Resumen
Bulk-fill composite resins (BFCRs) have emerged as efficient alternatives to conventional restorative systems, enabling placement in thicker increments without compromising polymerization; however, their comparative mechanical performance under clinically demanding conditions remains uncertain. This study aimed to evaluate and compare the mechanical properties—flexural strength (FS), elastic modulus (EM), strain (ε), and displacement (δ)—of three high-viscosity bulk-fill resins: Filtek One™ Bulk Fill (3M ESPE), Tetric® N-Ceram Bulk Fill (Ivoclar Vivadent), and Opus™ Bulk Fill (FGM). Thirty specimens (n = 10 per group) were fabricated according to ISO 4049:2019 and subjected to three-point bending tests. Statistical analysis included Shapiro–Wilk testing for normality, one-way analysis of variance (ANOVA) with Tukey’s post hoc comparisons, multivariate analysis of variance (MANOVA), and Spearman’s correlation. Filtek One™ Bulk Fill exhibited the highest FS 142.5 megapascals (MPa) and EM 4.2 gigapascals (GPa), with significant differences compared to Tetric® N-Ceram Bulk Fill and Opus™ Bulk Fill (p < 0.001). Opus™ Bulk Fill demonstrated greater deformation capacity before fracture (p = 0.015). MANOVA revealed a significant effect of resin type on overall mechanical behavior (Wilks’ λ = 0.132; p < 0.001). Strong correlations were observed between strength and stiffness (ρ = 0.82), and between stiffness and deformation (ρ = –0.68). These findings confirm that BFCRs differ significantly in mechanical behavior, with Filtek One™ Bulk Fill exhibiting superior stiffness and resistance, while Opus™ Bulk Fill showed greater deformation capacity. Such differences support material selection based on the functional and anatomical demands of restorations, contributing to improved clinical performance and longevity.
| Idioma original | Inglés |
|---|---|
| Número de artículo | 623 |
| Publicación | Journal of Composites Science |
| Volumen | 9 |
| N.º | 11 |
| DOI | |
| Estado | Publicada - nov. 2025 |
Nota bibliográfica
Publisher Copyright:© 2025 by the authors.
Huella
Profundice en los temas de investigación de 'Comparative In Vitro Analysis of Mechanical Properties in Three High-Viscosity Bulk-Fill Composite Resins'. En conjunto forman una huella única.Proyectos
- 1 Terminado
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Aprovechamiento de Residuos Lignocelulósicos Agroindustriales y Materiales Poliméricos de Reciclaje para la Producción de Materiales Compuestos y Bioetanol en Conceptos de Biorrefinería
Fajardo Seminario, J. I. (Investigador principal), Lopez Lopez, L. M. (Investigador Secundario), Pelaez Samaniego, M. R. (Investigador Externo), Vintimilla Alvarez, P. (Investigador Externo), Vanegas, M. E. (Investigador Externo), Saetama Guallpa, V. (Investigador Externo), Alvarez Maldonado, K. A. (Estudiante Investigador), Andrade Coronel, C. I. (Estudiante Investigador), Rengel Rivera, P. J. (Estudiante Investigador), Perez Alarcon, P. A. (Estudiante Investigador) & Matute Pugo, J. A. (Estudiante Investigador)
21/11/19 → 30/12/23
Proyecto: Investigación y Desarrollo
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