Literature DB >> 16448250

Metallurgical characterization of orthodontic brackets produced by Metal Injection Molding (MIM).

Spiros Zinelis1, Olga Annousaki, Margarita Makou, Theodore Eliades.   

Abstract

The aim of this study was to investigate the bonding base surface morphology, alloy type, microstructure, and hardness of four types of orthodontic brackets produced by Metal Injection Molding technology (Discovery, Extremo, Freedom, and Topic). The bonding base morphology of the brackets was evaluated by scanning electron microscopy (SEM). Brackets from each manufacturer were embedded in epoxy resin, and after metallographic grinding, polishing and coating were analyzed by x-ray energy-dispersive spectroscopic (EDS) microanalysis to assess their elemental composition. Then, the brackets were subjected to metallographic etching to reveal their metallurgical structure. The same specimen surfaces were repolished and used for Vickers microhardness measurements. The results were statistically analyzed with one-way analysis of variance and Student-Newman-Keuls multiple comparison test at the 0.05 level of significance. The findings of SEM observations showed a great variability in the base morphology design among the brackets tested. The x-ray EDS analysis demonstrated that each bracket was manufactured from different ferrous or Co-based alloys. Metallographic analysis showed the presence of a large grain size for the Discovery, Freedom, and Topic brackets and a much finer grain size for the Extremo bracket. Vickers hardness showed great variations among the brackets (Topic: 287 +/- 16, Freedom: 248 +/- 13, Discovery: 214 +/- 12, and Extremo: 154 +/- 9). The results of this study showed that there are significant differences in the base morphology, composition, microstructure, and microhardness among the brackets tested, which may anticipate significant clinical implications.

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Year:  2005        PMID: 16448250     DOI: 10.1043/0003-3219(2005)75[1024:MCOOBP]2.0.CO;2

Source DB:  PubMed          Journal:  Angle Orthod        ISSN: 0003-3219            Impact factor:   2.079


  7 in total

1.  Corrosion of orthodontic brackets: qualitative and quantitative surface analysis.

Authors:  Romy A Doomen; Ivana Nedeljkovic; Reinder B Kuitert; Cornelis J Kleverlaan; Burcu Aydin
Journal:  Angle Orthod       Date:  2022-05-23       Impact factor: 2.684

2.  Comparison of slot sizes and parallelism of metal brackets manufactured through metal injection molding and computerized numerical control.

Authors:  Jae-Sung Park; In-Tae Song; Jae-Hee Bae; Soo-Min Gil; Kyung-Hwa Kang
Journal:  Korean J Orthod       Date:  2020-11-25       Impact factor: 1.372

3.  Assessment of the hardness of different orthodontic wires and brackets produced by metal injection molding and conventional methods.

Authors:  Shiva Alavi; Marzie Kachuie
Journal:  Dent Res J (Isfahan)       Date:  2017 Jul-Aug

4.  New aesthetic in-house 3D-printed brackets: proof of concept and fundamental mechanical properties.

Authors:  Spyridon N Papageorgiou; Georgios Polychronis; Nearchos Panayi; Spiros Zinelis; Theodore Eliades
Journal:  Prog Orthod       Date:  2022-02-21       Impact factor: 3.247

5.  Comparison of Galvanic Currents Generated Between Different Combinations of Orthodontic Brackets and Archwires Using Potentiostat: An In Vitro Study.

Authors:  Rabindra S Nayak; Bareera Shafiuddin; Azam Pasha; K Vinay; Anjali Narayan; Smitha V Shetty
Journal:  J Int Oral Health       Date:  2015-07

6.  Retrieval analysis of different orthodontic brackets: the applicability of electron microprobe techniques for determining material heterogeneities and corrosive potential.

Authors:  Alexandra Ioana Holst; Stefan Holst; Ursula Hirschfelder; Volker Von Seckendorff
Journal:  J Appl Oral Sci       Date:  2012 Jul-Aug       Impact factor: 2.698

7.  Dimensional variability of orthodontic slots and archwires: an analysis of torque expression and clinical implications.

Authors:  Michele Tepedino; Giordano Paiella; Maciej Iancu Potrubacz; Annalisa Monaco; Roberto Gatto; Claudio Chimenti
Journal:  Prog Orthod       Date:  2020-09-14       Impact factor: 2.750

  7 in total

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