Hayashi Kazuo, Araki Yoshima, Mizoguchi Itaru
Department of Orthodontics, School of Dentistry, Health Sciences University of Hokkaido, Ishikari-Tobetsu, Hokkaido, Japan.
Angle Orthod. 2004 Feb;74(1):112-7. doi: 10.1043/0003-3219(2004)074<0112:NLAOOW>2.0.CO;2.
The purposes of this study were (1) to measure the nonlinear force-deflection behavior of selected orthodontic wires using a conventional tensile test, (2) to extend a mathematical model for simulating the force system produced by orthodontic wires based on the small-deflection linear theory to the large-deflection nonlinear theory, and (3) to examine the effects of the cross-section and mechanical properties of orthodontic wires on nonlinear characteristics. A method for extending a mathematical model for simulating the force system produced by orthodontic wires based on the small-deflection linear theory to the large-deflection nonlinear theory was established, and this can provide a clear view of the true nature of orthodontic wires. Furthermore, our results demonstrated that the nonlinear properties of orthodontic wires were affected more by the cross-sectional shape than by mechanical properties.
(1)使用传统拉伸试验测量选定正畸钢丝的非线性力-挠度行为;(2)将基于小挠度线性理论模拟正畸钢丝产生的力系统的数学模型扩展到大挠度非线性理论;(3)研究正畸钢丝的横截面和力学性能对非线性特性的影响。建立了一种将基于小挠度线性理论模拟正畸钢丝产生的力系统的数学模型扩展到大挠度非线性理论的方法,这可以清晰地了解正畸钢丝的真实性质。此外,我们的结果表明,正畸钢丝的非线性特性受横截面形状的影响大于力学性能的影响。