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An analytical mechanical model to describe the response of NiTi rotary endodontic files in a curved root canal

机译:分析力学模型描述弯曲根管中NiTi旋转牙髓锉的响应

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摘要

Aim: To build a mathematical model describing the mechanical behavior of NiTi rotary files while they are rotating in a root canal. Methodology: The file was seen as a beam undergoing large transformations. The instrument was assumed to be rotating steadily in the root canal, and the geometry of the canal was considered as a known parameter of the problem. The formulae of large transformations mechanics then allowed the calculation of the Green-Lagrange strain field in the file. The non-linear mechanical behavior of NiTi was modeled as a continuous piecewise linear function, assuming that the material did not reach plastic deformation. Criteria locating the changes of behavior of NiTi were established and the tension field in the file, and the external efforts applied on it were calculated. The unknown variable of torsion was deduced from the equilibrium equation system using a Coulomb contact law which solved the problem on a cycle of rotation. Results: In order to verify that the model described well reality, three-point bending experiments were managed on superelastic NiTi wires, whose results were compared to the theoretical ones. It appeared that the model gave a good mentoring of the empirical results in the range of bending angles that interested us. Conclusions: Knowing the geometry of the root canal, one is now able to write the equations of the strain and stress fields in the endodontic instrument and to quantify the impact of each macroscopic parameter of the problem on its response. This should be useful to predict failure of the files under rotating bending fatigue, and to optimize the geometry of the files.
机译:目的:建立一个描述NiTi旋转锉在根管内旋转时的力学行为的数学模型。方法:该文件被视为经历了大转换的光束。假定器械在根管中稳定旋转,并且将根管的几何形状视为问题的已知参数。然后,大型转换力学公式可以计算文件中的Green-Lagrange应变场。假设材料未达到塑性变形,则将NiTi的非线性力学行为建模为连续的分段线性函数。建立了确定NiTi行为变化的准则,并确定了文件中的张力场,并计算了对其施加的外部作用。使用库仑接触定律从平衡方程组中推导出未知的扭转变量,该定律解决了旋转周期上的问题。结果:为了验证该模型能够很好地描述现实,在超弹性NiTi钢丝上进行了三点弯曲实验,并将其结果与理论值进行了比较。看来,该模型很好地指导了我们感兴趣的弯曲角度范围内的经验结果。结论:知道了根管的几何形状,现在可以在牙髓器械中编写应变和应力场方程,并量化问题的每个宏观参数对其响应的影响。这对于预测锉刀在旋转弯曲疲劳下的失效以及优化锉刀的几何形状很有用。

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  • 来源
    《Materials science & engineering》 |2012年第6期|p.1594-1600|共7页
  • 作者单位

    Department of Metallurgical and Materials Engineering, School of Engineering, Universidade Federal de Minas Cerais (UFMC), Belo Horizonte, MG, Brazil,Department of Mechanical and Materials Engineering, tcole des Ponts Paristech (ENPC), Champs-sur-Mame, France;

    Department of Restorative Dentistry, Faculty of Dentistry, Universidade Federal de Minas Cerais (UFMC), Belo Horizonte, MC, Brazil;

    Department of Mechanical and Materials Engineering, tcole des Ponts Paristech (ENPC), Champs-sur-Mame, France;

    Department of Metallurgical and Materials Engineering, School of Engineering, Universidade Federal de Minas Cerais (UFMC), Belo Horizonte, MG, Brazil,Department of Metallurgical and Materials Engineering,Universidade Federal de Minas Cerais, Av. Antonio Carlos, 6627, Campus Pampulha,Escola de Engenharia, Bloco 2, sala 2640, 31270-901 Belo Horizonte. MG, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    large transformations mechanics; rotary endodontic files; nickel-titanium alloys; superelasticity;

    机译:大型转换机制;旋转牙髓锉镍钛合金;超弹性;

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