Dr. Vishwanath Karad MIT-World Peace University (Formerly MIT Pune), Pune, Maharashtra, India.
Proc Inst Mech Eng H. 2023 Feb;237(2):233-242. doi: 10.1177/09544119221146617. Epub 2023 Jan 4.
The present work aims to evaluate the effect of various surface coatings of titanium dental implants by varying the friction coefficient (µ) at the interface between the dental implant and jawbone using finite element analysis (FEA) methods and to provide a comparative analysis between the various surface coatings and implant designs. An accurate model of the dental implant prosthetics consisting of the hard (cortical) and the soft (cancellous) bone, with the various titanium dental implant designs was modelled using a 3D CAD software, and the FE mesh model was generated using HyperMesh 13.0. Three coatings having different coefficient of friction values were selected: Titanium Nitride (TiN) with a friction coefficient of 0.19, Titanium Oxide (TiO) with a friction coefficient of 0.30 and Zirconium Nitride (ZrN) with a coefficient of friction of 0.49. The non-linear static stress analysis was conducted under three different loading conditions (vertical, lateral and oblique loading) using a CAE solver. The present study showed that surface coatings with high friction coefficients generated lower stresses in the cancellous bone while generating higher stresses in the cortical bone. However, for dental implants having microthreads in their neck region, surface coatings with a high coefficient of friction generated lower stresses at the interface between the cortical bone and the implant. The FEA results indicate that selecting suitable surface coatings would significantly decrease the stresses developed at the bone-implant interface, and future studies should conduct in vivo trials to validate the FEA results obtained.
本研究旨在通过有限元分析(FEA)方法改变钛牙科种植体与颌骨之间界面的摩擦系数(µ),评估各种钛牙科种植体表面涂层的效果,并对各种表面涂层和种植体设计进行比较分析。使用三维 CAD 软件对包括硬(皮质)骨和软(松质)骨在内的牙科种植体修复体的准确模型进行建模,使用 HyperMesh 13.0 生成 FE 网格模型。选择了三种具有不同摩擦系数值的涂层:摩擦系数为 0.19 的氮化钛(TiN)、摩擦系数为 0.30 的氧化钛(TiO)和摩擦系数为 0.49 的氮化锆(ZrN)。在三种不同的加载条件(垂直、侧向和斜向加载)下,使用 CAE 求解器进行非线性静态应力分析。本研究表明,具有高摩擦系数的表面涂层在松质骨中产生较低的应力,而在皮质骨中产生较高的应力。然而,对于颈部区域具有微螺纹的牙科种植体,具有高摩擦系数的表面涂层在皮质骨和种植体之间的界面处产生较低的应力。FEA 结果表明,选择合适的表面涂层会显著降低骨-种植体界面处产生的应力,未来的研究应进行体内试验来验证所获得的 FEA 结果。