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首页> 外文期刊>Journal of Materials Research and Technology >Investigation of effective coating of the Ti–6Al–4V alloy and 316L stainless steel with graphene or carbon nanotubes with finite element methods
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Investigation of effective coating of the Ti–6Al–4V alloy and 316L stainless steel with graphene or carbon nanotubes with finite element methods

机译:具有有限元方法的石墨烯或碳纳米管的Ti-6Al-4V合金和316L不锈钢有效涂层的研究

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BackgroundThe Ti–6Al–4V alloy and 316L stainless steel are widely used biocompatible implant materials for repairing bone fractures and their mechanical properties are now being considered for various other applications. Due to the mentioned reasons, we initially investigated and determined the mechanical effects of these biocompatible implant materials. In the sequel, as a novelty of this study, we adopted a unique approach to investigating these materials and sought to determine if coating the Ti–6Al–4V alloy and 316L stainless steel with graphene or carbon nanotubes (CNTs) could provide superior mechanical properties compared to when their surface is uncoated.MethodsTo investigate the mechanical effects of the Ti–6Al–4V alloy and 316L stainless, finite element method was utilized. Finite element analyses (FEAs) of the Ti–6Al–4V alloy and 316L stainless steel samples were comparatively conducted with the numerical results in literature. Static structural analyses were generated for the externally fixated femur in the single-leg stance position. Comparative static load analyses were performed for six distinctive cases of the uncoated Ti–6Al–4V alloy and 316L stainless steel, and graphene-coated Ti–6Al–4V alloy, CNT-coated Ti–6Al–4V alloy, graphene-coated 316L stainless steel, and CNT-coated 316L stainless steel.ResultsThe results of the static load analyses of the six distinctive cases show that the uncoated Ti–6Al–4V, graphene-coated Ti–6Al–4V, and CNT-coated Ti–6Al–4V samples stress values are 48.29?MPa, 36.24?MPa, and 87.574?MPa for the femur, the first screw, and plate stresses, respectively. These stresses are the minimum stress values occurred on the femur, the first screw, and the plate, respectively. On the other hand, the graphene-coated 316L and CNT-coated 316L stainless steel samples had the minimum displacement values, which were obtained as 1.558?mm, 1.5576?mm?at the femoral head, and 0.13029?mm, 0.13028?mm?at the fracture line, respectively.ConclusionThe main result and conclusion of this study is that coating the Ti–6Al–4V alloy and 316L stainless steel samples with graphene or CNTs results in superior mechanical performance in comparison to when they are uncoated. Considering the FEAs of the six different materials, CNT- or graphene-coated Ti–6Al–4V and CNT- or graphene-coated 316L stainless steel are the most recommended finite element models (FEMs) in terms of stress and displacement values, respectively. By using CNT- or graphene-coated Ti–6Al–4V and CNT- or graphene-coated 316L stainless steel, more durable, stable externally fixated implants can be obtained for femoral shaft fractures in terms of stress and displacement reduction occurred on both femur and implants.
机译:背景技术TI-6AL-4V合金和316L不锈钢是广泛应用用于修复骨折的生物相容性植入材料,现在正在考虑各种其他应用的机械性能。由于提及的原因,我们最初研究并确定了这些生物相容性植入材料的机械效果。在续集中,作为本研究的新颖性,我们采用了一种独特的方法来研究这些材料,并寻求确定Ti-6Al-4V合金和316L不锈钢与石墨烯或碳纳米管(CNT)可以提供优异的机械性能与它们的表面无涂层相比。方法研究了利用Ti-6Al-4V合金和316L不锈钢的机械效果。 Ti-6Al-4V合金和316L不锈钢样品的有限元分析(令人疲劳)与文献中的数值结果相比进行了相互作用。为单腿姿态位置的外部固定股骨产生静态结构分析。对比较静电载荷分析进行六种独特的未涂层Ti-6AL-4V合金和316L不锈钢和石墨烯涂层Ti-6Al-4V合金,CNT涂层Ti-6Al-4V合金,石墨烯涂层316L不锈钢钢和CNT涂层316L不锈钢。六种独特病例的静载分析结果表明,未涂层的Ti-6Al-4V,石墨烯涂层Ti-6Al-4V,和CNT涂层Ti-6Al-4V样品应力值是48.29?MPA,36.24·MPA和87.574的股骨,第一螺钉和板应力的MPA。这些应力分别是股骨,第一螺钉和板上发生的最小应力值。另一方面,石墨烯涂覆的316L和CNT涂覆的316L不锈钢样品具有最小位移值,其获得为1.558Ωmm,1.5576Ωmm?在股骨头,0.13029?mm,0.13028?mm?分别在骨折线。结论本研究的主要结果和结论是涂布Ti-6Al-4V合金和316L不锈钢样品,具有石墨烯或CNT,导致卓越的机械性能相比,它们的未涂层相比。考虑到六种不同材料的令人疲劳,CNT-或石墨烯涂覆的Ti-6Al-4V和CNT-或石墨烯涂覆的316L不锈钢是应力和位移值方面的推荐有限元模型(FEMS)。通过使用CNT-或石墨烯-4V和CNT-或石墨烯 - 涂覆的316L不锈钢,更耐用,可以在股骨和股骨上发生股骨轴骨折而产生稳定的外固定植入物。植入物。

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