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首页> 外文期刊>International endodontic journal >An in vitro assessment of the physical properties of novel Hyflex nickel-titanium rotary instruments
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An in vitro assessment of the physical properties of novel Hyflex nickel-titanium rotary instruments

机译:新型Hyflex镍钛旋转仪器的物理性能的体外评估

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Aim To determine several properties including torsional and fatigue limits, as well as torque during canal preparation, of Hyflex, a rotary instrument manufactured from so-called controlled memory nickel-titanium alloy. Methodology The instruments were tested in vitro using a special torque bench that permits both stationary torque tests according to ISO3630-1 and fatigue limit determination, as well as measurement of torque (in Ncm) and apical force (in N) during canal preparation. Fatigue limit (in numbers of cycles to failure) was determined in a 90°, 5mm radius block-and-rod assembly. Simulated canals in plastic blocks were prepared using both a manufacturer-recommended single-length technique as well as a generic crown-down approach. anova with Bonferroni post hoc procedures was used for statistical analysis. Results Torque at failure ranged from 0.47 to 1.38Ncm, with significant differences between instrument sizes (P<0.0001). Fatigue life ranged from 260 to 2565, with the shortest and longest lifespan for instruments size 20, .04 taper and size 25, .08 taper, respectively. Torque during canal preparation was significantly higher for small instruments used in the single-length technique but lower for the size 40, .04 taper, compared to a crown-down approach. No instrument fractured; 82% of the instruments used were plastically deformed; however, only 37% of these remained deformed after a sterilization cycle. Conclusions Hyflex rotary instruments are bendable and flexible and have similar torsional resistance compared to instruments made of conventional NiTi. Fatigue resistance is much higher, and torque during preparation is less, compared to other rotary instruments tested previously under similar conditions.
机译:目的为了确定Hyflex的几种特性,包括扭转极限和疲劳极限以及运河准备过程中的扭矩,Hyflex是一种由所谓的受控记忆镍钛合金制造的旋转器械。方法学该仪器使用特殊的扭矩台进行了体外测试,该扭矩台允许根据ISO3630-1进行固定扭矩测试和疲劳极限测定,以及在准备导管时测量扭矩(单位:Ncm)和顶力(单位:N)。疲劳极限(以失效周期数表示)是在90°,半径为5mm的块-杆组件中确定的。使用制造商推荐的单长度技术以及通用的向下弯曲法,可以在塑料砌块中模拟运河。采用Bonferroni事后程序进行的方差分析用于统计分析。结果失效时的扭矩范围为0.47至1.38Ncm,仪器尺寸之间存在显着差异(P <0.0001)。疲劳寿命从260到2565,范围分别为20、0.04锥度和25,.08锥度的最短和最长寿命。与冠向下法相比,单长度技术中使用的小型器械在运河准备过程中的扭矩显着较高,而对于40、0.04的锥度则较小。没有仪器破裂;使用的仪器中有82%发生塑性变形。但是,其中只有37%在灭菌周期后仍然变形。结论与传统的NiTi制成的仪器相比,Hyflex旋转仪器具有可弯曲和柔性的特性,并且具有相似的抗扭强度。与先前在类似条件下测试过的其他旋转器械相比,其抗疲劳性更高,制备过程中的扭矩更低。

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