International Journal of Chemical and Biochemical Sciences (ISSN 2226-9614)[/vc_column_text][/vc_column][/vc_row]
VOLUME 29(24) (2026)
Shear Bond Strength and Surface Roughness of Titanium Dental Alloys Fabricated by Using Different Techniques Bonded to Two Different Veneering Materials: A Narrative Review
Mohamed T. Elboghdady1*, M. A. Eldemellawy2, Ingy Mohamed Hany Nouh3
1Master Student, Fixed Prosthodontics Department, Faculty of Dentistry, Ain Shams University, Cairo, Egypt
2Professor of Fixed Prosthodontics, Faculty of Dentistry, Ain Shams University, Cairo, Egypt
3Associate Professor of Fixed Prosthodontics, Faculty of Dentistry, Ain Shams University, Cairo, Egypt
Abstract
Titanium and its alloys have become increasingly prevalent in prosthetic dentistry due to their exceptional biocompatibility, corrosion resistance, and favorable mechanical properties. However, achieving a durable bond between titanium frameworks and veneering materials remains a significant clinical challenge. This narrative review synthesizes current evidence on the influence of fabrication techniques -conventional casting, computer numerical control (CNC) milling, and selective laser melting (SLM)- on the bond strength and failure characteristics of titanium-veneered assemblies. The adhesion strength between porcelain coating and metal infrastructure in metal-ceramic fixed dental prostheses is essential for their durability. The review examines the inherent challenges of titanium-ceramic bonding, including excessive oxide layer formation, coefficient of thermal expansion mismatch, and processing difficulties associated with titanium’s high melting temperature and reactivity. The transition from conventional casting to subtractive and additive CAD/CAM technologies has provided alternative processing routes that may influence surface characteristics and bond integrity. The evidence indicates that fabrication technique significantly influences failure mode distribution, with casting predominantly associated with adhesive failure, while CNC milling and SLM demonstrate a higher prevalence of mixed failure, suggesting superior bond characteristics. Veneering material selection -low-fusing porcelain versus composite resin- does not appear to significantly influence failure mode distribution, providing clinicians with greater material flexibility. The review also examines surface conditioning methods and their role in enhancing titanium-veneer adhesion. The findings support the adoption of SLM technology for titanium frameworks in high-load prosthetic applications and emphasize the importance of standardized surface preparation protocols for optimizing clinical outcomes.
Keywords: Titanium alloys, Ti-6Al-4V, surface roughness, shear bond strength, selective laser melting, CNC milling, casting, failure mode analysis, dental prosthesis, metal-ceramic bonding
Review article *Corresponding Author, e-mail: mohamedelboghdady120@gmail.com; Doi # https://doi.org/10.62877/1-IJCBS-26-29-24-1
Submitted: 02-08-2026; Accepted: 12-09-2026; Published: 12-09-2026
International Scientific Organization- Atom to Universe
International Scientific Organization
- Home
- International Journal of Chemical and Biochemical Sciences (IJCBS) – HOME PAGE
- Editorial board
- Instructions to authors
- Volume 30 (2026)
- Volume 29 (2026)
- Volume 28 (2025)
- Volume 27 (2025)
- Volume 26 (2024)
- Volume 25 (2024)
- Volume 24 (2023)
- Volume 23 (2023)
- Volume 22 (2022)
- Volume 21 (2022)
- Volume 20 (2021)
- Volume 19 (2021)
- Volume 18 (2020)
- Volume 17 (2020)
- Volume 16 (2019)
- Volume 15 (2019)
- Volume 14 (2018)
- Volume 13 (2018)
- Volume 12 (2017)
- Volume 11 (2017)
- Volume 10 (2016)
- Volume 9 (2016)
- Volume 8 (2015)
- Volume 7 (2015)
- Volume 6 (2014)
- Volume 5 (2014)
- Volume 4 (2013)
- Volume 3 (2013)
- Volume 2 (2012)
- Volume 1 (2012)
