Literature DB >> 8023109

[The long-term fracture resistance of orthodontic nickel-titanium wires].

D Drescher1, C Bourauel, W Sonneborn, G P Schmuth.   

Abstract

This study reports on the long-term fracture resistance of orthodontic nickel titanium wires, a material property that has not been investigated thoroughly, yet. A computer-controlled apparatus was designed to perform long-term bending tests. The investigated material comprised 9 nickel titanium wires (dimensions 0.016", round and 0.016" x 0.022", rectangular) as well as a stainless steel and a beta-titanium wire that were included as reference. Compared with the steel wire, the nickel titanium wires exhibited 2- to 5-fold higher yield forces in bending. At a specified deflection angle, the generated bending forces of the nickel titanium wires reached one half to one fourth of the values of steel. The fracture resistance under longterm loading was determined using the Wöhler-method. After 10(5) loadings, 0.016" nickel titanium wires were subject to break failure, if forces exceed values greater than 1.2 to 3.1 N. Steel and TMA wires could be loaded with forces of up to 4.4 and 3.7 N, respectively. The 0.016" x 0.022"-rectangular wires allowed forces of approximately twice this magnitude. Elastic fatigue of the superelastic specimens "Memorywire", "Rematitan Lite", and "Sentalloy medium" showed up as hardening of the wire by up to 70%. Material degradation lead to a severe deformation of the hysteresis loop and to plastic deformation. Work-hardened martensitic NiTi wires did not show these effects to this extent.

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Year:  1994        PMID: 8023109

Source DB:  PubMed          Journal:  Schweiz Monatsschr Zahnmed        ISSN: 0256-2855


  2 in total

1.  Corrosion and permanent fracture resistance of coated and conventional orthodontic wires.

Authors:  P Neumann; C Bourauel; A Jäger
Journal:  J Mater Sci Mater Med       Date:  2002-02       Impact factor: 3.896

2.  Experimental analysis of torque characteristics of orthodontic wires.

Authors:  Samira Partowi; Ludger Keilig; Susanne Reimann; Andreas Jäger; Christoph Bourauel
Journal:  J Orofac Orthop       Date:  2010-10-21       Impact factor: 1.938

  2 in total

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