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Fatigue resistance of rotary instruments manufactured using different nickel-titanium alloys: A comparative study

机译:使用不同镍钛合金制造的旋转仪器的抗疲劳性:比较研究

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摘要

The aim of this study was to investigate whether cyclic fatigue resistance is increased for Controlled Memory (CM) Nickel-Titanium (NiTi) instruments, compared to instruments produced using traditional NiTi and instruments produced using M-Wire alloy. Two groups of NiTi endodontic instruments consisting of identical instrument sizes (constant 0.06 taper and 0.25 tip diameter and constant 0.04 taper and 0.40 tip diameter) were tested: group A compared Hyflex? CM, Vortex ? and ProFile ? size 25 and 0.06 taper and group B compared Hyflex? CM, Vortex? and ProFile? size 40 and 0.04 taper. 10 files from each different subgroup were tested for cyclic fatigue resistance. Mean and standard deviations of the Number of Cycles to Failure (NCF) were calculated for each group and data were statistically analysed (p < 0.05). Hyflex? CM instruments, size 25 and 0.06 taper, and size 40 and 0.04 taper, showed a significant increase in the mean number of cycles to failure when compared with size 25 and 0.06 taper Vortex? and ProFile?. No statistically significant difference (p > 0.05) was noted between Vortex? and ProFile? in the tested sizes. The new manufacturing process involving memory shape heat treatment produced new NiTi rotary files (Hyflex? CM) significantly more resistant to fatigue than instruments produced with other proprietary methods of treatment (Vortex?) and with the traditional NiTi grinding process (ProFile?).
机译:这项研究的目的是研究与使用传统NiTi生产的器械和使用M-Wire合金生产的器械相比,受控记忆(CM)镍钛(NiTi)器械的抗循环疲劳性能是否提高。测试了两组由相同器械尺寸(恒定的0.06锥度和0.25尖端直径以及恒定的0.04锥度和0.40的尖端直径)组成的NiTi牙髓器械:A组与Hyflex? CM,涡旋?和ProFile? 25号和0.06号锥度与B组比较Hyflex? CM,漩涡?和ProFile?尺寸40和0.04锥度。测试了来自每个不同亚组的10个文件的抗循环疲劳性。计算每组的失败次数(NCF)的平均值和标准差,并对数据进行统计分析(p <0.05)。 Hyflex?与尺寸25和0.06的锥度相比,尺寸为25和0.06的锥度以及尺寸为40和0.04锥度的CM仪器显示出平均故障循环数显着增加。和ProFile ?。在Vortex?之间没有发现统计学上的显着差异(p> 0.05)。和ProFile?在经过测试的尺寸中。涉及记忆形状热处理的新制造工艺生产的新型NiTi旋转锉刀(Hyflex?CM)比使用其他专有处理方法(Vortex?)和传统的NiTi磨削工艺(ProFile?)生产的器械具有更高的耐疲劳性。

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