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Fatigue Behavior of Ni-Ti Alloy Endodontic Fifes under Ultrasonic Unconstrained Condition

机译:超声无约束条件下镍钛合金结源性五叠液的疲劳行为

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Nickel-titanium alloy are extensively used in engineering and biomedical fields for their excellent properties of shape-memory, super-elasticity and biocompatibility. Their fatigue performance has been attracted increasingly attention, because they are often used under cyclic conditions. In this paper, the ultrasonic fatigue behavior of nickel-titanium endodontic files under unconstrained condition has been studied using the self-designed ultrasonic fatigue testing equipment. The vibration and harmonious response properties of nickel-titanium endodontic files are also analyzed using finite element method. Experimental results show that the average ultrasonic fatigue life of nickel-titanium endodontic files under unconstrained conditions is more than 10 . Fracture of the files always occurred at the position about 2 -3 mm near the file tip. Results of finite element analysis show that the maximum stress of the nickel-titanium endodontic files located at the position about 2 -3 mm near the file tip, where is prone to generate fatigue cracks. The results of finite element analysis are consistent with the experimental results. The scanning electronic microscope (SEM) results show that the ultrasonic fatigue cracks always initiated at the surfaces of the files, where the secondary phases or impurities existed and induced fatigue cracks under repeated stress.
机译:镍钛合金广泛用于工程和生物医学领域,以实现形状记忆,超弹性和生物相容性的优异性能。他们的疲劳性能被吸引越来越受到关注,因为它们通常在循环条件下使用。本文采用自动设计的超声疲劳检测设备研究了无约束条件下镍钛胸腺末端文件的超声疲劳行为。使用有限元法分析镍钛牙髓缺陷症的振动和和谐反应性能。实验结果表明,在无约束条件下镍钛胸腺末端文件的平均超声疲劳寿命大于10。文件的骨折始终发生在文件提示附近约2 -3 mm的位置。有限元分析结果表明,位于文件尖端附近约2-3毫米的位置的镍 - 钛牙髓缺陷症的最大应力,在其中容易产生疲劳裂缝。有限元分析的结果与实验结果一致。扫描电子显微镜(SEM)结果表明,超声波疲劳裂缝总是在文件的表面处引发,其中二次相或杂质存在并在重复应力下诱导疲劳裂缝。

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