首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Fracture resistance of electropolished rotary nickel-titanium endodontic instruments.
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Fracture resistance of electropolished rotary nickel-titanium endodontic instruments.

机译:电抛光的旋转镍钛牙髓器械的抗断裂性。

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The purpose of this study was to investigate the effect of electropolishing on cyclic flexural fatigue and torsional strength of rotary nickel-titanium endodontic instruments. Electropolished and nonelectropolished ISO size 30 (0.04 taper) EndoWave (J Morita Corporation, Osaka, Japan), ProFile (Dentsply Maillefer, Ballaigues, Switzerland), and RaCe (FKG, La-Chaux De Fonds, Switzerland) instruments from the same manufacturing batches were investigated. The number of rotations to fracture and torque at fracture were determined and compared among the instruments tested. Instruments were viewed under a scanning electron microscope (SEM) to assess the degree and quality of electropolishing. Overall, electropolished instruments performed significantly better than nonelectropolished instruments in cyclic fatigue testing and, to a lesser extent, in static torsional loading. When viewing electropolished instruments with the SEM, milling grooves, cracks, pits, and areas of metal rollover were observed, although they were more evident in the nonelectropolished instruments. Electropolishing may have beneficial effects in prolonging the fatigue life of rotary NiTi endodontic instruments. The benefits of electropolishing are likely to be caused by a reduction in surface irregularities that serve as points for stress concentration and crack initiation.
机译:这项研究的目的是研究电抛光对旋转镍钛牙髓器械的周期性弯曲疲劳和抗扭强度的影响。电抛光和非电抛光ISO尺寸30(0.04锥度)的EndoWave(J.Morita Corporation,日本大阪),ProFile(Dentsply Maillefer,瑞士Ballaigues)和RaCe(FKG,La Chaux De Fonds,瑞士)仪器来自同一批生产。被调查了。确定断裂的转数和断裂时的扭矩,并在测试的仪器之间进行比较。在扫描电子显微镜(SEM)下观察仪器,以评估电抛光的程度和质量。总体而言,电抛光仪器在循环疲劳测试中的性能显着优于非电抛光仪器,并且在较小的静态扭转载荷下的性能要好于非电抛光仪器。当使用SEM观察电抛光仪器时,尽管在非电抛光仪器中更明显,但仍观察到铣槽,裂纹,凹坑和金属翻转区域。电抛光在延长旋转NiTi牙髓器械的疲劳寿命方面可能具有有益的作用。电抛光的好处很可能是由于减少了表面不规则性而引起的,这些不规则性是应力集中和裂纹萌生的关键。

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