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超弹性镍钛正畸丝的有限元建模

Finite element modeling of superelastic nickel-titanium orthodontic wires.

作者信息

Naceur Ines Ben, Charfi Amin, Bouraoui Tarak, Elleuch Khaled

出版信息

J Biomech. 2014 Nov 28;47(15):3630-8. doi: 10.1016/j.jbiomech.2014.10.007.

DOI:10.1016/j.jbiomech.2014.10.007
PMID:25458153
Abstract

Thanks to its good corrosion resistance and biocompatibility, superelastic Ni–Ti wire alloys have been successfully used in orthodontic treatment. Therefore, it is important to quantify and evaluate the level of orthodontic force applied to the bracket and teeth in order to achieve tooth movement. In this study, three dimensional finite element models with a Gibbs-potential-based-formulation and thermodynamic principles were used. The aim was to evaluate the influence of possible intraoral temperature differences on the forces exerted by NiTi orthodontic arch wires with different cross sectional shapes and sizes. The prediction made by this phenomenological model, for superelastic tensile and bending tests, shows good agreement with the experimental data. A bending test is simulated to study the force variation of an orthodontic NiTi arch wire when it loaded up to the deflection of 3 mm, for this task one half of the arch wire and the 3 adjacent brackets were modeled. The results showed that the stress required for the martensite transformation increases with the increase of cross-sectional dimensions and temperature. Associated with this increase in stress, the plateau of this transformation becomes steeper. In addition, the area of the mechanical hysteresis, measured as the difference between the forces of the upper and lower plateau, increases.

摘要

由于具有良好的耐腐蚀性和生物相容性,超弹性镍钛丝合金已成功应用于正畸治疗。因此,为了实现牙齿移动,量化和评估施加在托槽和牙齿上的正畸力水平非常重要。在本研究中,使用了基于吉布斯势公式和热力学原理的三维有限元模型。目的是评估口腔内可能存在的温度差异对不同横截面形状和尺寸的镍钛正畸弓丝所施加力的影响。该唯象模型对超弹性拉伸和弯曲试验的预测与实验数据显示出良好的一致性。模拟了一个弯曲试验,以研究正畸镍钛弓丝在加载至3 mm挠度时的力变化,为此对弓丝的一半和3个相邻托槽进行了建模。结果表明,马氏体相变所需的应力随着横截面尺寸和温度的增加而增加。伴随着这种应力的增加,该相变的平台变得更陡。此外,以上下平台力之差衡量的机械滞后面积增加。

相似文献

1
Finite element modeling of superelastic nickel-titanium orthodontic wires.超弹性镍钛正畸丝的有限元建模
J Biomech. 2014 Nov 28;47(15):3630-8. doi: 10.1016/j.jbiomech.2014.10.007.
2
Force delivery of NiTi orthodontic arch wire at different magnitude of deflections and temperatures: A finite element study.不同变形程度和温度下的 NiTi 正畸弓丝的强制输送:有限元研究。
J Mech Behav Biomed Mater. 2018 Jan;77:234-241. doi: 10.1016/j.jmbbm.2017.09.021. Epub 2017 Sep 18.
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Stiffness and frictional resistance of a superelastic nickel-titanium orthodontic wire with low-stress hysteresis.具有低应力滞后的超弹性镍钛正畸丝的刚度和摩擦阻力
Am J Orthod Dentofacial Orthop. 2007 May;131(5):578.e12-8. doi: 10.1016/j.ajodo.2006.08.015.
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Influence of stress and phase on corrosion of a superelastic nickel-titanium orthodontic wire.应力和相态对超弹性镍钛正畸丝腐蚀的影响。
Am J Orthod Dentofacial Orthop. 2009 Jun;135(6):764-70. doi: 10.1016/j.ajodo.2007.04.042.
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Load-deflection characteristics of superelastic and thermal nickel-titanium wires.超弹性和热镍钛丝的载荷-挠度特性。
Eur J Orthod. 2013 Feb;35(1):115-23. doi: 10.1093/ejo/cjr103. Epub 2011 Oct 23.
6
Influence of bracket-slot design on the forces released by superelastic nickel-titanium alignment wires in different deflection configurations.托槽槽沟设计对超弹性镍钛排齐丝在不同弯曲形态下释放力的影响。
Angle Orthod. 2014 May;84(3):541-7. doi: 10.2319/060213-416.1. Epub 2013 Sep 25.
7
Temperature- and deflection- dependences of orthodontic force with Ni-Ti wires.镍钛丝正畸力与温度及挠度的关系
Dent Mater J. 2003 Jun;22(2):146-59. doi: 10.4012/dmj.22.146.
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Evolution of flexural rigidity according to the cross-sectional dimension of a superelastic nickel titanium orthodontic wire.超弹性镍钛正畸丝的弯曲刚度随横截面尺寸的变化
Eur J Orthod. 2005 Aug;27(4):402-7. doi: 10.1093/ejo/cji014.
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Orthodontic buccal tooth movement by nickel-free titanium-based shape memory and superelastic alloy wire.使用无镍钛基形状记忆和超弹性合金丝进行正畸颊侧牙齿移动。
Angle Orthod. 2006 Nov;76(6):1041-6. doi: 10.2319/083105-306.
10
The effect of short-term temperature changes on superelastic nickel-titanium archwires activated in orthodontic bending.短期温度变化对正畸弯曲中激活的超弹性镍钛弓丝的影响。
Am J Orthod Dentofacial Orthop. 2001 Mar;119(3):263-73. doi: 10.1067/mod.2001.112451.

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