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- W2182979423 abstract "Introduction: Modern laser welding procedures of dental alloys in an inert gas environment, have led to substantial improvements to the traditional joining procedures used in denture technology. The purpose of the research was to assess the weldability of base metal alloys used for removable partial dentures frameworks repairs, depending on the structure morphology and joining method. Material and methods: Finite element analyses, designed for quantifying stresses and displacements occurring in frameworks, revealed minimal resistance, high breaking risk areas. Depending on these analyses, welding procedures were oriented towards these areas, as well as on those that require optimizations in practical use. The optimal parameters were correlated with the type of welded alloy, the framework structure, fl aw type and size, working stage, welding procedure. Nondestructive and destructive analyses served the purpose of assessing the welding quality. Results: New welding procedures have to particularized and reproduced for implementation in dental technology. The pulse power (Pp), pulse duration (Dp) and pulse energy (Ep) were: Pp = 800 - 1000 W, Dp = 10 ms, Ep = 8 - 10 J for welding; Pp = 700 W, Dp = 20 ms, Ep = 14 J for build-up; Pp = 600 W, Dp = 10 ms, Ep = 6J for fi ning the surface between deposition passes. Conclusions: In order to obtain maximum precision and high quality weldings, which would fulfi ll current requirements, it is important that modern analysis concepts be used for each particular case, based on an interdisciplinary collaboration." @default.
- W2182979423 created "2016-06-24" @default.
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- W2182979423 date "2008-01-01" @default.
- W2182979423 modified "2023-10-16" @default.
- W2182979423 title "LASER WELDING OTIMIATIONS FOR RACTICAL USE IN DENTAL TECHNOLOG" @default.
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