Effects of soldering and laser welding on bond strength of ceramic to metal
Statement of problem Welding or soldering of metal frameworks negatively affects the overall bond strength between the veneering ceramic and metal. Purpose The purpose of this study was to evaluate the effect of soldering and laser-welding procedures on the bond strength between ceramic and metal. M...
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Veröffentlicht in: | The Journal of prosthetic dentistry 2011, Vol.105 (1), p.28-34 |
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Sprache: | eng |
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Zusammenfassung: | Statement of problem Welding or soldering of metal frameworks negatively affects the overall bond strength between the veneering ceramic and metal. Purpose The purpose of this study was to evaluate the effect of soldering and laser-welding procedures on the bond strength between ceramic and metal. Material and Methods Thirty Ni-based metal specimens (Wiron 99) (8 × 4 × 4 mm) were fabricated and divided into 3 groups; soldered (S), laser welded (L), and control (untreated cast alloy) (n=10). In S and L specimens, a notch (1 × 1.5 mm) was prepared longitudinally on the surface of each specimen and filled with compatible alloy (Wiron soldering rods and Wiroweld NC, respectively). Vickers hardness measurements were made after polishing the surfaces with a metallographic polishing kit. A veneering ceramic (VITA VMK 95) was vibrated, condensed in a mold, and fired on the metal frameworks. The specimens were sectioned in 2 axes to obtain nontrimmed bar specimens with a bonding area of approximately 1 mm2 . Forty bars per block were obtained. Each bar was subjected to microtensile bond strength (μTBS) testing with a crosshead speed of 1 mm/min. The μTBS data (MPa) were recorded, and SEM was used for failure analysis of the tested bars. The measurements were statistically analyzed using a 1-way ANOVA and Tamhane tests (α=.05). Results The mean differences in μTBS of veneering ceramic to soldered (10.4 ±2.4 MPa) and laser-welded (11.7 ±1.3 MPa) metal surfaces were not significantly different and were significantly lower than that of the cast alloy (25.4 ±3.6 MPa) ( P |
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ISSN: | 0022-3913 1097-6841 |
DOI: | 10.1016/S0022-3913(10)60187-4 |