Srivastava Sambhrant, Sarangi Saroj Kumar
Int J Oral Maxillofac Implants. 2023 Jan-Feb;38(1):142-149. doi: 10.11607/jomi.9785.
To develop, analyze, and optimize a dental implant by considering square threads and varying the thread dimensions to obtain an optimal shape. For this study, finite element analysis (FEA) and numerical optimization method were integrated to develop a mathematical model. The critical parameters of dental implants were studied, and an optimized shape was obtained using response surface method (RSM) and design of experiment (DOE). The simulated results were then compared to the predicted values under optimal conditions. Using the one-factor RSM design model for the dental implant and a vertical compressive load of 450 N for testing, the optimal depth to width ratio for the thread was 0.7 in order to achieve the minimum von Mises and shear stress. The buttress thread was found to be the optimal shape for achieving the lowest von Mises and shear stress compared to square threads, and the thread parameters were calculated accordingly, with a thread depth 0.45 times the pitch, a width 0.3 times the pitch, and a thread angle of 17 degrees. Also, due to the constant diameter of the implant, common 4-mm diameter abutments can be used interchangeably.
通过考虑方形螺纹并改变螺纹尺寸来开发、分析和优化牙科种植体,以获得最佳形状。在本研究中,将有限元分析(FEA)和数值优化方法相结合来建立数学模型。研究了牙科种植体的关键参数,并使用响应面法(RSM)和实验设计(DOE)获得了优化形状。然后将模拟结果与最佳条件下的预测值进行比较。使用针对牙科种植体的单因素RSM设计模型和450 N的垂直压缩载荷进行测试,为了使冯·米塞斯应力和剪应力最小,螺纹的最佳深宽比为0.7。与方形螺纹相比,发现支撑螺纹是实现最低冯·米塞斯应力和剪应力的最佳形状,并据此计算了螺纹参数,螺纹深度为螺距的0.45倍,宽度为螺距的0.3倍,螺纹角为17度。此外,由于种植体直径恒定,常见的4毫米直径基台可以互换使用。