Yahata Y, Yoneyama T, Hayashi Y, Ebihara A, Doi H, Hanawa T, Suda H
Pulp Biology and Endodontics, Department of Restorative Sciences, Graduate School, Tokyo Medical and Dental University, Tokyo, Japan.
Int Endod J. 2009 Jul;42(7):621-6. doi: 10.1111/j.1365-2591.2009.01563.x. Epub 2009 May 8.
To investigate the effect of heat treatment on the bending properties of nickel-titanium endodontic instruments in relation to their transformation behaviour.
Nickel-titanium super-elastic alloy wire (1.00 mm Ø) was processed into a conical shape with a 0.30 mm diameter tip and 0.06 taper. The heat treatment temperature was set at 440 or 500 degrees C for a period of 10 or 30 min. Nonheat-treated specimens were used as controls. The phase transformation behaviour was examined using differential scanning calorimetry. A cantilever-bending test was used to evaluate the bending properties of the specimens. Data were analyzed by ANOVA and the Tukey-Kramer test (P = 0.05).
The transformation temperature was higher for each heat treatment condition compared with the control. Two clear thermal peaks were observed for the heat treatment at 440 degrees C. The specimen heated at 440 degrees C for 30 min exhibited the highest temperatures for M(s) and A(f), with subsequently lower temperatures observed for specimens heated at 440 degrees C for 10 min, 500 degrees C for 30 min, 500 degrees C for 10 min, and control specimens. The sample heated at 440 degrees C for 30 min had the lowest bending load values (P < 0.05), both in the elastic range (0.5 mm deflection) and in the super-elastic range (2.0 mm deflection). The influence of heat treatment time was less than that of heat treatment temperature.
Change in the transformation behaviour by heat treatment may be effective in increasing the flexibility of nickel-titanium endodontic instruments.
研究热处理对镍钛根管器械弯曲性能及其相变行为的影响。
将镍钛超弹性合金丝(直径1.00 mm)加工成尖端直径0.30 mm、锥度0.06的锥形。热处理温度设定为440或500℃,持续10或30分钟。未热处理的标本用作对照。使用差示扫描量热法检查相变行为。采用悬臂弯曲试验评估标本的弯曲性能。数据通过方差分析和Tukey-Kramer检验进行分析(P = 0.05)。
与对照组相比,每种热处理条件下的转变温度都更高。在440℃热处理时观察到两个明显的热峰。在440℃加热30分钟的标本显示出M(s)和A(f)的最高温度,随后在440℃加热10分钟、500℃加热30分钟、500℃加热10分钟的标本以及对照标本中观察到较低的温度。在440℃加热30分钟的样品在弹性范围(0.5 mm挠度)和超弹性范围(2.0 mm挠度)内的弯曲载荷值最低(P < 0.05)。热处理时间的影响小于热处理温度的影响。
通过热处理改变相变行为可能有效地提高镍钛根管器械的柔韧性。