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    IPS e.max ZirCAD MT 14 x 98.5mm
    D2

    686867
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    Variants
    A1
    686861
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    A2
    686862
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    A3
    686863
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    B1
    686864
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    B2
    686865
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    BL
    686860
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    C2
    686866
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    D2
    686867
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    Description Ratings & Reviews (0)
    Description
    Description

    The innovative and versatile zirconium oxide
    IPS e.max ZirCAD is the material of choice for cases in which high mechanical stability, thin restoration walls and natural-looking esthetics* are of the essence. Tooth preserving and natural-looking restorations* with considerably reduced wall thicknesses can be created as the material provides high strength.

    Universal areas of application due to a wide range of solutions

    • Crown copings and crowns
    • Full-contour 3-unit bridges and bridge frameworks
    • Full-contour wide-span bridges and bridge frameworks
    • Implant-supported superstructures

    Versatile processing options

    • Depending on which disc you select, there are several methods you may use to create your restoration, such as the monolithic method or the veneering technique
    • Select between infiltration, staining, cut-back or veneering technique

    High stability 

    • Flexural strength of 850 - 1200 MPa depending on the selected IPS e.max ZirCAD material
    • For thin restoration walls and minimally invasive solutions

    IPS e.max ZirCAD MT (medium translucency)
    IPS e.max ZirCAD MT is the creative one in the portfolio. The material combines sound mechanical stability (850 MPa)2 with impressive esthetic properties as a result of an optimized raw material mixture. It lends itself to various processing options and offers a high degree of flexibility. The A-D shade system enables an efficient fabrication of esthetic monolithic or layered restorations. The A-D Colouring and Effect Colouring Liquids are designed for maximum customization prior to sintering. IPS e.max ZirCAD MT is available as a disc with a diameter of 98.5 mm.

    Areas of application

    • Full-contour crowns
    • Full-contour 3-unit bridges
    • Implant-supported superstructures

    * At natural light conditions. The use of artificially generated UV or UV-like light may result in a different impression.

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