Silva Emmanuel J N L, Lorenzoni Tereza Vitória Mauri, Pereira Mylena do Rosário, Vieira Victor T L, Martins Jorge N R, Ferndandes Francisco Manuel Braz, Versiani Marco A
School of Dentistry, Grande Rio University (UNIGRANRIO), Rio de Janeiro, Brazil.
Department of Endodontics, Rio de Janeiro State University, Rio de Janeiro, Brazil.
Int Endod J. 2025 Aug;58(8):1257-1266. doi: 10.1111/iej.14253. Epub 2025 May 14.
This study aimed to evaluate the impact of diamond-like carbon (DLC) surface treatment on the mechanical properties of nickel-titanium (NiTi) rotary instruments.
One hundred and ten nickel-titanium instruments with a size of 25/.06 and a length of 25 mm, both with (n = 55) and without (n = 55) a DLC coating were selected and compared regarding their design (stereomicroscopy, scanning electron microscopy), metallurgy (energy-dispersive X-ray spectroscopy, differential scanning calorimetry), and mechanical performance (time to fracture, bending strength, buckling strength, cutting efficiency, and microhardness). Data were analysed using Mann-Whitney and independent Student's t-test (α = 5%).
The design analysis confirmed that both instruments had identical geometric features, similar spiral and tip designs, with DLC-coated instruments showing fewer surface irregularities and a multi-coloured appearance. Metallurgical analysis revealed identical transformation temperatures for both groups, with the R-phase starting at ~32°C, finishing at ~25°C during cooling, and the austenitic finish occurring at ~35°C. DLC-coated instruments demonstrated significantly superior cyclic fatigue resistance (p = 0.0028), lower bending load (p = 0.0294), lower cutting efficiency (p < 0.0001), and higher microhardness (p = 0.0019), whilst no difference was observed in terms of buckling strength (p = 0.3569).
Diamond-like carbon surface treatment significantly enhanced cyclic fatigue resistance, flexibility, and microhardness of NiTi rotary instruments without compromising their structural integrity.
本研究旨在评估类金刚石碳(DLC)表面处理对镍钛(NiTi)旋转器械力学性能的影响。
选取110根尺寸为25/.06、长度为25毫米的镍钛器械,其中55根有DLC涂层(n = 55),55根无DLC涂层(n = 55),对其设计(立体显微镜、扫描电子显微镜)、冶金学(能量色散X射线光谱、差示扫描量热法)和力学性能(断裂时间、弯曲强度、屈曲强度、切削效率和显微硬度)进行比较。使用Mann-Whitney检验和独立样本t检验分析数据(α = 5%)。
设计分析证实,两种器械具有相同的几何特征、相似的螺旋和尖端设计,有DLC涂层的器械表面不规则处较少,外观呈多色。冶金分析显示两组的转变温度相同,R相在冷却过程中起始温度约为32°C,结束温度约为25°C,奥氏体结束温度约为35°C。有DLC涂层的器械在循环疲劳抗力方面显著更优(p = 0.0028),弯曲载荷更低(p = 0.0294),切削效率更低(p < 0.0001),显微硬度更高(p = 0.0019),而在屈曲强度方面未观察到差异(p = 0.3569)。
类金刚石碳表面处理显著提高了NiTi旋转器械的循环疲劳抗力、柔韧性和显微硬度,且不影响其结构完整性。