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作者信息

Moreira Edson J L, Silva Emmanuel J N L, Belladonna Felipe G, Maciel Ana Carolina, Vieira Victor T L, De-Deus Gustavo

机构信息

Department of Endodontics; Fluminense Federal University (UFF); Niterói; RJ; Brazil.

出版信息

Braz Dent J. 2022 Jul-Aug;33(4):47-53. doi: 10.1590/0103-6440202204978.

Abstract

The present study aimed to perform two different heat-treatments in an austenitic NiTi ProFile instrument and to compare the mechanical performance of original and heat-treated instruments. Heat treatment of ProFile (tip size 25 and 0.06 taper) instruments were carried out in a furnace in argon atmosphere using a heating rate of 10° C/min. After reaching the programmed temperatures of 450 ºC or 500 ºC the system remained at a constant temperature for 10 minutes; followed by cooling in water at room temperature. Afterwards; the three groups (n=30 per group) of instruments were compared regarding their cyclic fatigue (n=10 per group); bending (n=10 per group); and buckling resistance (n=10 per group). After cyclic fatigue tests; a scanning electron microscope was used to analyze the fracture surfaces and observe the fracture mode. Statistical analysis was performed using One-way ANOVA and Student-Newman-Keuls test; with an alpha type error set at 0.05. Yellowish and blueish coloration was observed in the ProFile instruments after 450 ºC or 500 ºC heat treatments; respectively. Conventional ProFile instruments showed the lower cyclic fatigue; and the higher bending and buckling resistance (P<0.05). In contrast; yellowish ProFile instruments (heat treated at 500° C) showed the higher cyclic fatigue; and the lower bending and buckling resistance (P>0.05). It can be concluded that the different heat treatments performed on ProFile instruments increased its cyclic fatigue resistance and improved the flexibility and buckling resistance.

摘要

本研究旨在对奥氏体镍钛根管锉器械进行两种不同的热处理,并比较原始器械与热处理后器械的力学性能。对ProFile(尖端尺寸25和0.06锥度)器械在氩气气氛的炉中进行热处理,加热速率为10℃/分钟。达到450℃或500℃的设定温度后,系统保持恒温10分钟;随后在室温下用水冷却。之后,对三组器械(每组n = 30)进行循环疲劳(每组n = 10)、弯曲(每组n = 10)和抗屈曲性能(每组n = 10)的比较。循环疲劳试验后,使用扫描电子显微镜分析断口表面并观察断裂模式。采用单因素方差分析和Student-Newman-Keuls检验进行统计分析,α型错误设定为0.05。在450℃或500℃热处理后,ProFile器械分别观察到淡黄色和蓝色变色。传统ProFile器械显示出较低的循环疲劳,以及较高的弯曲和抗屈曲性能(P < 0.05)。相比之下,淡黄色ProFile器械(在500℃热处理)显示出较高的循环疲劳,以及较低的弯曲和抗屈曲性能(P > 0.05)。可以得出结论,对ProFile器械进行的不同热处理提高了其循环疲劳抗力,并改善了柔韧性和抗屈曲性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2165/9645189/7faa5150d4cc/1806-4760-bdj-33-04-47-gf1.jpg

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