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Mechanical and metallurgical properties of various nickel-Titanium rotary instruments

Cited 32 time in Web of Science Cited 37 time in Scopus
Authors

Shim, Kyu-Sang; Oh, Soram; Kum, Keeyeon; Kim, Yu-Chan; Jee, Kwang-Koo; Chang, Seok Woo

Issue Date
2017-11
Publisher
Hindawi Limited
Citation
BioMed Research International, Vol.2017, p. 4528601
Abstract
The aim of this study was to investigate the effect of thermomechanical treatment on mechanical and metallurgical properties of nickel-titanium (NiTi) rotary instruments. Eight kinds of NiTi rotary instruments with sizes of ISO #25 were selected: ProFile, K3, and One Shape for the conventional alloy; ProTaper NEXT, Reciproc, and WaveOne for the M-wire alloy; HyFlex CM for the controlled memory- (CM-) wire; and TF for the R-phase alloy. Torsional fracture and cyclic fatigue fracture tests were performed. Products underwent a differential scanning calorimetry (DSC) analysis. The CM-wire and R-phase groups had the lowest elastic modulus, followed by the M-wire group. The maximum torque of the M-wire instrument was comparable to that of a conventional instrument, while those of the CM-wire and R-phase instruments were lower. The angular displacement at failure (ADF) for the CM-wire and R-phase instruments was higher than that of conventional instruments, and ADF of the M-wire instruments was lower. The cyclic fatigue resistance of the thermomechanically treated NiTi instruments was higher. DSC plots revealed that NiTi instruments made with the conventional alloy were primarily composed of austenite at room temperature; stable martensite and R-phase were found in thermomechanically treated instruments. © 2017 Kyu-Sang Shim et al.
ISSN
2314-6133
Language
English
URI
https://hdl.handle.net/10371/148078
DOI
https://doi.org/10.1155/2017/4528601
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