首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Cyclic fatigue testing and metallographic analysis of nickel-titanium rotary instruments.
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Cyclic fatigue testing and metallographic analysis of nickel-titanium rotary instruments.

机译:镍钛旋转仪器的循环疲劳测试和金相分析。

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INTRODUCTION: The aim of this study was to compare cyclic fatigue resistance of four nickel-titanium rotary systems and to evaluate their surface, fractographic, and matrix morphology. METHODS: Four models of endodontic rotary files (EasyShape [Komet/Gebr. Brasseler, Lemgo, Germany], ProTaper [Dentsply Maillefer, Ballaigues, Switzerland], NRT [MANI Inc, Toshigi-Ken, Japan], and AlphaKite [Komet/Gebr. Brasseler]) were subjected to fatigue testing in artificial canals with angle of curvature of 45 degrees and 60 degrees and a radius of curvature of 5 mm until fracture occurred. Nickel-titanium (NiTi) alloy properties were investigated by light microscopy, environmental scanning electron microscopy (ESEM), and energy dispersive x-ray spectrophotometry (EDS). ESEM analysis was conducted on new files to examine surface characteristics and on fractured samples to identify the crack origin and the fractographic features. RESULTS: Analysis of variance testing revealed significant differences (P < .001) among the groups. NRT files had the highest fatigue resistance followed by AlphaKite, EasyShape, and ProTaper. All the new files presented surface imperfections. Fractographic analysis found the crack initiation to originate at the level of surface irregularities. Optical microscope inspection of the NiTi alloy matrix disclosed different-sized nonmetallic inclusions among models. EDS analysis of these inclusions showed that they were composed of carbon and oxygen in addition to nickel and titanium. Under light microscopy, austenitic grains appeared larger near the handle and smaller near the tip in all instruments. CONCLUSIONS: NRT files presented the longest fatigue life. All samples showed surface irregularities and nonmetallic inclusions. Austenitic grains were smaller near the tip than near the handle. The angle of curvature was confirmed to influence the fatigue life of NiTi instruments.
机译:引言:本研究的目的是比较四个镍钛旋转系统的抗循环疲劳性,并评估其表面,形貌和基质形态。方法:四种模型的牙髓旋转锉(EasyShape [Komet / Gebr。Brasseler,Lemgo,德国],ProTaper [Dentsply Maillefer,Ballaigues,瑞士],NRT [MANI Inc,日本Toshigi-Ken,日本]和AlphaKite [Komet / Gebr [Brasseler])在曲率角分别为45度和60度,曲率半径为5 mm的人造运河中进行疲劳测试,直到发生断裂。通过光学显微镜,环境扫描电子显微镜(ESEM)和能量色散X射线分光光度法(EDS)研究了镍钛(NiTi)合金的性能。在新文件上进行了ESEM分析,以检查表面特征,并在断裂样品上进行了分析,以确定裂纹的起源和断裂特征。结果:方差检验的分析显示各组之间存在显着差异(P <.001)。 NRT文件具有最高的抗疲劳性,其次是AlphaKite,EasyShape和ProTaper。所有新文件都存在表面缺陷。分形分析发现裂纹萌生起源于表面不规则度。 NiTi合金基体的光学显微镜检查揭示了模型之间尺寸不同的非金属夹杂物。对这些夹杂物的EDS分析表明,它们除镍和钛外还由碳和氧组成。在光学显微镜下,在所有仪器中,奥氏体晶粒在手柄附近显得较大,而在尖端附近则较小。结论:NRT文件具有最长的疲劳寿命。所有样品均显示表面不规则和非金属夹杂物。尖端附近的奥氏体晶粒小于柄部附近的晶粒。确定曲率角会影响NiTi仪器的疲劳寿命。

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