Effect of interfacial variables on metal‐porcelain bonding
- 1 April 1993
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research
- Vol. 27 (4) , 531-537
- https://doi.org/10.1002/jbm.820270414
Abstract
While ceramic-to-metal bonding has been used in many applications, the actual chemical and physical factors leading to optimum bond strength are not well understood. In this work, several variables affecting the bonding between dental porelain and a palladium alloy (85% Pd, 10% Cu, and 5% Ga) were investigated: (1) precoating the metal by sputtering various oxides before porcelaining; (2) preoxidation of the metal base before porcelaining; (3) porcelaining under reducing atmosphere; and (4) surface roughening at controlled levels before porcelaining. Using a modification of the push doughnut shear bond strength test to measure bond strength the following results were obtained. (1) Compared with standard “control” samples, the aluminum oxide precoated precoated specimens showed a bond strength improvement of 46%, while the copper, manganese, and tin oxide precoatings exhibited smaller effects. (2) Preoxidation of the metal base led to pronounced bond strengthening (152%) by surface roughening as well as oxide formation. (3) Porcelaining under a reducing atmosphere severely reduced bond strength (88% lower than the controls) indicating the role of oxidation during the standard firing cycle. (4) Mechanical roughening of the surface by controlled amounts gave pronounced improvements with greater notch depth. Coarse roughening produced the highest bond strength improvements (486%). © 1993 John Wiley & Sons, Inc.Keywords
This publication has 13 references indexed in Scilit:
- Structure and Chemistry of Metal/Ceramic InterfacesMRS Proceedings, 1988
- Chemical reactions and adherence at glass/metal interfaces: an analysisDental Materials, 1986
- Materials ScienceJournal of Dental Research, 1980
- The bonded alumina crown. 1. The bonding of platinum to aluminous dental porcelain using tin oxide coatings*Australian Dental Journal, 1976
- Domain structure of electrodeposited “over-critical” filmsPhysica Status Solidi (a), 1973
- Effect of Composition on Glass‐Metal Interface Reactions and AdherenceJournal of the American Ceramic Society, 1973
- Role of “Adherence Oxides” in the Development of Chemical Bonding at Glass‐Metal InterfacesJournal of the American Ceramic Society, 1966
- Fundamentals of Glass‐to‐Metal Bonding: VIII, Nature of Wetting and AdherenceJournal of the American Ceramic Society, 1962
- Study of the Bond between Gold Alloys and PorcelainJournal of Dental Research, 1962
- Nature of Adherence of Porcelain Enamels to MetalsJournal of the American Ceramic Society, 1959