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High-Quality Fused Cast α-Alumina Block (RTK-A) from China Suppliers & Factory for Metallurgy Applications

RTK-A is a premium product manufactured by leading suppliers in China, composed of nearly 100% alpha-alumina. This material is renowned for its exceptional temperature resistance, robust alkali resistance, and compact structure, making it an ideal choice for high-demand applications. With excellent chemical stability and superior wear resistance, RTK-A outperforms other aluminum silicate products in corrosion resistance against various slags. This makes it the perfect solution for skid roll bricks used in metallurgy electrolyzers and heating furnaces. Thanks to the high-purity raw materials utilized in its production at our state-of-the-art factory, RTK-A features minimal impurities and virtually no matrix glass phase, ensuring low contamination performance when in contact with molten glass.

    Brief Introduction

    Fused and cast alumina products are alumina series fused and cast blocks made of high-purity alumina raw materials, which are melted in an electric arc furnace at a high temperature above 2000 °C. Due to the use of high-purity raw materials, less impurities and almost no matrix glass phase, it has excellent low contamination performance to the molten glass.

    The crystal phase structure of the fused alumina series is composed of α-alumina and β-alumina, which has different composition ratios. The products of different varieties have different properties and can meet different operating conditions. According to its crystal phase structure, it is divided into α-β corundum brick (RTK-M), β-corundum brick (RTK-H) and α-corundum brick (RTK A). Further classification shall be made according to the appearance quality specification level and casting method. These classifications can meet the different application requirements of fused cast corundum series in glass furnaces and metallurgical electrolyzers.

    RTK-A is composed of nearly 100% α-alumina, which has high temperature resistance, strong alkali resistance, compact structure, excellent chemical stability and strong wear resistance. Its corrosion resistance to various slags is far stronger than other aluminum silicate products, and it is an ideal material for the skid roll bricks of the metallurgy electrolyzer and heating furnace.

    Chemical composition

    RTK-A-2
    RTK-A-1

    CHEMICAL COMPOSITION

    TYPICAL VALUE

    Al₂O₃ % 98.0
    Na₂O % 1.0
    SiO₂ + CaO + Fe₂O₃ + TiO₂ % ≤ 1.0

    Physical property

    PHYSICAL PROPERTY

    TYPICAL VALUE

    Bulk density (dense part) g/cm³ 3.4
    Normal temperature compression resistance MPa 280
    Load softening start temperature (0.2 MPa) 1700

    CALCULATE SPECIFIC GRAVITY

    TYPICAL VALUE

    PT g/cm³ 3.1
    WS g/cm³ 3.3

    Frequently Asked Questions (FAQ)

    Q1: What raw materials are used to make fused and cast alumina products?
    A1: They are made of high-purity alumina raw materials, which are melted in an electric arc furnace at a high temperature above 2000 °C.
    Q2: How are fused alumina products classified based on their crystal phase structure?
    A2: They are composed of α-alumina and β-alumina, and classified into α-β corundum brick (RTK-M), β-corundum brick (RTK-H), and α-corundum brick (RTK A).
    Q3: What are the primary characteristics of RTK-A corundum brick?
    A3: RTK-A is composed of nearly 100% α-alumina, featuring high temperature resistance, strong alkali resistance, compact structure, excellent chemical stability, and strong wear resistance.
    Q4: What is the typical chemical composition of RTK-A?
    A4: RTK-A typically contains 98.0% Al₂O₃, 1.0% Na₂O, and ≤1.0% of SiO₂, CaO, Fe₂O₃, and TiO₂ combined.
    Q5: What are the main applications for RTK-A?
    A5: Due to its superior slag corrosion resistance, RTK-A is an ideal material for the skid roll bricks of metallurgy electrolyzers and heating furnaces.
    Q6: What are the key physical properties of these alumina products?
    A6: Typical values include a bulk density (dense part) of 3.4 g/cm³, normal temperature compression resistance of 280 MPa, and a load softening start temperature of 1700 °C (at 0.2 MPa).

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