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INTEGRA牙科种植系统的有限元分析与疲劳测试

Finite Element Analysis and Fatigue Test of INTEGRA Dental Implant System.

作者信息

Zieliński Rafał, Lipa Sebastian, Piechaczek Martyna, Sowiński Jerzy, Kołkowska Agata, Simka Wojciech

机构信息

Stomatologia na Ksiezym Mlynie, 16 D Tymienieckiego, 90-365 Lodz, Poland.

Institute of Materials Science and Engineering, Lodz University of Technology, 90-924 Lodz, Poland.

出版信息

Materials (Basel). 2024 Mar 6;17(5):1213. doi: 10.3390/ma17051213.

Abstract

The study involved numerical FEA (finite element analysis) of dental implants. Based on this, fatigue tests were conducted according to the PN-EN 14801 standard required for the certification of dental products. Thanks to the research methodology developed by the authors, it was possible to conduct a thorough analysis of the impact of external and internal factors such as material, geometry, loading, and assembly of the dental system on the achieved value of fatigue strength limit in the examined object. For this purpose, FEM studies were based on identifying potential sites of fatigue crack initiation in reference to the results of the test conducted on a real model. The actions described in the study helped in the final evaluation of the dental system design process named by the manufacturer as INTEGRA OPTIMA 3.35. The objective of the research was to identify potential sites for fatigue crack initiation in a selected dental system built on the INTEGRA OPTIMA 3.35 set. The material used in the research was titanium grade 4. A map of reduced von Mises stresses was used to search for potential fatigue crack areas. The research [loading] was conducted on two mutually perpendicular planes positioned in such a way that the edge intersecting the planes coincided with the axis of the system. The research indicated that the connecting screw showed the least sensitivity (stress change) to the change in the loading plane, while the value of preload has a significant impact on the achieved fatigue strength of the system. In contrast, the endosteal implant (root) and the prosthetic connector showed the greatest sensitivity to the change in the loading plane. The method of mounting [securing] the endosteal implant using a holder, despite meeting the standards, may contribute to generating excessive stress concentration in the threaded part. Observation of the prosthetic connector in the Optima 3.35 system, cyclically loaded with a force of F ≈ 300 N in the area of the upper hexagonal peg, revealed a fatigue fracture. The observed change in stress peak in the dental connector for two different force application surfaces shows that the positioning of the dental system (setting of the socket in relation to the force action plane) is significantly decisive in estimating the limited fatigue strength.

摘要

该研究涉及牙科植入物的数值有限元分析(FEA)。在此基础上,根据牙科产品认证所需的PN-EN 14801标准进行了疲劳测试。得益于作者开发的研究方法,得以对诸如材料、几何形状、载荷以及牙科系统的组装等外部和内部因素对被检查对象所达到的疲劳强度极限值的影响进行全面分析。为此,有限元法研究基于参考在真实模型上进行的测试结果来识别疲劳裂纹起始的潜在部位。该研究中描述的操作有助于对制造商命名为INTEGRA OPTIMA 3.35的牙科系统设计过程进行最终评估。研究目的是在基于INTEGRA OPTIMA 3.35套件构建的选定牙科系统中识别疲劳裂纹起始的潜在部位。研究中使用的材料是4级钛。使用简化的冯·米塞斯应力图来搜索潜在的疲劳裂纹区域。研究[加载]在两个相互垂直的平面上进行,其定位方式使得与平面相交的边缘与系统轴线重合。研究表明,连接螺钉对加载平面变化的敏感度(应力变化)最低,而预紧力值对系统所达到的疲劳强度有显著影响。相比之下,骨内植入物(牙根)和修复连接器对加载平面变化的敏感度最高。尽管使用固定器固定骨内植入物的方法符合标准,但可能会导致螺纹部分产生过大的应力集中。在Optima 3.35系统中,对上六角栓区域施加约300 N的循环力时,对修复连接器的观察发现了疲劳断裂。在两种不同的力作用表面下观察到的牙科连接器应力峰值变化表明,牙科系统的定位(牙槽窝相对于力作用平面的设置)在估计有限疲劳强度方面具有显著的决定性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7700/10934518/b88bf0000269/materials-17-01213-g001.jpg

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