Mechanism of fracture of NiTi superelastic endodontic rotary instruments

Author:

Gil Javier,Rupérez Elisa,Velasco Eugenio,Aparicio Conrado,Manero José María

Publisher

Springer Science and Business Media LLC

Subject

Biomedical Engineering,Biomaterials,Bioengineering,Biophysics

Reference25 articles.

1. Cheung GS, Liu CS. A retrospective study of endodontic treatment outcome between nickel-titanium rotary and stainless steel hand filing techniques. J Endod. 2009;35:938–43.

2. Yoneyama T, Miyazaki S. Shape memory alloys for biomedical applications. Woodhead Publ., CRC; Boca Raton (FL), USA 2009

3. Wasilewski RJ. On the nature of the martensitic transformation. Metall Trans A. 1975;6A:1405–18.

4. Duerig TW, Proft JL. The mechanical aspects of constrained recovery. In: Duering TW, Melton KN, Stöckel D, Wayman CM, eds. Engineering aspects of shape memory alloys. London, UK: Butterworth; 1990. pp. 115–29.

5. Fernandes DJ, Peres RV, Mendes AM, Elias CN. Understanding the shape-memory alloys used in orthodontics. International Scholarly Research Network ISRN. Dentistry. 2011;11:1–6.

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