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首页> 外文期刊>Journal of Materials Engineering and Performance >Mechanical Behavior of a NiTi Endodontic File During Insertion in an Anatomic Root Canal Using Numerical Simulations
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Mechanical Behavior of a NiTi Endodontic File During Insertion in an Anatomic Root Canal Using Numerical Simulations

机译:NiTi牙髓锉插入解剖根管过程中的力学行为数值模拟

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摘要

Superelastic NiTi shape memory alloys (SMA) have biomedical applications including rotary endodontic files. These alloys are used thanks to their flexibility, which is due to solid-solid martensitic transformation. Unfortunately, the intracanal file separation can occur during canal preparation. To avoid this problem and to have a good idea of the mechanical behavior of these instruments, finite elements simulations taking into account the real shape of root canals are proposed in this study. This is possible by using a well-adapted model describing all the particularities of SMA and representative limit conditions. The behavior model has been validated in previous studies under complex loadings. It is implemented in ABAQUS(A (R)) finite elements software. The anatomic shapes of root canals are extracted by microtomography using a real tooth. They are applied as limit conditions in realized simulations to be as near as possible to clinical conditions. The mechanical behavior of an endodontic file is then simulated during insertion in a root canal without and with rotation. This permits to obtain different information like the loading applied to the instrument during its use, the stress, and the phase transformation fields through the file. This is useful not only for clinical use but also for new NiTi endodontic instruments design.
机译:NiTi超弹性形状记忆合金(SMA)具有生物医学应用,包括旋转牙髓锉。这些合金的使用是由于它们的柔韧性,这是由于固-固马氏体相变所致。不幸的是,在根管准备期间会发生根管内锉分离。为避免出现此问题,并对这些器械的机械性能有一个很好的了解,本研究提出了一种考虑了根管实际形状的有限元模拟。这可以通过使用适应性强的模型来描述SMA的所有特殊性和代表性极限条件来实现。在先前的研究中已经验证了行为模型在复杂载荷下的行为。它在ABAQUS(A)有限元软件中实现。根管的解剖形状是使用真牙通过显微断层摄影术提取的。它们在实际模拟中被用作极限条件,以尽可能接近临床条件。然后在不旋转和不旋转的情况下在插入根管期间模拟牙髓锉的机械性能。这样可以获取不同的信息,例如在使用过程中施加到仪器的载荷,应力以及整个文件中的相变场。这不仅对临床用途有用,对于新的NiTi牙髓器械设计也很有用。

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