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Life prediction of different commercial dental implants as influence by uncertainties in their fatigue material properties and loading conditions

机译:不同商业植入物的寿命预测受疲劳材料性能和负载条件不确定性的影响

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摘要

Probabilistic analyses allow the effect of uncertainty in system parameters to be determined. In the literature, many researchers have investigated static loading effects on dental implants. However, the intrinsic variability and uncertainty of most of the main problem parameters are not accounted for. The objective of this research was to apply a probabilistic computational approach to predict the fatigue life of three different commercial dental implants considering the variability and uncertainty in their fatigue material properties and loading conditions. For one of the commercial dental implants, the influence of its diameter in the fatigue life performance was also studied. This stochastic technique was based on the combination of a probabilistic finite element method (PFEM) and a cumulative damage approach known as B-model. After 6 million of loading cycles, local failure probabilities of 0.3, 0.4 and 0.91 were predicted for the Lifecore, Avinent and GMI implants, respectively (diameter of 3.75. mm). The influence of the diameter for the GMI implant was studied and the results predicted a local failure probability of 0.91 and 0.1 for the 3.75. mm and 5. mm, respectively. In all cases the highest failure probability was located at the upper screw-threads. Therefore, the probabilistic methodology proposed herein may be a useful tool for performing a qualitative comparison between different commercial dental implants.
机译:概率分析可以确定系统参数不确定性的影响。在文献中,许多研究人员研究了静态负载对牙科植入物的影响。但是,大多数主要问题参数的内在变异性和不确定性并未得到考虑。这项研究的目的是应用一种概率计算方法来预测三种不同的商用牙科植入物的疲劳寿命,考虑到其疲劳材料特性和负载条件的可变性和不确定性。对于其中一种商业牙科植入物,还研究了其直径对疲劳寿命性能的影响。这种随机技术是基于概率有限元方法(PFEM)和称为B模型的累积损伤方法的组合。经过600万次加载循环后,对于Lifecore,Avinent和GMI植入物(直径3.75 mm),预计局部失效概率分别为0.3、0.4和0.91。研究了直径对GMI植入物的影响,结果预测3.75的局部失效概率为0.91和0.1。毫米和5.毫米。在所有情况下,最高的故障概率都位于上螺纹处。因此,本文提出的概率方法学可能是用于在不同的商用牙科植入物之间进行定性比较的有用工具。

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