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    M.A.T.

    Introducing M.A.T. (Multilayer Additive Technology), an innovative solution for 3D printing metals a

    M.A.T.

    Introducing M.A.T. (Multilayer Additive Technology), an innovative solution for 3D printing metals and technical ceramics in a very simple, fast, and cost-effective way.
    Print functional metal and ceramic parts in:

     

    Metals:

    Stainless Steel | Titanium | Copper

     

    Ceramics:

    Aluminum Oxide | Zirconia | Silicon Carbide

     

    M.A.T. uses a high-performance extrusion system specifically designed for metals and ceramics, as well as two additional processes – CNC machining and Robocasting – to create complex geometries in materials such as Stainless Steel, Titanium, Alumina, Silicon Carbide, and More. By achieving an optimal balance between precision and speed, M.A.T. ensures excellent part quality and fast
    production times.

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    C100 EASY LAB

    The 3D printer to develop & prototype then scale up on the C3600 ULTIMATE

    C100 EASY LAB

    The 3D printer to develop & prototype then scale up on the C3600 ULTIMATE

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    C900 HYBRID

    In order to print a second, or more, material at the same time.

    C900 HYBRID

    In order to print a second, or more, material at the same time.

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    Silicon Nitride 3D Printing Paste

    NON OXIDE CERAMICS The Silicon Nitride is among the hardest and most resistant technical ceramics.

    Silicon Nitride 3D Printing Paste

    NON OXIDE CERAMICS
    The Silicon Nitride is among the hardest and most resistant technical ceramics. It has also a high resistance to thermal shocks, to wear and corrosion (liquid and gas). Its application is found in the components of pumps and valves, semiconductors among others.

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    Aluminium Nitride 3D Printing Paste

    NON OXIDE CERAMICS The high mechanical properties of this ceramic, combined with high thermal condu

    Aluminium Nitride 3D Printing Paste

    NON OXIDE CERAMICS
    The high mechanical properties of this ceramic, combined with high thermal conductivity and electrical insulation, are highly recommended in electronics industry.

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    Hydroxyapatite 3D Printing Paste

    OXIDE CERAMICS Hydroxyapatite/TCP: material used in the biomedical applications for the manufacture

    Hydroxyapatite 3D Printing Paste

    OXIDE CERAMICS
    Hydroxyapatite/TCP: material used in the biomedical applications for the manufacture of the osseous substitutes, chemical composition close to bone.

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    Fused Silica 3D Printing Paste

    OXIDE CERAMICS Silice ceramics suit foundry cores and optical applications requirements.

    Fused Silica 3D Printing Paste

    OXIDE CERAMICS
    Silice ceramics suit foundry cores and optical applications requirements.

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    Tricalcium Phosphate 3D Printing Paste

    OXIDE CERAMICS TCP or Tricalcium Phosphate is a material often used for implants in the medical fie

    Tricalcium Phosphate 3D Printing Paste

    OXIDE CERAMICS
    TCP or Tricalcium Phosphate is a material often used for implants in the medical field, especially to recreate parts close to the structure of a spine.

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    Zirconia 8Y 3D Printing Paste

    OXIDE CERAMICS 8 mol% yttria-stabilized zirconia is mainly developed for fuel cell applications.

    Zirconia 8Y 3D Printing Paste

    OXIDE CERAMICS
    8 mol% yttria-stabilized zirconia is mainly developed for fuel cell applications.

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    Cordierite 3D Printing Paste

    OXIDE CERAMICS This low CTE and thermal conductivity ceramic is wear resistant. It suits vacuum app

    Cordierite 3D Printing Paste

    OXIDE CERAMICS
    This low CTE and thermal conductivity ceramic is wear resistant. It suits vacuum application.

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    Alumina Toughened Zirconia 3D Printing Paste

    OXIDE CERAMICS Alumina Toughened Zirconia, known for their biocompatibility and their resistance to

    Alumina Toughened Zirconia 3D Printing Paste

    OXIDE CERAMICS
    Alumina Toughened Zirconia, known for their biocompatibility and their resistance to wear and thermal shock, are recommended for biomedical and industry applications.
    The ceramic ATZ combines both Alumina (20%) and Zirconia (80%) ceramics in one. The mix of these two combined offers several properties.

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    Silicore 3D Printing Paste

    OXIDE CERAMICS Silicore is a ceramic formulation specifically developed for foundry cores. It is fo

    Silicore 3D Printing Paste

    OXIDE CERAMICS
    Silicore is a ceramic formulation specifically developed for foundry cores. It is formulated on a silica basis and has a high mechanical resistance. It is a porous ceramic enhanced the leachability even when it comes to complex shapes.