Comparison of sandblasted, ground and melt-etched zirconia crowns regarding adhesion strength to resin cement

Authors

  • Ketil Kvam NIOM – Nordic Institute of Dental Materials, Oslo, Norway
  • Aesha Irkayek OsloMet – Oslo Metropolitan University, Oslo, Norway
  • Eliza Vangaeva OsloMet – Oslo Metropolitan University, Oslo, Norway
  • Fadi El-Homsi OsloMet – Oslo Metropolitan University, Oslo, Norway

DOI:

https://doi.org/10.1080/23337931.2019.1621179

Keywords:

Zirconia surface treatments, tensile test, adhesion strength

Abstract

Objectives: The aim is to compare the adhesion between zirconia and cements attained with melt-etching with potassium hydrogen difluoride, KHF2, with that found when such traditional surface treatments as sandblasting and ceramic stone grinding are employed.

Materials and methods: Groups of zirconia crowns where treated by sandblasting (n = 6), grinding with carbide bur (n = 6) or melt-etching with KHF2 (n = 6) of the surface before cementation with a resin cement to an implant substitute made by Selective Laser Melting of a cobalt-chromium alloy. Tensile testing was performed to rupture, while measured increasing load at the zirconia-cement interface. The strength was calculated by dividing the rupture load with the contact area. The three groups were compared using one-way ANOVA.

Results: The adhesion strength between the zirconia crowns and the cement resulted in significant differences between all groups (p < .05). The sandblasted group had the lowest strength (5.2 ± 0.95 MPa), the ground group significantly higher (7.3 ± 1.49 MPa) and the melt-etched group the highest values (9.8 ± 1.37 MPa).

Conclusion: The adhesive strength of resin cement to zirconia can be ranked according to the surface preparation with surfaces melt-etched with KHF2 stronger than ground which is stronger than sandblasted.

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Published

2019-12-20

How to Cite

Kvam, K., Irkayek, A., Vangaeva, E., & El-Homsi, F. (2019). Comparison of sandblasted, ground and melt-etched zirconia crowns regarding adhesion strength to resin cement. Biomaterial Investigations in Dentistry, 6(1), 1–5. https://doi.org/10.1080/23337931.2019.1621179