Literature DB >> 32840940

Fracture Load of Different Zirconia Types: A Mastication Simulation Study.

Awab Abdulmajeed1,2, Taiseer Sulaiman3, Aous Abdulmajeed1,2, Sompop Bencharit2,4, Timo Närhi1,5.   

Abstract

PURPOSE: To assess the effect of yttria mol% concentration and material thickness on the biaxial fracture load (N) of zirconia with and without mastication simulation.
MATERIALS AND METHODS: Disk-shaped specimens (N = 120) of 3 mol% yttria-partially stabilized zirconia, 3Y-PSZ (Katana High Translucent, Kuraray Noritake), 4 mol% yttria-partially stabilized zirconia, 4Y-PSZ (Katana Super Translucent Multi Layered) and 5 mol% Yttria-partially stabilized zirconia, 5Y-PSZ (Katana Ultra Translucent Multi Layered) were prepared to thicknesses of 0.7 and 1.2 mm. For each thickness, the biaxial fracture load (N) was measured with and without mastication simulation with 1.2 million cycles at a 110-N load and simultaneous thermal cycling at 5°C to 55°C. The data were analyzed by three-way Analysis of Variance (α = 0.05) and Tukey-Kramer adjusted multiple comparison test.
RESULTS: Yttria mol% concentration and material thickness had a statistically significant effect on the mean biaxial fracture load (F = 388.16, p < 0.001 and F = 714.33, p < 0.001 respectively). The mean biaxial fracture load ranged from the highest to the lowest; 3Y-PSZ, 4Y-PSZ, and 5Y-PSZ (p = 0.012). The mean biaxial fracture load of the 1.2 mm thickness groups was significantly higher than 0.7 mm thickness at any given condition (p = 0.002). Not all specimens survived the mastication simulation protocol. Fifty percent of the 0.7-mm-thick 4Y-PSZ specimens, 70% of the 0.7-mm-thick 5Y-PSZ specimens and 20% of 1.2-mm-thick 5Y-PSZ specimens fractured during mastication simulation. Mastication simulation had no statistically significant effect on the biaxial fracture load (F = 1.24, p = 0.239) of the survived specimens.
CONCLUSIONS: Lowering yttria mol% concentration and increasing material thickness significantly increases the fracture load of zirconia. At 0.7 mm thickness, only 3Y-PSZ survived masticatory simulation. A minimum material thickness of 1.2 mm is required for 4Y-PSZ or 5Y-PSZ.
© 2020 by the American College of Prosthodontists.

Entities:  

Keywords:  Fatiguing; fracture load; mastication's simulation; material thickness; strength; yttria concentration; zirconia

Mesh:

Substances:

Year:  2020        PMID: 32840940     DOI: 10.1111/jopr.13242

Source DB:  PubMed          Journal:  J Prosthodont        ISSN: 1059-941X            Impact factor:   2.752


  3 in total

1.  Survivability and fracture resistance of monolithic and multi-yttria-layered zirconia crowns as a function of yttria content: A mastication simulation study.

Authors:  Zaid Badr; Lee Culp; Ibrahim Duqum; Chek Hai Lim; Yu Zhang; Taiseer A Sulaiman
Journal:  J Esthet Restor Dent       Date:  2022-03-21       Impact factor: 3.040

2.  Fracture Load and Fracture Patterns of Monolithic Three-Unit Anterior Fixed Dental Prostheses after In Vitro Artificial Aging-A Comparison between Color-Gradient and Strength-Gradient Multilayer Zirconia Materials with Varying Yttria Content.

Authors:  Max L Pöppel; Martin Rosentritt; Richard Sturm; Florian Beuer; Jeremias Hey; Alois Schmid; Franziska Schmidt
Journal:  J Clin Med       Date:  2022-08-25       Impact factor: 4.964

3.  Effect of Speed Sintering on Low Temperature Degradation and Biaxial Flexural Strength of 5Y-TZP Zirconia.

Authors:  Suchada Kongkiatkamon; Chaimongkon Peampring
Journal:  Molecules       Date:  2022-08-18       Impact factor: 4.927

  3 in total

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