Javascript must be enabled to continue!
Corrosion resistance of stainless steel, nickel-titanium, titanium molybdenum alloy, and ion-implanted titanium molybdenum alloy archwires in acidic fluoride-containing artificial saliva: An in vitro study
View through CrossRef
Objective:
(1) To evaluate the corrosion resistance of four different orthodontic archwires and to determine the effect of 0.5% NaF (simulating high fluoride-containing toothpaste of about 2250 ppm) on corrosion resistance of these archwires. (2) To assess whether surface roughness (Ra) is the primary factor influencing the corrosion resistance of these archwires.
Materials and Methods:
Four different archwires (stainless steel [SS], nickel-titanium [NiTi], titanium molybdenum alloy [TMA], and ion-implanted TMA) were considered for this study. Surface characteristics were analyzed using scanning electron microscopy, atomic force microscopy (AFM), and energy dispersive spectroscopy. Linear polarization test, a fast electrochemical technique, was used to evaluate the corrosion resistance, in terms of polarization resistance of four different archwires in artificial saliva with NaF concentrations of 0% and 0.5%. Statistical analysis was performed by one-way analysis of variance.
Results:
The potentiostatic study reveals that the corrosion resistance of low-friction TMA (L-TMA) > TMA > NiTi > SS. AFM analysis showed the surface Ra of TMA > NiTi > L-TMA > SS. This indicates that the chemical composition of the wire is the primary influential factor to have high corrosion resistance and surface Ra is only secondary. The corrosion resistance of all wires had reduced significantly in 0.5% acidic fluoride-containing artificial saliva due to formation of fluoride complex compound.
Conclusion:
The presence of 0.5% NaF in artificial saliva was detrimental to the corrosion resistance of the orthodontic archwires. Therefore, complete removal of residual high-fluorinated toothpastes from the crevice between archwire and bracket during tooth brushing is mandatory.
Ovid Technologies (Wolters Kluwer Health)
Title: Corrosion resistance of stainless steel, nickel-titanium, titanium molybdenum alloy, and ion-implanted titanium molybdenum alloy archwires in acidic fluoride-containing artificial saliva: An in vitro study
Description:
Objective:
(1) To evaluate the corrosion resistance of four different orthodontic archwires and to determine the effect of 0.
5% NaF (simulating high fluoride-containing toothpaste of about 2250 ppm) on corrosion resistance of these archwires.
(2) To assess whether surface roughness (Ra) is the primary factor influencing the corrosion resistance of these archwires.
Materials and Methods:
Four different archwires (stainless steel [SS], nickel-titanium [NiTi], titanium molybdenum alloy [TMA], and ion-implanted TMA) were considered for this study.
Surface characteristics were analyzed using scanning electron microscopy, atomic force microscopy (AFM), and energy dispersive spectroscopy.
Linear polarization test, a fast electrochemical technique, was used to evaluate the corrosion resistance, in terms of polarization resistance of four different archwires in artificial saliva with NaF concentrations of 0% and 0.
5%.
Statistical analysis was performed by one-way analysis of variance.
Results:
The potentiostatic study reveals that the corrosion resistance of low-friction TMA (L-TMA) > TMA > NiTi > SS.
AFM analysis showed the surface Ra of TMA > NiTi > L-TMA > SS.
This indicates that the chemical composition of the wire is the primary influential factor to have high corrosion resistance and surface Ra is only secondary.
The corrosion resistance of all wires had reduced significantly in 0.
5% acidic fluoride-containing artificial saliva due to formation of fluoride complex compound.
Conclusion:
The presence of 0.
5% NaF in artificial saliva was detrimental to the corrosion resistance of the orthodontic archwires.
Therefore, complete removal of residual high-fluorinated toothpastes from the crevice between archwire and bracket during tooth brushing is mandatory.
Related Results
Investigating the Effect of High Pressures and Temperatures on Corrosion Inhibition for Water-Based Muds
Investigating the Effect of High Pressures and Temperatures on Corrosion Inhibition for Water-Based Muds
Corrosion is defined as gradual degradation of metal caused by a chemical or electrochemical reaction with its environment. In oil and gas sector, components can corrode at any sta...
A Comparative Evaluation of Frictional Resistance of Conventional, Teflon and Epoxy Coated Stainless Steel Archwires in Metal, Ceramic Brackets – An In vitro Study
A Comparative Evaluation of Frictional Resistance of Conventional, Teflon and Epoxy Coated Stainless Steel Archwires in Metal, Ceramic Brackets – An In vitro Study
Aim and Objectives: To evaluate the frictional resistance of Conventional, Teflon, and Epoxy coated stainless steel archwires in Metal, Ceramic brackets.
Materials and Method...
Enhancement of Corrosion Resistance and Hardness for Type 420J2 Martensitic Stainless Steel Via Laser Powder Bed Fusion Process
Enhancement of Corrosion Resistance and Hardness for Type 420J2 Martensitic Stainless Steel Via Laser Powder Bed Fusion Process
In the field of materials engineering, physical properties such as mechanical properties are considered as the most important properties, however, chemical properties such as corro...
Comparative Evaluation of Frictional Resistance Between Conventional, Self-Ligating, and Ceramic Brackets Using Different Archwire Materials: An In Vitro Study
Comparative Evaluation of Frictional Resistance Between Conventional, Self-Ligating, and Ceramic Brackets Using Different Archwire Materials: An In Vitro Study
Background Frictional resistance at the bracket-archwire interface is a critical determinant of force delivery during sliding mechanics. Bracket design, slot material, ligation met...
Aportaciones al estudio del comportamiento a flexión de estructuras de acero inoxidable
Aportaciones al estudio del comportamiento a flexión de estructuras de acero inoxidable
L'acer inoxidable està essent utilitzat de manera creixent en els últims anys als sectors de la indústria i de l'arquitectura gràcies a la seva resistència a la corrosió, facilitat...
Improvement of the Corrosion Resistance for Martensitic Stainless Steel By Laser Thermal Processing
Improvement of the Corrosion Resistance for Martensitic Stainless Steel By Laser Thermal Processing
Introduction
Stainless steels are widely used as medical devices. Martensitic stainless steels can be hardened by quenching. Therefore, in the medical field, martens...
Influence of prophylactic fluoride agents on the color changes and surface roughness of polymer and rhodium coated nickel-titanium orthodontic archwires
Influence of prophylactic fluoride agents on the color changes and surface roughness of polymer and rhodium coated nickel-titanium orthodontic archwires
The effect of fluoride use on the color change and surface characteristics of coated nickel and titanium (NiTi) orthodontic archwires was investigated. Epoxy resin, PTFE or rhodium...
Cathodic Protection Of Stainless Steels Against Crevice Corrosion
Cathodic Protection Of Stainless Steels Against Crevice Corrosion
ABSTRACT
Crevice corrosion on stainless steel instrument components has been a problem affecting designers and operators of marine instrumentation packages for ma...

