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September 17, 2025Materials2 citationsOpen Access

Failure Prediction of Lithium Disilicate and Composition-Gradient Multilayered Zirconia Occlusal Veneers: A Fractographic and Theoretical Analysis

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LPLea S. ProttPGPetra C. GierthmuehlenMBMarkus B. Blatz

Key Points

  • Lithium disilicate veneers show better fatigue resistance than zirconia at thinner dimensions, leading to improved long-term performance.
  • Fatigue testing on 72 occlusal veneers indicated that 50% of thinner zirconia samples developed significant cracking in rigorous conditions.
  • Analysis utilized both experimental and theoretical methods to predict performance, with outcomes closely matching theoretical fatigue predictions.
  • A minimum thickness of 0.7 mm for zirconia veneers is recommended to avoid subsurface cracking and enhance durability.

Abstract

This in vitro study aimed to evaluate the fatigue behavior of occlusal veneers (OVs) made of lithium disilicate and composition-gradient multilayered zirconia at different thicknesses, incorporating both experimental and theoretical analyses to predict long-term performance. Seventy-two OVs with ceramic layer thicknesses of 0.5 mm, 1.0 mm, and 1.5 mm were fabricated and adhesively bonded to dentin analog composite abutments. All specimens underwent thermomechanical fatigue testing, involving cyclic loading (49 N, 1.6 Hz, 1.2 million cycles) and thermocycling (5–55 °C), simulating five years of clinical function. Fracture patterns were analyzed using light microscopy and scanning electron microscopy. A fatigue lifetime model based on plate-on-foundation theory and slow crack growth was applied to estimate cycles to radial failure. No complete fractures or debonding occurred. However, 50% of 0.5 mm zirconia OVs developed flexural radial cracks from the intaglio surface, while all lithium disilicate and zirconia veneers ≥1.0 mm remained intact. Theoretical predictions closely matched the experimental outcomes, indicating that 0.5 mm zirconia performance aligned with the lower-bound fatigue estimates for 5Y-PSZ. Results suggest that lithium disilicate offers superior fatigue resistance at minimal thickness, while thin zirconia is prone to subsurface cracking. A minimum thickness of 0.7 mm is recommended for zirconia-based OVs.

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Cite This Study

Prott et al. (2025) studied this question.

synapsesocial.com/papers/68d45e6a31b076d99fa5f0e9https://doi.org/10.3390/ma18184287
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