Agrawal Paridhi Rajesh, Chandak Manoj, Nikhade Pradnya Prashant, Patel Aditya Satyawansingh, Bhopatkar Jay Kailas
Department of Conservative Dentistry and Endodontics, DMIHER, Sharad Pawar Dental College and Hospital, Wardha, Maharashtra, India.
J Conserv Dent Endod. 2024 Feb;27(2):126-133. doi: 10.4103/JCDE.JCDE_248_23. Epub 2024 Feb 8.
Nickel-titanium (NiTi) instruments have become the backbone of endodontics due to their exceptional properties, superelasticity, and shape memory. However, challenges such as unexpected breakage, poor cutting efficiency, and corrosion have prompted researchers to explore innovative surface modifications to enhance their performance. This comprehensive review discusses the latest advancements in NiTi metallurgy and their impact on rotary NiTi file systems. Various surface treatment techniques, including ion implantation, cryogenic treatment (CT), thermal nitridation, electropolishing, and physical or chemical vapor deposition, have been investigated to minimize defects, boost surface hardness, and improve cyclic fatigue resistance. Ion implantation has shown promise by increasing wear resistance and cutting efficiency through nitrogen ion incorporation. Thermal nitridation has successfully formed titanium nitride (TiN) coatings, resulting in improved corrosion resistance and cutting efficiency. CT has demonstrated increased cutting efficiency and overall strength by creating a martensite transformation and finer carbide particles. Electropolishing has yielded mixed results, providing smoother surfaces but varying impacts on fatigue resistance. Physical or chemical vapor deposition has proven effective in forming TiN coatings, enhancing hardness and wear resistance. Furthermore, the concept of surface functionalization with silver ions for antibacterial properties has been explored. These advancements present an exciting future for endodontic procedures, offering the potential for enhanced NiTi instruments with improved performance, durability, and patient outcomes.
镍钛(NiTi)器械因其卓越的性能、超弹性和形状记忆功能,已成为牙髓病学的支柱。然而,诸如意外折断、切割效率低下和腐蚀等挑战促使研究人员探索创新的表面改性方法以提高其性能。这篇综述讨论了NiTi冶金学的最新进展及其对旋转NiTi锉系统的影响。人们研究了各种表面处理技术,包括离子注入、低温处理(CT)、热氮化、电解抛光以及物理或化学气相沉积,以减少缺陷、提高表面硬度并改善循环疲劳抗性。离子注入通过掺入氮离子提高耐磨性和切割效率,显示出了前景。热氮化成功形成了氮化钛(TiN)涂层,提高了耐腐蚀性和切割效率。CT通过产生马氏体转变和更细小的碳化物颗粒,提高了切割效率和整体强度。电解抛光的结果好坏参半,它能提供更光滑的表面,但对疲劳抗性的影响各不相同。物理或化学气相沉积已被证明能有效形成TiN涂层,提高硬度和耐磨性。此外,还探索了用银离子进行表面功能化以实现抗菌性能的概念。这些进展为牙髓治疗程序展现了令人兴奋的未来,有望开发出性能、耐用性和患者治疗效果更佳的NiTi器械。