首页> 外文会议>World biomaterials congress >Fatigue testing and finite elements simulation of a new design of dental implants
【24h】

Fatigue testing and finite elements simulation of a new design of dental implants

机译:疲劳试验和有限元模拟牙科植入物新设计的仿真

获取原文

摘要

Introduction: Aim of any dental treatment is to replace structure as well as function of the damaged or lost teeth. Among the various categories of dental treatments, in the recent past dental implant become the most popular dental treatment modality. However, beside the issue of faster osseointegration, screw loosening and component fracture are also main concern of contemperory dental implants. So in the present study, simulation of fatigue testing as well as experimental fatigue testing of inhouse developed dental implant is done to compare their results as well as to validate the design of inhouse developed implant system as per ISO Standard. Materials and Methods: Fatigue test experiments are carried out on the Bose Electroforce? machine with the test geometry setup as shown in Figure 1. The static compression load experiments are carried out to find the load to failure for the same test geometry as in the fatigue test. For the fatigue testing, implants are tested at 14 Hz loading frequency with load magnitudes varying as 40,50,60,70 and 80 percent of the static load value. The geometric model of the implant system is assembled using Solid Works? software. To mimic the test experiment set up, the implant is mounted on a test fixture with a surface inclined at 30 degrees to the horizontal surface. Then the model is imported into ANSYS Workbench environment for carrying out the simulation (figure 2.). Results: The average static load value is 308 N ± 23.52 N. The implant system survived five million cycles at 40 percent of the static load, i.e. fatigue loading of 124 N and 12.4 N, at a loading frequency of 14 Hz. Simulation predicts failure in the implant system at 350 N approx and the failure is predicted in the hex region of the abutment. Discussion: The implant system survived five million cycles at the fatigue load limits of 124 and 12.4 N thus qualifying the ISO 14801 standard of testing the reliability of a dental implant. It is discovered that with decrease in magnitude of fatigue load, from 50 to 40 percent of static, the implant system life increases drastically from 0.1 million approximately to five million. Conclusion: Load values for mastication of routine food products are reported to be in range of 70-150 N therefore this implant system can be potentially successful for replacement of teeth.Further there is similar trend of failure in experimental set up as well as in FE simulation.
机译:简介:任何牙科治疗的目的是更换结构以及牙齿损坏或牙齿的功能。在各种类型的牙科治疗中,在最近过去的牙科植入物中成为最受欢迎的牙科治疗方式。然而,除了更快的骨整合,螺杆松动和组分骨折旁边也是必要的牙​​科植入物的主要关注点。因此,在本研究中,疲劳试验的模拟以及适用于适用于牙科植入物的实验疲劳试验,以比较它们的结果,并根据ISO标准验证Inhouse开发的植入系统的设计。材料和方法:疲劳试验实验在均电流上进行吗?具有测试几何设置的机器如图1所示。进行静态压缩负载实验,以找到与疲劳测试相同的测试几何体的负载。对于疲劳检测,植入物在14 Hz负载频率下测试,负载量随静态负载值的40,50,60,70和80%。使用固体工程组装植入系统的几何模型?软件。为了模仿测试实验,植入物安装在测试夹具上,该测试夹具安装在30度到水平表面的表面。然后将模型导入到ANSYS Workbench环境中以执行模拟(图2.)。结果:平均静态载荷值为308 n±23.52 n。植入系统以40%的静载荷为40%存活500万个循环,即124 n和12.4 n的疲劳负载,以14Hz的装载频率。模拟预测植入系统在350n的植入系统中的失败,并且在邻接的六角区域中预测失败。讨论:植入系统在124和12.4 n的疲劳载荷限制下避免了500万个周期,因此符合ISO 14801测试牙科植入物可靠性的标准。发现,随着疲劳载荷的幅度减小,静脉的50%至40%,植入系统寿命大约为500万左右的植入系统寿命急剧增加。结论:报告常规食品咀嚼的负荷值为70-150 n,因此这种植入系统可能是替代牙齿的潜在成功。在实验组和FE的实验组中存在类似的失败趋势。模拟。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号