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热循环诱导应力对正畸镍钛丝性能的影响。

Effect of thermocycling-induced stress on properties of orthodontic NiTi wires.

作者信息

Huang Chih-Ling, Chang Chen-Jung, Chen Ken-Chung, Cheng Shu-Wen, Liu Jia-Kuang, Lee Tzer-Min

机构信息

Center for Fundamental Science, Kaohsiung Medical University, Kaohsiung, Taiwan.

Institute of Oral Medicine, National Cheng Kung University, Tainan, Taiwan.

出版信息

J Dent Sci. 2022 Oct;17(4):1788-1795. doi: 10.1016/j.jds.2022.07.017. Epub 2022 Aug 16.

Abstract

BACKGROUND/PURPOSE: In orthodontic applications, NiTi wires are under continuous bending stress and exposed to fluctuations in temperature over long durations. The sensitivity of NiTi to temperature can have a considerable influence on its mechanical properties. This study investigated the effects of deflected NiTi wire, presented in stress-induced (detwinned) martensite microstructure, combined with thermal cycle on the microstructure and mechanical properties.

MATERIALS AND METHODS

We tested four types of as-received orthodontic NiTi: (1) Nitinol Classic (3 M Unitek), (2) Sentalloy (Tomy), (3) 27 °C CuNiTi (Ormco) and (4) 40 °C CuNiTi (Ormco). Each group of specimens was subjected to three different testing conditions: (1) temperature fluctuations (5000 cycles) between 5 and 55 °C, (2) continuous three-point bending force and (3) combination of thermal cycling and bending stress.

RESULTS

The specimens that underwent thermocycling as well as loading exhibited a substantial narrowing in stress hysteresis, which may be attributed to crystallinity lower than that of as-received NiTi wires. Reduced crystallinity can manifest in a number of imperfections, such as dislocations and internal stress, as well as a less-organized structure. Micro X-ray diffraction (XRD) analysis revealed the existence of martensite phase in Sentalloy wires subject to thermal and stress conditions. Under loading conditions, stress-induced martensite of NiTi wires exposed to temperature fluctuations of 5-55 °C also induced cyclic changes in bending stress. In a simulated intra-oral environment, the stability of austenite↔martensite transformation decreased.

CONCLUSION

This study determined that bending stress in conjunction with repeated temperature fluctuations can greatly affect the microstructure and mechanical properties of NiTi wires.

摘要

背景/目的:在正畸应用中,镍钛丝承受持续的弯曲应力,并且长时间暴露于温度波动中。镍钛对温度的敏感性会对其力学性能产生相当大的影响。本研究调查了呈现应力诱发(去孪晶)马氏体微观结构的挠曲镍钛丝与热循环相结合对微观结构和力学性能的影响。

材料与方法

我们测试了四种正畸用镍钛丝:(1)Nitinol Classic(3M Unitek),(2)Sentalloy(登士柏西诺德),(3)27°C CuNiTi(奥美科)和(4)40°C CuNiTi(奥美科)。每组试样都经历三种不同的测试条件:(1)5至55°C之间的温度波动(5000个循环),(2)持续的三点弯曲力,以及(3)热循环和弯曲应力的组合。

结果

经历热循环以及加载的试样在应力滞后方面表现出显著变窄,这可能归因于结晶度低于未使用的镍钛丝。结晶度降低可表现为多种缺陷,如位错和内应力,以及结构组织性较差。微观X射线衍射(XRD)分析表明,在热和应力条件下,Sentalloy丝中存在马氏体相。在加载条件下,暴露于5 - 55°C温度波动的镍钛丝的应力诱发马氏体也引起弯曲应力的周期性变化。在模拟口腔环境中,奥氏体↔马氏体转变的稳定性降低。

结论

本研究确定弯曲应力与反复的温度波动相结合会极大地影响镍钛丝的微观结构和力学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56bd/9588828/88a254ad7bc7/gr1.jpg

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