首页> 外文期刊>Acta odontologica Scandinavica. >Effect of heat treatment on cyclic fatigue resistance, thermal behavior and microstructures of K3 NiTi rotary instruments
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Effect of heat treatment on cyclic fatigue resistance, thermal behavior and microstructures of K3 NiTi rotary instruments

机译:热处理对K3 NiTi旋转器械的抗循环疲劳性能,热行为和微观结构的影响

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摘要

Objective. The aim of this study was to investigate the effect of heat treatment on the cyclic fatigue resistance, thermal behavior and microstructural changes of K3 NiTi rotary instruments. Materials and methods. Twelve control (as-received) and 12 experimental (heat-treated) K3 NiTi rotary instruments were compared in this study. Those experimental K3 instruments were heated in a furnace for 30 min at 450°C and then quenched in water. The cyclic fatigue resistance was measured with a fatigue tester. The thermal characteristic and the microstructures of both instruments were investigated by differential scanning calorimetry (DSC) and transmission electron microscopy (TEM), respectively. Results. There was a significant increase in the cyclic fatigue resistance between the heat-treated instruments and the as-received instruments (T-test, p < 0.05). DSC showed that the as-received and heat-treated samples were different, with an increased Af (austenite-finish temperature) for the latter. TEM analysis revealed that both as-received and heat-treated instruments were composed mainly of an austenite phase. However, the heat-treated samples had an increased appearance of larger grains, twinning martensite, TiO2 surface layer and a Ni-rich inner layer. Conclusions. Heat treatment increased the cyclic fatigue resistance of NiTi files and changed the thermal behavior of the instruments without marked changes in the constituting phases of NiTi alloy.
机译:目的。这项研究的目的是研究热处理对K3 NiTi旋转仪器的抗循环疲劳性,热行为和微观结构变化的影响。材料和方法。在这项研究中比较了十二个对照(按原样)和12个实验性(热处理)K3 NiTi旋转仪。将那些实验性的K3仪器在炉中于450°C加热30分钟,然后在水中淬火。用疲劳测试仪测量抗循环疲劳性。分别通过差示扫描量热法(DSC)和透射电子显微镜(TEM)研究了两种仪器的热特性和微观结构。结果。热处理后的仪器与所接受的仪器之间的循环疲劳强度显着提高(T检验,p <0.05)。 DSC显示,接收到的样品和热处理后的样品不同,后者的Af(奥氏体完成温度)增加。 TEM分析表明,接受和热处理的仪器均主要由奥氏体相组成。但是,经热处理的样品具有较大晶粒,孪晶马氏体,TiO2表面层和富Ni内层的外观。结论热处理提高了NiTi锉的耐循环疲劳性,并改变了仪器的热性能,而NiTi合金的组成相没有明显变化。

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