Experimental Analysis of Torque Characteristics of Orthodontic Wires
Author:
Publisher
Springer Science and Business Media LLC
Subject
Oral Surgery,Orthodontics
Link
http://link.springer.com/content/pdf/10.1007/s00056-010-1028-2.pdf
Reference19 articles.
1. Andreasen GF, Hilleman TB. An evaluation of 55 cobalt substituted Nitinol wire for use in orthodontics. J Am Dent Assoc 1971;82:1373–5.
2. Bachmann J. Torque-Eigenschaften von Stahl- und Nitinol-Drähten, Fortschr Kieferorthop 1983;44:311–5.
3. Bourauel C, Drescher D, Nolte LP. Computergestützte Entwicklung kieferorthopädischer Behandlungselemente aus NiTi-Memory-Legierungen am Beispiel einer pseudoelastischen Retraktionsfeder. Fortschr Kieferorthop 1993;54:45–56.
4. DIN EN ISO 15841. Zahnheilkunde — Drähte für die Kieferorthopädie. Berlin: Beuth, 2006.
5. Drescher D, Bourauel C, Sonneborn W, et al. Dauerbruchfestigkeit orthodontischer Nickel-Titan-Drähte. Schweiz Monatschr Zahnmed 1994;104:578–84.
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1. Springback mechanism analysis and experimentation of orthodontic archwire bending considering slip warping phenomenon;International Journal of Advanced Robotic Systems;2018-05-01
2. Springback Mechanism Analysis and Experiments on Robotic Bending of Rectangular Orthodontic Archwire;Chinese Journal of Mechanical Engineering;2017-05-15
3. The effect of buccal–lingual slot dimension size on third-order torque response;The European Journal of Orthodontics;2016-06-03
4. Torque resistance of different stainless steel wires commonly used for fixed retainers in orthodontics;Journal of Orthodontics;2016-04-02
5. Torque efficiency of square and rectangular archwires into 0.018 and 0.022 in. conventional brackets;Progress in Orthodontics;2016-01-15
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