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用于镍钛旋转器械的直接转矩控制电机的准确性。

Accuracy of the DTC torque control motor for nickel-titanium rotary instruments.

作者信息

Yared G, Kulkarni G K

机构信息

Department of Endodontics, Faculty of Dentistry, University of Toronto, Toronto, Ontario, Canada.

出版信息

Int Endod J. 2004 Jun;37(6):399-402. doi: 10.1111/j.1365-2591.2004.00824.x.

Abstract

AIM

To determine the torque output and examine the accuracy of five identical DTC torque control (DTC) motors.

METHODOLOGY

Torque settings on the DTC motors for the.04 ISO ProFile nickel-titanium (NiTi) rotary instruments were evaluated at 350 r.p.m. A modification of the ANSI/ADA Specification No. 28 setup for the evaluation of torsional properties of endodontic instruments was used. A handpiece was attached to the motor and gripped with a vice. An.07 Orifice Shaper, size 50, was inserted in the handpiece. The instrument tip was clamped in a chuck connected to a torque sensor. The motor was then activated to rotate the instrument in a clockwise direction until reversal of the rotation occurred. The actual torque generated at the reversal of the rotation was recorded. Ten tests were carried out at each torque setting. A new Orifice Shaper was used for each test. The means of the actual torque values generated by the motors at the different torque settings were compared with the torque values claimed by the manufacturer and analysed using analysis of variance and the Student's t-test (alpha = 0.05).

RESULTS

The actual torque values were significantly higher than the torque preset on the motors (P < 0.0001) and did not differ significantly among the motors (P > 0.05).

CONCLUSIONS

The actual torque deviated from the preset torque and was higher than the reported torque at fracture of several NiTi rotary instruments. The usefulness of these motors is questionable.

摘要

目的

测定五台相同的直接转矩控制(DTC)电机的转矩输出,并检验其准确性。

方法

在350转/分钟的转速下,对用于.04 ISO ProFile镍钛(NiTi)旋转器械的DTC电机的转矩设置进行评估。采用了对ANSI/ADA第28号规范设置的一种修改形式,用于评估牙髓器械的扭转性能。将一个机头连接到电机上,并用虎钳夹住。将一支尺寸为50的.07号扩孔钻插入机头。器械尖端夹在连接到扭矩传感器的卡盘上。然后启动电机,使器械沿顺时针方向旋转,直到旋转方向反转。记录旋转反转时产生的实际扭矩。在每个转矩设置下进行十次测试。每次测试使用一个新的扩孔钻。将电机在不同转矩设置下产生的实际转矩值的平均值与制造商声称的转矩值进行比较,并使用方差分析和学生t检验进行分析(α = 0.05)。

结果

实际转矩值显著高于电机上预设的转矩(P < 0.0001),且各电机之间无显著差异(P > 0.05)。

结论

实际转矩与预设转矩存在偏差,且高于几种镍钛旋转器械断裂时报告的转矩。这些电机的实用性值得怀疑。

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