Hospital of Stomatology, Guanghua School of Stomatology, Sun Yat-sen University.
Guangdong Provincial Key Laboratory of Stomatology, Sun Yat-sen University.
Dent Mater J. 2021 Sep 30;40(5):1129-1135. doi: 10.4012/dmj.2020-358. Epub 2021 Jun 12.
This study evaluated the cyclic fatigue resistance for six types of 25# NiTi instruments. A traditional manufacturing instrument, an M wire instrument, a gold treatment instrument, a controlled memory (CM) wire instrument, a CM wire instrument with electrical discharge machining (EDM), and an R-phase heat treatment instrument, were operated in the different curved artificial canals. The fracture time (FT) and number of cycles to fracture (NCF) of the NiTi instruments were higher at 45° angles and double-curvature canals than at 60° angles. Except for the instruments with gold technology and EDM technology, others showed the longest FT and the highest NCF at an 8 mm radius of curvature. Morphological characteristics of cyclic fatigue were exhibited on the cross-section and lateral view of fracture fragments. The use of M-wire, R-phase wire, CM-wire, gold technology, EDM technology, and reciprocating movement were beneficial to enhance the cyclic fatigue resistance of NiTi files.
本研究评估了六种 25#NiTi 器械的循环疲劳抗力。对传统制造器械、M 丝器械、金处理器械、控制记忆(CM)丝器械、电火花加工(EDM)CM 丝器械和 R 相热处理器械在不同弯曲人工根管中进行操作。在 45°角和双曲率根管中,NiTi 器械的断裂时间(FT)和断裂循环次数(NCF)高于 60°角。除了具有金技术和 EDM 技术的器械外,其他器械在曲率半径为 8mm 时表现出最长的 FT 和最高的 NCF。循环疲劳的形态特征在断裂碎片的横截面和侧视图上表现出来。使用 M 丝、R 相丝、CM 丝、金技术、EDM 技术和往复运动有利于提高 NiTi 锉的循环疲劳抗力。