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首页> 外文期刊>International endodontic journal >Mechanical response of nickel-titanium instruments with different cross-sectional designs during shaping of simulated curved canals.
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Mechanical response of nickel-titanium instruments with different cross-sectional designs during shaping of simulated curved canals.

机译:模拟弯曲管成形过程中不同横截面设计的镍钛仪器的机械响应。

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AIM: To evaluate how different cross-sectional designs affect stress distribution in nickel-titanium (NiTi) instruments during bending, torsion and simulated shaping of a curved canal. METHODOLOGY: Four NiTi rotary instruments with different cross-sectional geometries were selected: ProFile and HeroShaper systems with a common triangle-based cross section, Mtwo with an S-shaped rectangle-based design and NRT with a modified rectangle-based design. The geometries of the selected files were scanned in a micro-CT and three-dimensional finite-element models were created for each system. Stiffness characteristics for each file system were determined in a series of bending and torsional conditions. Canal shaping was simulated by inserting models of the rotating file into a 45 degrees curved canal model. Stress distribution in the instruments was recorded during simulated shaping. After the instruments were retracted from the canal, residual stresses and permanent bending of their tips due to plastic deformation were determined. RESULTS: The greatest bending and torsional stiffness occurred in the NRT file. During simulated shaping, the instruments with triangle-based cross-sectional geometry had more even stress distributions along their length and had lower stress concentrations than the instruments with rectangle-based cross sections. Higher residual stresses and plastic deformations were found in the Mtwo and NRT with rectangle-based cross-sectional geometries. CONCLUSIONS: Nickel-titanium instruments with rectangle-based cross-sectional designs created higher stress differentials during simulated canal shaping and may encounter higher residual stress and plastic deformation than instruments with triangle-based cross sections.
机译:目的:评估在弯曲管的弯曲,扭转和模拟成形过程中,不同的横截面设计如何影响镍钛合金(NiTi)的应力分布。方法:选择了四种具有不同横截面几何形状的NiTi旋转仪器:ProFile和HeroShaper系统具有共同的基于三角形的横截面,Mtwo具有基于S形矩形的设计,而NRT具有经过改进的基于矩形的设计。所选文件的几何形状在Micro-CT中进行了扫描,并为每个系统创建了三维有限元模型。在一系列弯曲和扭转条件下确定每个文件系统的刚度特性。通过将旋转锉的模型插入45度弯曲的运河模型中来模拟运河成形。在模拟成形期间记录仪器中的应力分布。将器械从根管中拔出后,确定残余应力和由于塑性变形引起的尖端永久弯曲。结果:最大的弯曲和扭转刚度发生在NRT文件中。在模拟成形过程中,与基于矩形的横截面的器械相比,具有三角形横截面几何形状的器械沿其长度方向的应力分布更均匀,应力集中度更低。在具有矩形横截面几何形状的Mtwo和NRT中,发现较高的残余应力和塑性变形。结论:具有矩形截面设计的镍钛合金器械在模拟管成形过程中产生了更高的应力差,并且与基于三角形截面的器械相比,可能会遇到更高的残余应力和塑性变形。

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