Pulp Biology and Endodontics, Department of Restorative Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, Tokyo, Japan.
Int Endod J. 2012 May;45(5):462-8. doi: 10.1111/j.1365-2591.2011.01997.x. Epub 2011 Dec 23.
To investigate the effect of cyclic fatigue on nickel-titanium (NiTi) endodontic instruments using a nano-indentation test.
Eight ProFile NiTi rotary instruments (size 30, taper 0.06; Dentsply Maillefer, Ballaigues, Switzerland) were tested using a cyclic fatigue set-up until fracture. The fractured instruments and eight new NiTi instruments of the same size and taper were used for a nano-indentation test on the internal surfaces of a NiTi instruments in the region just adjacent to their fractured edge (group I) and in the same region of the new group (group II), and the cutting part beside the shaft for both instruments [group III (fractured) and group IV (new)]. Data were statistically analyzed using one-way analysis of variance and Games-Howell post hoc test. The alpha-type error was set at 0.05.
Significant differences in terms of hardness and elastic modulus for each group (P < 0.05) were found, with group I having the lowest mean values followed by group III. Additionally, standard deviations increased remarkably after failure, as represented by groups I and III.
The nano-indentation technique can be applied to determine the performance and the failure mechanism of NiTi instruments. The fatigue process revealed a significant decrease in the hardness and elastic modulus of the NiTi instrument. As indicated by the low hardness, the fatigue process did not result in work hardening but rather work softening.
使用纳米压痕试验研究镍钛(NiTi)根管器械的循环疲劳对其的影响。
使用循环疲劳设备对 8 根 ProFile NiTi 旋转器械(尺寸 30,锥度 0.06;Dentsply Maillefer,Ballaigues,瑞士)进行测试,直至断裂。将断裂的器械和 8 根相同尺寸和锥度的新 NiTi 器械用于对其断裂边缘附近的器械内部表面(第 I 组)和新器械同一区域(第 II 组)以及器械轴旁的切削部分[第 III 组(断裂)和第 IV 组(新)]进行纳米压痕测试。使用单向方差分析和 Games-Howell 事后检验对数据进行统计分析。误差类型设为 0.05。
每组的硬度和弹性模量均有显著差异(P < 0.05),其中第 I 组的平均值最低,其次是第 III 组。此外,失效率后标准偏差显著增加,表现为第 I 组和第 III 组。
纳米压痕技术可用于确定 NiTi 器械的性能和失效机制。疲劳过程导致 NiTi 器械的硬度和弹性模量显著降低。疲劳过程并未导致加工硬化,而是表现出加工软化,这表明硬度较低。