Catholic University of Sacred Heart, Rome, Italy.
Sapienza University of Rome, Rome, Italy.
J Endod. 2017 Jul;43(7):1157-1160. doi: 10.1016/j.joen.2017.01.040. Epub 2017 May 2.
The aim of the present study was to analyze how a low environmental temperature can affect the fatigue life of instruments made by different types of heat-treated nickel-titanium alloys.
The flexural cyclic fatigue of 40 new specimens for each of the following systems was tested for cyclic fatigue resistance: ProTaper Universal F2 (Dentsply Maillefer, Ballaigues, Switzerland), ProTaper Gold F2 (Dentsply Tulsa Dental Specialties, Tulsa, OK), Twisted Files SM2 (SybronEndo, Orange, CA), Mtwo #25.06 (VDW, Munich, Germany), and Vortex Blue #30.04 and #40.06 (Dentsply Tulsa Dental Specialties). Instruments were tested at 2 different environmental temperatures: 20°C (±2°C) for room temperature (RT) group and -20°C (±2°C) for the cooled environment (CE) group (n = 20). The number of cycles to failure (NCF) and the length of the fractured fragment (FL) were recorded. The means and standard deviations of NCF and FL were then calculated; NCF data were statistically analyzed using a paired t test between groups RT and CE for each instrument tested (P < .05), whereas FL data were analyzed using analysis of variance (P < .05).
The mean NCF values measured were significantly higher for the CE groups than the RT groups in all the systems tested (P < .05). The increase in cyclic fatigue resistance varied from 274%-854%. No differences in FL were registered among the different groups (P < .05).
A low environmental temperature determines a drastic increase in the flexural fatigue resistance of NiTi endodontic instruments manufactured with traditional alloy and different heat treatments.
本研究旨在分析低温环境如何影响不同热处理镍钛合金制成的器械的疲劳寿命。
对以下系统的每种系统的 40 个新样本进行弯曲循环疲劳测试,以测试其抗循环疲劳性:ProTaper Universal F2(登士柏麦尔乐,Ballaigues,瑞士)、ProTaper Gold F2(登士柏图拉多牙科专用,塔尔萨,OK)、Twisted Files SM2(赛朋恩德,橙,CA)、Mtwo #25.06(VDW,慕尼黑,德国)和 Vortex Blue #30.04 和 #40.06(登士柏图拉多牙科专用)。器械在 2 种不同环境温度下进行测试:20°C(±2°C)为室温(RT)组,-20°C(±2°C)为冷却环境(CE)组(n=20)。记录失效循环数(NCF)和断裂片段长度(FL)。然后计算 NCF 和 FL 的平均值和标准差;使用配对 t 检验对每个测试器械的 RT 和 CE 组之间的 NCF 数据进行统计分析(P<0.05),而对 FL 数据则进行方差分析(P<0.05)。
在所有测试的系统中,CE 组的平均 NCF 值明显高于 RT 组(P<0.05)。循环疲劳阻力的增加幅度从 274%到 854%不等。不同组之间的 FL 没有差异(P<0.05)。
低温环境会导致传统合金和不同热处理的镍钛根管器械的弯曲疲劳阻力大幅增加。