MedicineMaterials Science

Satomi Arai, Kei Kubochi, K. Hoshino, Futoshi Komine

2026.3.11Journal of Oral Science

DOI: 10.2334/josnusd.25-0397

Abstract

PURPOSE The effect of a feldspathic porcelain coating applied before or after zirconia sintering on the shear bond strength between a resin luting agent and zirconia was evaluated.

METHODS Pre-sintered and fully sintered zirconia specimens were coated with feldspathic porcelain and divided into three surface treatment groups: no treatment, airborne-particle abrasion, and hydrofluoric acid etching. The specimens were bonded using a dual-polymerizing resin luting agent and subjected to 0 or 5,000 thermocycles. The shear bond strength was measured. The fracture modes were analyzed microscopically. The surface morphology and composition were examined by scanning electron microscopy (SEM) and X-ray diffraction.

RESULTS Before thermocycling, both airborne-particle abrasion and hydrofluoric acid etching significantly increased the bond strength compared with no treatment. After thermocycling, airborne-particle abrasion maintained the highest bond durability, while hydrofluoric acid etching showed a marked decrease. SEM revealed that airborne-particle abrasion produced a rough surface favorable for micromechanical retention, whereas hydrofluoric acid etching resulted in smoother morphology.

CONCLUSION Airborne-particle abrasion effectively enhanced and preserved the bond strength between the resin luting agent and feldspathic porcelain-coated zirconia, regardless of the coating sequence. Hydrofluoric acid etching was ineffective after thermocycling, likely due to surface precipitation that occurred during firing.

Citation format

ARAI, Satomi, et al. Shear bond strength of resin luting material to zirconia using a pre-sintered coating approach. Journal of Oral Science, 2026, 68(2): 66–70.