VINTAGE PRIME PRESS

SHOFU DENTAL · Quelle

High-strength lithium disilicate glass ceramic

VINTAGE PRIME PRESS is a high-strength lithium disilicate glass ceramic for the production of outstandingly aesthetic crowns, inlays, onlays, veneers and 3-unit anterior bridges.

A new process (HDIL formula = High-Density Interlocking), creating an interlocked crystal structure in the glass matrix, gives VINTAGE PRIME PRESS excellent strength values of up to 525 MPa. This structure counteracts crack propagation and improves chipping resistance.

VINTAGE PRIME PRESS offers the right shades and translucencies for all types of metal-free restorations, allowing you to create individualized and natural aesthetic results.

Four different translucent levels:

  • E (Enamel) – high, enamel-like light transmission
  • HT (High Translucency) – moderate translucency for crowns and bridges
  • LT (Low Translucency) – low translucency for slightly discoloured preparations
  • HO (High Opacity) – high opacity for masking abutments and frameworks

Indications:

Fabrication of all ceramic restorations except for four- or more unit bridges and three-unit bridges including molars.

VINTAGE PRIME PRESS Highlights

  • Biaxial flexural strength of up to 525 MPa
  • Reliable shade stability even after multiple firing
  • High accuracy of fit, as there is almost no reaction layer after pressing
  • Abrasion resistance and antagonist friendliness
  • Four different translucencies
  • Combinability with VINTAGE LD layered porcelains and VINTAGE Art Universal stains

Produktinformationen

HerstellerSHOFU DENTAL
ProcessHDIL formula (High-Density Interlocking)
EigenschaftenInterlocked crystal structure, excellent strength, crack propagation resistance, improved chipping resistance, high accuracy of fit, abrasion resistance, antagonist friendliness
MaterialHigh-strength lithium disilicate glass ceramic
AnwendungCrowns, inlays, onlays, veneers, 3-unit anterior bridges
Translucency LevelsE (Enamel), HT (High Translucency), LT (Low Translucency), HO (High Opacity)
Biaxial Flexural Strengthup to 525 MPa