Microstructure of NiTi orthodontic wires observations using transmission electron microscopy

This work presents the results of the microstructure observation of six different types of NiTi orthodontic wires by using Transmission Electron Microscopy (TEM). Within these analyses the chemical compositions of each wire were observed in different places by applying the EDS detector. Namely, the...

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Main Authors: J. Ferčec, D. Jenko, B. Buchmeister, F. Rojko, B. Budič, B. Kosec, R. Rudolf
Format: Article
Language:English
Published: Croatian Metallurgical Society 2014-10-01
Series:Metalurgija
Subjects:
TEM
EDS
Online Access:http://hrcak.srce.hr/file/180644
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spelling doaj-49fc76f8284e4050991b83c57970c0792020-11-24T21:22:57ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762014-10-01534469472Microstructure of NiTi orthodontic wires observations using transmission electron microscopy J. FerčecD. JenkoB. BuchmeisterF. RojkoB. BudičB. KosecR. RudolfThis work presents the results of the microstructure observation of six different types of NiTi orthodontic wires by using Transmission Electron Microscopy (TEM). Within these analyses the chemical compositions of each wire were observed in different places by applying the EDS detector. Namely, the chemical composition in the orthodontic wires is very important because it shows the dependence between the phase temperatures and mechanical properties. Microstructure observations showed that orthodontic wires consist of nano-sized grains containing precipitates of Ti<sub>2</sub>Ni and/or TiC. The first precipitated Ti<sub>2</sub>Ni are rich in Ti, while the precipitated TiC is rich in C. Further investigation showed that there was a difference in average grain size in the NiTi matrix. The sizes of grains in orthodontic wires are in the range from approximately 50 to 160 nm and the sizes of precipitate are in the range from 0,3 μm to 5 μm.http://hrcak.srce.hr/file/180644NiTi orthodontic wiremicrostructureTEMEDSaverage grain size
collection DOAJ
language English
format Article
sources DOAJ
author J. Ferčec
D. Jenko
B. Buchmeister
F. Rojko
B. Budič
B. Kosec
R. Rudolf
spellingShingle J. Ferčec
D. Jenko
B. Buchmeister
F. Rojko
B. Budič
B. Kosec
R. Rudolf
Microstructure of NiTi orthodontic wires observations using transmission electron microscopy
Metalurgija
NiTi orthodontic wire
microstructure
TEM
EDS
average grain size
author_facet J. Ferčec
D. Jenko
B. Buchmeister
F. Rojko
B. Budič
B. Kosec
R. Rudolf
author_sort J. Ferčec
title Microstructure of NiTi orthodontic wires observations using transmission electron microscopy
title_short Microstructure of NiTi orthodontic wires observations using transmission electron microscopy
title_full Microstructure of NiTi orthodontic wires observations using transmission electron microscopy
title_fullStr Microstructure of NiTi orthodontic wires observations using transmission electron microscopy
title_full_unstemmed Microstructure of NiTi orthodontic wires observations using transmission electron microscopy
title_sort microstructure of niti orthodontic wires observations using transmission electron microscopy
publisher Croatian Metallurgical Society
series Metalurgija
issn 0543-5846
1334-2576
publishDate 2014-10-01
description This work presents the results of the microstructure observation of six different types of NiTi orthodontic wires by using Transmission Electron Microscopy (TEM). Within these analyses the chemical compositions of each wire were observed in different places by applying the EDS detector. Namely, the chemical composition in the orthodontic wires is very important because it shows the dependence between the phase temperatures and mechanical properties. Microstructure observations showed that orthodontic wires consist of nano-sized grains containing precipitates of Ti<sub>2</sub>Ni and/or TiC. The first precipitated Ti<sub>2</sub>Ni are rich in Ti, while the precipitated TiC is rich in C. Further investigation showed that there was a difference in average grain size in the NiTi matrix. The sizes of grains in orthodontic wires are in the range from approximately 50 to 160 nm and the sizes of precipitate are in the range from 0,3 μm to 5 μm.
topic NiTi orthodontic wire
microstructure
TEM
EDS
average grain size
url http://hrcak.srce.hr/file/180644
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