO 68% and Cr2O3 16%, offering near-zero porosity and maximum corrosion resistance for the most aggressive environments. Used in special alloy furnaces, platinum smelting, and high-corrosion glass tanks.

λ = 3.8 W/(m·K) at 600°C

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// Refractory Bricks1780°C

High Chrome Magnesia Brick MgO 62% Cr2O3 16%

High chrome magnesia brick with MgO 62% and Cr2O3 16%, engineered for furnaces processing platinum group metals and precious alloys requiring maximum chemical inertness and resistance to reactive slags.

λ = 3.5 W/(m·K) at 600°C

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// Refractory Bricks1750°C

Periclase Chrome Brick MgO 75% Cr2O3 8%

Periclase chrome brick with MgO 75% and Cr2O3 8%, combining high periclase content with chromite for excellent volume stability and alkali resistance. Optimized for cement rotary kiln transition zones and lime kiln burning zones.

λ = 3.0 W/(m·K) at 600°C

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// Refractory Bricks1800°C

Rebonded Magnesia Chrome Brick

Rebonded fused magnesia chrome brick for severe service conditions. Superior slag resistance and thermal shock resistance vs standard chrome-magnesia.

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