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J Prosthodont ; 23(2): 163-70, 2014 Feb.
Article in English | MEDLINE | ID: mdl-23889889

ABSTRACT

PURPOSE: This study was conducted to measure and compare the effect of the soldering method (torch soldering or ceramic furnace soldering) used for soldering bars to bar-retained, implant-supported overdentures on the fit between the bar gold cylinder and implant transgingival abutment. MATERIALS AND METHODS: Thirty-two overdenture implant bars were manufactured and screw retained into two Bränemark implants, which were attached to a cow rib. The bars were randomly distributed in two groups: a torch-soldering group and a porcelain-furnace soldering group. Then all bars were cut and soldered using a torch and a ceramic furnace. The fit between the bar gold cylinders and implant transgingival abutments was measured with a light microscope on the opposite side to the screw tightening side before and after the bar soldering procedure. The data obtained were statistically processed for paired and independent data. RESULTS: The average misfit for all bars before soldering was 33.83 to 54.04 µm. After cutting and soldering the bars, the misfit increased up to a range of 71.74 to 78.79 µm. Both before and after the soldering procedure, the bars soldered using a torch showed a higher misfit when compared to the bars soldered using a porcelain furnace. After the soldering procedure, the misfit was slightly lower on the left side of the bars, which had been soldered using a ceramic furnace. CONCLUSIONS: According to our data, the soldering of bars using the torch or furnace oven soldering techniques does not improve the misfit of one-piece cast bars on two implants. The lower misfit was obtained using the porcelain furnace soldering technique.


Subject(s)
Dental Marginal Adaptation , Dental Prosthesis, Implant-Supported , Dental Soldering/methods , Denture Retention/instrumentation , Denture, Overlay , Animals , Cattle , Dental Implant-Abutment Design , Dental Soldering/instrumentation , Equipment Design , Gold Alloys/chemistry , Materials Testing , Palladium/chemistry , Random Allocation , Surface Properties
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