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Updated: May 30, 2025

Quasistatic Mechanical Testing for Computer-Aided Design and Manufacturing Occlusal Veneers Cemented to Milled Dentin Analog Material
Published on: December 20, 2024
Fracture resistance of analog and CAD-CAM long-span fixed provisional restorations: An in vitro experimental study
Claudia S Herdocia-Lluberes1, Antonio Chardon-Narvaez1, Zareth Jana-Hernández2
1The Advanced Education Program in Prosthodontics, School of Dental Medicine, Medical Sciences Campus, University of Puerto Rico, San Juan, Puerto Rico.
Purpose:
This study aimed to evaluate and compare the fracture resistance of long-span fixed provisional restorations fabricated using milling, three-dimensional (3D) printing, and conventional methods.
Materials And Methods:
Sixty specimens were prepared, divided into four groups of 15 each, corresponding to four fabrication methods: computer-aided design and computer-aided manufacturing (CAD-CAM) milled provisional resins, 3D-printed provisional resins, 3D-printed permanent resins, and conventional bis-acryl restorations reinforced with wire. The specimens underwent a three-point bending test using a universal testing machine to measure fracture resistance, quantified as maximum force (in Newtons). Statistical analysis was performed using one-way ANOVA and Tukey's HSD post-hoc tests to compare the fracture resistance across the four groups.
Results:
Significant differences in fracture resistance were observed among the materials tested (p < 0.001). Both the CAD-CAM milled and 3D-printed resins exhibited significantly higher fracture resistance than the conventional bis-acryl method.
Conclusion:
The results highlight the mechanical advantages of digital fabrication methods for long-span provisional applications in prosthodontics. These techniques may provide improved durability and reliability, addressing the mechanical demands of complex restorations.

