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Evaluation of loading conditions on fatigue-failed implants by fracture surface analysis.

机译:通过断裂表面分析评估疲劳失效植入物的负载条件。

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PURPOSE: The goal of this study was to determine the relationship between fracture surface morphology and applied stress level for dental abutment screws loaded in cyclic fatigue. If a correlation between fracture surface and load level can be determined, then the fracture surface analysis could be used as a tool to assess the mechanism by which a screw failed and the magnitude of the load at which it failed. MATERIALS AND METHODS: Test implants were loaded with static and cyclic forces. In the cyclic test, the load versus the number of cycles was plotted as a curve for biomechanical analysis. The fracture surfaces of the failed screws were observed and recorded using scanning electron microscopy (SEM). RESULTS: Two fracture phases, a smooth region and a rough region, were observed on the fracture surface. After identifying the boundary between the 2 regions, the smooth region ratio (SRR), the ratio of the smooth phase area to the area of the whole fracture surface, was measured using digitized SEM images. The mean SRRs were 0.60 +/- 0.03, 0.66 +/- 0.03, and 0.75 +/- 0.03 when the tested implants were subjected to dynamic loading of 60%, 55%, and 50% ultimate failure loading (UFL), respectively. Linear relationships were found between the SRR values and loading magnitude and between SSR and number of cycles. DISCUSSION: The smooth area on the fracture surface can be used to assess the load conditions and internal stress of fatigue-fractured implants. CONCLUSIONS: These results demonstrate that fracture surface analysis of fractured implants has the potential to become a useful indicator for assessing implant fracture mechanisms.
机译:目的:本研究的目的是确定周期性疲劳下牙齿基台螺钉的骨折表面形态与施加应力水平之间的关系。如果可以确定断裂面与载荷水平之间的相关性,则可以将断裂面分析用作评估螺钉失效机理和失效载荷大小的工具。材料与方法:测试植入物承受静态和循环力。在循环测试中,将负荷与循环次数作图,作为生物力学分析的曲线。使用扫描电子显微镜(SEM)观察并记录失效螺钉的断裂表面。结果:在断裂表面观察到两个断裂阶段,一个光滑区域和一个粗糙区域。在确定两个区域之间的边界后,使用数字化SEM图像测量了光滑区域比率(SRR),即光滑相面积与整个断裂表面面积的比率。当测试的植入物分别承受60%,55%和50%的极限破坏载荷(UFL)的动态载荷时,平均SRR为0.60 +/- 0.03、0.66 +/- 0.03和0.75 +/- 0.03。在SRR值和负载量之间以及SSR和循环次数之间发现线性关系。讨论:骨折表面的光滑区域可用于评估疲劳断裂植入物的载荷条件和内部应力。结论:这些结果表明,骨折植入物的骨折表面分析有可能成为评估植入物骨折机制的有用指标。

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