Mechanical performance of original; yellowish and blueish ProFile instruments: isolating heat-treatment as a variable.

Q2 Medicine
Edson J L Moreira, Emmanuel J N L Silva, Felipe G Belladonna, Ana Carolina Maciel, Victor T L Vieira, Gustavo De-Deus
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引用次数: 1

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.

Abstract Image

Abstract Image

机械性能原装;微黄和微蓝型仪器:隔离热处理作为变量。
本研究的目的是在奥氏体NiTi ProFile仪器中进行两种不同的热处理,并比较原始和热处理仪器的机械性能。采用10°C/min的升温速率,在氩气气氛炉中对型材(尖端尺寸为25,锥度为0.06)进行热处理。在达到450ºC或500ºC的编程温度后,系统保持恒温10分钟;然后在室温的水中冷却。之后;比较三组仪器(n=30 /组)的循环疲劳(n=10 /组);弯曲(n=10 /组);抗屈曲能力(n=10 /组)。经循环疲劳试验;采用扫描电镜对断口表面进行分析,观察断口形态。统计分析采用单因素方差分析和Student-Newman-Keuls检验;alpha类型误差设置为0.05。450ºC或500ºC热处理后,在ProFile仪器中观察到黄色和蓝色;分别。常规剖面仪显示低周疲劳;抗弯曲、抗屈曲性能较高(P0.05)。结果表明,通过不同的热处理工艺,提高了型材的抗循环疲劳性能,提高了型材的柔韧性和抗屈曲性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Brazilian dental journal
Brazilian dental journal Dentistry-Dentistry (all)
CiteScore
2.20
自引率
0.00%
发文量
69
审稿时长
12 weeks
期刊介绍: Brazilian Dental Journal, publishes Full-Length Papers, Short Communications and Case Reports, dealing with dentistry or related disciplines and edited six times a year.
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