Bahia M G A, Martins R C, Gonzalez B M, Buono V T L
Department of Restorative Dentistry, Faculty of Dentistry, Federal University of Minas Gerais, Belo Horizonte, MG, Brazil.
Int Endod J. 2005 Nov;38(11):795-801. doi: 10.1111/j.1365-2591.2005.01016.x.
To analyse the influence of cyclic loading on the mechanical behaviour of nickel-titanium (NiTi) wires employed in the manufacture of ProFile rotary endodontic instruments.
Nickel-titanium wires, 1.2 mm in diameter, taken from the production line of ProFile rotary endodontic instruments before the final machining step, were tensile-tested to rupture in the as-received condition and after 100 load-unload cycles in the superelastic plateau (4% elongation). The wires were characterized by X-ray energy-dispersive spectroscopy, X-ray diffraction and by differential scanning calorimetry and compared with new size 30, .06 taper ProFile instruments. The fracture surfaces of the wires were observed by scanning electron microscopy.
The mechanical properties of the as-received wires, their chemical composition, the phases present and their transformation temperatures were consistent with their final application. Only small changes, which decreased after the first few cycles, took place in the mechanical properties of the cycled wires. The stress at maximum load and the plastic strain at breakage remained the same, while the critical stress for inducing the superelastic behaviour, which is related to the restoring force of the endodontic instruments, decreased by approximately 27%.
The mechanical behaviour of the NiTi wires was modified slightly by cyclic tensile loading in the superelastic plateau. As the changes tended towards stabilization, the clinical use of rotary NiTi ProFile instruments does not compromise their superelastic properties until they fracture by fatigue or torsional overload, or are otherwise discarded.
分析循环加载对用于制造ProFile旋转根管器械的镍钛(NiTi)丝力学行为的影响。
从ProFile旋转根管器械生产线中在最终加工步骤之前取出直径为1.2mm的镍钛丝,在接收状态下以及在超弹性平台(4%伸长率)进行100次加载-卸载循环后进行拉伸试验直至断裂。通过X射线能量色散光谱、X射线衍射以及差示扫描量热法对丝进行表征,并与新的30号、0.06锥度的ProFile器械进行比较。通过扫描电子显微镜观察丝的断裂表面。
接收状态下丝的力学性能、化学成分、存在的相及其转变温度与其最终应用一致。循环后的丝的力学性能仅发生了微小变化,且在前几个循环后有所降低。最大载荷下的应力和断裂时的塑性应变保持不变,而诱导超弹性行为的临界应力(与根管器械的回复力相关)降低了约27%。
在超弹性平台上的循环拉伸加载对NiTi丝的力学行为有轻微改变。由于这些变化趋于稳定,旋转NiTi ProFile器械的临床使用不会损害其超弹性性能,直到它们因疲劳或扭转过载而断裂或因其他原因被丢弃。