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Finite element analysis of titanium alloy-graphene based mandible plate

机译:基于钛合金 - 石墨烯基颌骨板的有限元分析

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Titanium alloy based maxillofacial plates and implants are widely used in fracture treatment and reconstructions. Filler materials Graphene Nanoplatlets(GNPs) were used in a Titanium alloy maxillofacial plate and a Finite Element Model (FEM) was designed to reconstruct a fractured human mandible. Both 50N and 500N bite forces were applied on the mandible and stress distribution using Von mises failure theory across the plate sections was analyzed. A pure plate was critically stressed at a section near the mandible fracture region for a Von mises stress of nearly 27.5GPa while this stress reduced by nearly 10-22% with the presence of minor composition of GNPs in the plate. GNPs orientation in parallel (21.1 GPa) to the plate axis were more effective in comparison to other orientations(90 degrees, 45 degrees and 135 degrees) and the location variation of these GNPs along the plate had no significant effect on the stress distribution. The fatigue analyses showed that, under these stresses and forces the plate with GNP was able to endure for nearly 7000 days, while the pure Titanium plate could fail by fatigue in approximately 70 days. Hence, presence of minor compositions of GNPs could enhance endurance life of the Titanium plate by reducing stress concentrations at critical sections of the plate.
机译:基于钛合金的颌面片板和植入物广泛用于断裂处理和重建。填料材料石墨烯纳米纳薄(GNP)用于钛合金颌面片板,设计有限元模型(FEM)以重建裂缝的人颌骨。使用von误杂散理论分析了50n和500n的咬合力,并使用von误衰竭理论进行了分析。纯板在颌骨骨折区域附近的截面界面施加纯度,用于近27.5GPa的损伤率较近27.5GPa,而这种应力降低了近10-22%,在板中存在少量的GNP。与其他取向(90度,45度和135度)相比,平行的GNPS取向(21.1GPa)与板轴线更有效,并且沿着板的这些GNP的位置变化对应力分布没有显着影响。疲劳分析表明,在这些应力下,用GNP的板势能够待静置7000天,而纯钛板可能在大约70天内通过疲劳失效。因此,通过降低板的临界部分的应力浓度,GNPS的小组合物的存在可以增强钛板的耐久性寿命。

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