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Metallurgical analysis and fatigue resistance of WaveOne and ProTaper Nickel-Titanium instruments

机译:WaveOne和ProTaper镍钛仪器的冶金分析和抗疲劳性

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The aim of the study was to evaluate cyclic fatigue resistance of two NiTi instruments and to analyse their surface, fractographic and matrix morphology under ESEM/EDS and optical microscopy. WaveOne Primary and ProTaper Universal F2 brand new instruments were subjected to fatigue testing in an artificial canal with 5.0 mm radius and 60° angle of curvature. Seventy-two instruments were divided into three groups (n = 24), according to the selected kinematics: WaveOne using reciprocation (A); ProTaper using reciprocation (B) or rotation (C). Time to fracture was recorded. Data were analysed with ANOVA and Tukey test. ESEM/EDS analysis was conducted on new files to examine surface characteristics and on fractured fragments to identify the fractographic features. Metallographic analysis was performed with optical microscope on new instruments to evaluate alloy properties. Significant differences were found with Group A, which was statistically more resistant to cyclic fatigue (P < 0.05) than the other groups. Surface analysis of new instruments showed both in WaveOne and ProTaper files the presence of deep milling marks. ESEM fractographic analysis of WaveOne showed multiple crack origins with an area of fatigue propagation wider than ProTaper instruments, in which a single crack origin could be detected. EDS analysis confirmed the equiatomic NiTi composition. Metallographic analysis under optical microscope revealed in WaveOne instruments the presence of nano-crystalline martensitic grains embedded in austenite matrix, presence which could not be found in ProTaper files. WaveOne NiTi files revealed higher resistance to fatigue stress, suggesting extended working time in clinical applications.
机译:这项研究的目的是评估两种NiTi仪器的耐循环疲劳性,并在ESEM / EDS和光学显微镜下分析其表面,形貌和基质形态。 WaveOne Primary和ProTaper Universal F2品牌的新仪器在半径为5.0毫米,曲率角为60°的人工运河中进行了疲劳测试。根据所选的运动学,将七十二种乐器分为三组(n = 24):WaveOne使用往复运动(A); ProTaper使用往复(B)或旋转(C)。记录断裂时间。用ANOVA和Tukey检验分析数据。对新文件进行了ESEM / EDS分析,以检查表面特征,对断裂的碎片进行了识别,以识别形貌特征。用光学显微镜在新仪器上进行金相分析以评估合金性能。与A组相比,A组有显着差异,统计学上比其他组更耐循环疲劳(P <0.05)。新仪器的表面分析表明,在WaveOne和ProTaper文件中都存在深铣痕。 WaveOne的ESEM形貌分析显示,多个裂纹起点比ProTaper仪器的疲劳传播区域宽,在ProTaper仪器中,可以检测到单个裂纹起点。 EDS分析证实了等原子的NiTi组成。在光学显微镜下进行的金相分析显示,在WaveOne仪器中,奥氏体基质中嵌入了纳米晶马氏体晶粒,而ProTaper文件中找不到这种晶粒。 WaveOne NiTi文件显示出对疲劳应力的更高抵抗力,表明在临床应用中工作时间延长了。

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