Institute of Oral Medicine, National Cheng Kung University, Tainan, Taiwan, ROC.
Am J Orthod Dentofacial Orthop. 2011 Aug;140(2):166-76. doi: 10.1016/j.ajodo.2010.03.031.
For orthodontic applications, equiatomic nickel-titanium (NiTi) wires are used to level and align the teeth under bending conditions in the oral environment for long periods. The aim of study was to investigate the influence of bending stress on the nickel release of commercial NiTi orthodontic wires in vitro, simulating the intraoral environment as realistically as possible.
Two types of as-received orthodontic NiTi wires, free of performed internal stress, were immersed in artificial saliva. Half of the NiTi wires were exposed to continuous bending stress throughout the 14-day experimental period.
The stressed NiTi wires exhibited substantial increases in the nickel release compared with the unstressed specimens during all experimental periods. The highest dissolution rate during the 0 to 1 day incubation period was observed for all stressed specimens. However, a slight increase of nickel released as a function of time was observed in the 3 groups of stressed specimens after 3 days of immersion. For the stressed specimens, it was hypothesized that the bending stress would induce buckling or cracking of the protective oxide film of the NiTi wires. In this study, the mechanism of nickel release was the underlying metal surface reacting with the surrounding environment.
The results indicated that bending stress influences the nickel release of NiTi wires. The factor of loading condition with respect to corrosion behavior and passive film should be considered in view of the widespread use of NiTi wires for dental devices.
对于正畸应用,等原子镍钛(NiTi)丝用于在口腔环境中在弯曲条件下长时间拉直和对齐牙齿。本研究的目的是在体外模拟口腔环境,研究弯曲应力对商用正畸 NiTi 丝镍释放的影响。
将两种未经内部应力处理的接收型正畸 NiTi 丝浸入人工唾液中。NiTi 丝的一半在整个 14 天的实验期间暴露于持续的弯曲应力下。
与未受应力的标本相比,在所有实验期间,受应力的 NiTi 丝的镍释放量显著增加。所有受应力的标本在 0 至 1 天孵育期内的溶解率最高。然而,在浸泡 3 天后,受应力的 3 组标本的镍释放量略有增加。对于受应力的标本,假设弯曲应力会导致 NiTi 丝的保护性氧化膜产生屈曲或开裂。在这项研究中,镍释放的机制是基础金属表面与周围环境发生反应。
结果表明,弯曲应力会影响 NiTi 丝的镍释放。鉴于 NiTi 丝广泛用于牙科设备,应考虑加载条件这一因素对腐蚀行为和钝化膜的影响。