Flexural properties of rectangular nickel-titanium orthodontic wires when used as ribbon archwires

Author:

Lin Li1,Currier G. Fräns2,Kadioglu Onur3,Florez Fernando L. Esteban4,Thompson David M5,Khajotia Sharukh S6

Affiliation:

1. Associate Professor, Department of Orthodontics, Fujian Medical University Union Hospital, Fuzhou, China

2. David Ross Boyd Professor and Chair, Department of Orthodontics, College of Dentistry, University of Oklahoma, Oklahoma City, Okla

3. Associate Professor and Program Director, Department of Orthodontics, College of Dentistry, University of Oklahoma, Oklahoma City, Okla

4. Assistant Professor, Department of Dental Materials, College of Dentistry, University of Oklahoma, Oklahoma City, Okla

5. Professor, Department of Biostatistics and Epidemiology, College of Public Health, University of Oklahoma, Oklahoma City, Okla

6. Professor and Chair, Department of Dental Materials, College of Dentistry, University of Oklahoma, Oklahoma City, Okla

Abstract

ABSTRACT Objective: To compare the flexural properties of rectangular nickel-titanium (Ni-Ti) orthodontic wires in occlusoapical and faciolingual orientations using a standardized test method. Materials and Methods: Twenty-two rectangular Ni-Ti wire groups were tested in occlusoapical (ribbon) orientation: eight conventional Ni-Ti products, five superelastic Ni-Ti products, and nine thermal Ni-Ti products (n = 10 per group). Six products of thermal Ni-Ti wire were tested in faciolingual (edgewise) orientation. A three-point bending test was performed to measure deactivation force at 3.0-, 2.0-, 1.0-, and 0.5-mm deflections of each rectangular wire at 37.0 ± 0.5°C. Analysis of variance and post hoc Student-Newman-Keuls tests were used to compare the mean values of the different groups (α = .05). Results: The ranges of deactivation forces varied greatly with different kinds, sizes, products, and deflections of Ni-Ti wires. One product of conventional and superelastic Ni-Ti wires had steeper force-deflection curves. Four products had similarly shaped flat force-deflection curves, whereas the sixth product had a moderately steep force-deflection curve. Thermal Ni-Ti wires had smaller deactivation forces ranging from 0.773 N (78.8 g) to 2.475 N (252.4 g) between deflections of 1.0 and 0.5 mm, whereas wider ranges of force from 3.371 N (343.7 g) to 9.343 N (952.7 g) were predominantly found among conventional Ni-Ti wires between deflections of 3.0 and 2.0 mm. Conclusions: Clinicians should critically select archwires for use in the occlusoapical orientation not only based on Ni-Ti wire type, size (0.022 × 0.016-in or 0.025 × 0.017-in), and product but also with deactivation deflections from 0.5 and 1.0 mm to obtain light forces in the occlusoapical orientation.

Publisher

The Angle Orthodontist (EH Angle Education & Research Foundation)

Subject

Orthodontics

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