Biaxial strength under fatigue of 4YSZ: Surface treatment and resin cement viscosity effects.

Teixeira, Kétlin Fagundes; Cocco, Fernanda; Soares, Pablo Machado; Pereira, Gabriel Kalil Rocha; Kleverlaan, Cornelis Johannes; Tribst, João Paulo Mendes; Valandro, Luiz Felipe; Cadore-Rodrigues, Ana Carolina · PLoS One · 2026

biomechanical · Level V

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Abstract

This study aimed to investigate the effect of different surface treatments combined with high- or low-viscosity resin cements on the biaxial flexural strength of 4YSZ ceramics. Discs of 4YSZ (IPS e.max ZirCAD MT, Ivoclar AG; 15 mm diameter, 1.2 mm thickness) were prepared, subjected to CAD/CAM milling simulation using #220 silicon carbide papers, and divided into 10 groups according to two factors: "Surface Treatment" - Control (CTRL, no treatment); air abrasion with 45 µm (AB45) or 110 µm (AB110) alumina oxide particles; and glaze either followed (GLZ + HF) or not (GLZ) by 10% hydrofluoric acid; and "Resin Cement Viscosity" - High (H) or Low (L). The discs were treated, luted with resin cement, and subjected to two monotonic tests (n = 2) to determine fatigue parameters, followed by biaxial fatigue testing (n = 15; piston-on-three-balls; 20 Hz; 10,000 cycles; initial stress: 75 MPa; increments of 25 MPa). Topography, fractography, and surface roughness analyses were also performed. Surface treatment significantly influenced fatigue performance (p < 0.05, F = 60.25), whereas resin cement viscosity and its interaction with surface treatment did not show significant effects (p > 0.05, F = 0.86; p > 0.05, F = 0.07). The GLZ groups exhibited the highest flexural strength (H/L-GLZ: 382-396 MPa), followed by intermediate values in CTRL (H/L-CTRL: 285-288 MPa), AB45 (H/L-AB45: 310-315 MPa), and GLZ + HF (H/L: 273-280 MPa), while AB110 groups presented the lowest strength (H/L: 205-210 MPa). Surface roughness was lower for GLZ (Ra: 1.44 µm) and GLZ + HF (Ra: 1.38 µm) compared to AB45 (Ra: 1.83 µm) and AB110 (Ra: 1.69 µm). GLZ produced smooth and homogeneous surfaces, GLZ + HF led to areas partially exposed by acid, and AB110 caused more pronounced surface defects than AB45. Hence, the GLZ treatment offered superior fatigue performance; AB45 and GLZ + HF showed behavior similar to CTRL, whereas AB110 impaired mechanical performance. Resin cement viscosity had no significant influence on fatigue strength.

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