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High-Quality Chrome Corundum Bricks from China Suppliers | Durable Factory-Made Thermal Shock Resistant Solutions
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High-Quality Chrome Corundum Bricks from China Suppliers | Durable Factory-Made Thermal Shock Resistant Solutions

Chrome corundum bricks, renowned for their exceptional corrosion resistance, are crafted from a unique Al2O3/Cr2O3 solid crystal composition. These bricks exhibit remarkable thermal shock resistance and high-temperature stability, making them ideal for high-temperature industrial applications. Our products utilize top-quality raw materials such as fused corundum and Cr2O3 solid crystals, with optional additions of ZrO2 to enhance thermal shock capabilities. For general products or standard sizes, we employ semi-dry high-pressure molding techniques, while isostatic pressing molding is reserved for custom-shaped or special products. As a leading supplier and factory in China, we are committed to providing superior chrome corundum bricks to meet your industrial needs

    Composition and Classification

    Outstanding corrosion resistance from specialized Al2O3/Cr2O3 structure

    Chrome corundum bricks boast superior corrosion resistance due to their unique Al2O3/Cr2O3-solid crystal makeup. With an increase in Cr2O3 content, these bricks exhibit enhanced resistance to corrosion. Simultaneously, they offer notable wear resistance, exceptional thermal shock resilience, and a minimized creep rate.

    Top-choice for high-corrosion industries

    Chrome corundum bricks are a top-choice for industries requiring optimal corrosion resistance, as Cr2O3 is the most corrosion-resistant refractory oxide for molten glass applications, particularly beneficial for mineral wool glass, insulating glass, colored and special glasses, as well as ceramic frit glaze. Key components like over-coating tiles, regenerator chimney blocks, port necks, target walls, superstructures, doghouse corners, and discharging holes benefit greatly from these bricks.

    Chrome-Corundum Brick 1

    Application

    Chrome Corundum Bricks are highly valued in the glass industry for their exceptional performance in high-temperature environments and superior resistance to slag and molten glass corrosion. These bricks primarily consist of a solid solution of Al2O3 (alumina) and Cr2O3 (chromium oxide), providing robust structural integrity and longevity.

    High Corrosion Resistance

    Chrome Corundum Bricks exhibit outstanding resistance to the corrosive effects of molten glass and slag, significantly outperforming traditional refractory materials. The presence of Cr2O3 enhances their durability, making them ideal for critical areas in glass furnaces.

    Thermal Stability

    These bricks maintain excellent stability under high temperatures, which is crucial for preserving the structural integrity of glass furnaces during prolonged use.

    Application in Glass Furnaces

    Chrome Corundum Bricks are particularly effective in the high-stress areas of glass furnaces, such as the feed inlet, furnace bottom, throat, and regenerator checkers. Their use can extend the operational life of furnaces by providing enhanced resistance to wear and corrosion.

    Chrome Corundum Bricks Have Different Colors

    Chrome Corundum Bricks are renowned for their high temperature resistance and excellent slag corrosion resistance, particularly against molten cinders, outperforming low silicon corundum bricks. These bricks typically contain Cr2O3, with their primary mineral composition being an Al2O3-Cr2O3 solid solution.

    Initially, Chrome Corundum Bricks appear green due to the presence of chrome green in the corundum. However, after undergoing high-temperature sintering, their appearance changes to red or sometimes even purple-red due to the reaction with CO.

    The color of Chrome Corundum Bricks depends on the percentage of chromium oxide (Cr2O3) present:

    • 3% Chromium Oxide: Light red color
    • 8% Chromium Oxide: Purplish-red color
    • More than 20% Chromium Oxide: Black and red color

    The higher the percentage of chromium oxide, the darker the color of the brick.

    • Chrome-Corundum Brick 2
    • Chrome-Corundum Brick

    Physical & Chemical Index

    Items Parameters
    30C 30 30L 55C 55 94BZ 94A
    Chemical Composition Cr2O3 (%) ≥29 ≥29 >28 ≥53 ≥53 ≥93 ≥93
    Al2O3 (%) ≥59 ≥59 >60 ≥36 ≥36 - -
    ZrO2 (%) ≥2.0 ≥2.0 >3 ≥2.0 ≥2.0 - -
    SiO2 (%) - - - - - - -
    TiO2 (%) - - - - - 3~4 3~4
    Bulk Density (Kg/dm³) ≥3.4 ≥3.5 ≥3.5 ≥3.6 ≥3.7 ≥4.1 ≥4.33
    Apparent Porosity (%) ≤19 ≤18 ≤17 ≤19 ≤18 ≤20 ≤15
    Cold Crushing Strength (Mpa) ≥80 ≥100 ≥100 ≥80 ≥100 ≥100 ≥200

    Frequently Asked Questions (FAQ)

    What are Chrome Corundum Bricks made of?
    Chrome Corundum Bricks primarily consist of a solid solution of Alumina (Al2O3) and Chromium Oxide (Cr2O3). This specialized structure provides the bricks with high structural integrity and outstanding corrosion resistance.
    Why do Chrome Corundum Bricks have different colors?
    Their color changes due to the percentage of chromium oxide (Cr2O3) and high-temperature sintering. They initially appear green, but turn light red (with 3% Cr2O3), purplish-red (with 8% Cr2O3), or black and red (with more than 20% Cr2O3) after sintering.
    Where are these bricks commonly applied in glass furnaces?
    They are highly effective in high-stress areas of glass furnaces, including the feed inlet, furnace bottom, throat, regenerator checkers, over-coating tiles, port necks, and discharging holes.
    What makes Chrome Corundum Bricks superior to traditional refractories?
    They offer exceptional resistance to molten glass and slag corrosion, outstanding thermal stability under high temperatures, notable wear resistance, and a minimized creep rate compared to traditional refractory materials.
    How does the Cr2O3 content affect the brick performance?
    As the Cr2O3 content increases, the bricks exhibit significantly enhanced resistance to corrosion. Higher Cr2O3 content also correlates with a darker color, ranging from light red to deep black-red, and changes the physical and chemical indices such as bulk density.