• Ladle slide—magnesia-carbon, aluminum-magnesia spinel carbonaceous
Ladle slide—magnesia-carbon, aluminum-magnesia spinel carbonaceous
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Ladle slide—magnesia-carbon, aluminum-magnesia spinel carbonaceous

Magnesia-carbon and magnesia-spinel slide plates are made from raw materials such as sintered corundum, high-purity magnesia sand, and magnesia-alumina spinel. They are enhanced with fine and ultrafine metal powders to improve their high-temperature performance. These slide plates are bonded using a new type of resin, formed under high pressure, and then subjected to low-temperature drying. They boast advantages including high strength, excellent resistance to high temperatures and corrosion, and superior thermal stability.

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  • Description
  •   Magnesia-carbon and magnesia-spinel slide plates are made from raw materials including sintered corundum, high-purity magnesia sand, and magnesia-alumina spinel. Metal micro- and fine powders are added to enhance the slide plates' high-temperature performance. These plates are bonded with a new type of resin, formed under high pressure, and then subjected to low-temperature drying. They boast advantages such as high strength, excellent resistance to high temperatures and corrosion, and superior thermal stability.

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    Magnesia-carbon MgO-C

     

    Magnesia-spinel carbonaceous

    MT-70

    MT-80

    LMT-60

    LMT-70

    AL203%≥

    --

    --

    60

    65

    C%≥

    6

    6

    6

    6

    ZrO2% ≥

    --

    --

    --

    --

    MgO %≥

    70

    85

    30

    30

    Pore rate (%) ≤

    10

    8

    10

    8

    Room-temperature compressive strength, MPa ≥

    80

    100

    100

    130

    Volume density, g/cm³

    2.90

    2.95

    2.90

    2.95

Ladle slide—magnesia-carbon, aluminum-magnesia spinel carbonaceous

Magnesia-carbon and magnesia-spinel slide plates are made from raw materials such as sintered corundum, high-purity magnesia sand, and magnesia-alumina spinel. They are enhanced with fine and ultrafine metal powders to improve their high-temperature performance. These slide plates are bonded using a new type of resin, formed under high pressure, and then subjected to low-temperature drying. They boast advantages including high strength, excellent resistance to high temperatures and corrosion, and superior thermal stability.

Still deciding? Get a sample first!Contact us!

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