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Torsion Property and Cyclic Fatigue Fracture Behavior of Nickel-Titanium Endodontic Instruments

机译:镍钛牙髓器械的扭转性能和循环疲劳断裂行为

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摘要

The torsion property and rotary fatigue fracture behavior of Smart® K file and R reamer made of nickel titanium alloy have been studied by means of Shimadzu Autograph DDS-10T universal tester and man-made cyclic system with curved copper tubes as simulated root canal. The instrument surface and the cyclic fatigue fracture surface have been investigated by optical microscope and scanning electron microscope. Comparing with ANSI/ADA specification no.28, maximum torsion values of both Smart® K and R endodontic instruments are satisfied in practice. Tensile stresses on the outer surface of the endodontic instruments play a dominant role in fracture initiation during cyclic fatigue fracture. The cyclic number corresponding to cyclic fatigue fracture decreases with the increase of the instrument size number/ curvature. Smart® K- and R endodontic instruments exhibit good ductility characteristics, therefore superior resistance to fracture.
机译:利用Shimadzu Autograph DDS-10T万能测试仪和以弯曲铜管为模拟根管的人造循环系统,研究了镍钛合金制成的Smart®K锉和R铰刀的扭转性能和旋转疲劳断裂行为。通过光学显微镜和扫描电子显微镜研究了器械表面和循环疲劳断裂表面。与ANSI / ADA规范No.28相比,Smart®K和R牙髓器械的最大扭转值在实践中均得到满足。牙髓器械外表面上的拉伸应力在周期性疲劳断裂过程中的断裂起始中起主要作用。随着器械尺寸数/曲率的增加,对应于循环疲劳断裂的循环数减少。 Smart®K-和R牙髓器械具有良好的延展性,因此具有出色的抗断裂性能。

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