首页> 外文期刊>Romanian Journal of Morphology and Embryology >Numerical simulations of human tibia osteosynthesis using modular plates based on Nitinol staples
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Numerical simulations of human tibia osteosynthesis using modular plates based on Nitinol staples

机译:基于镍钛合金钉书钉的模块化板的人类胫骨骨合成的数值模拟

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The shape memory alloys exhibit a number of remarkable properties, which open new possibilities in engineering and more specifically in biomedical engineering. The most important alloy used in biomedical applications is NiTi. This alloy combines the characteristics of the shape memory effect and superelasticity with excellent corrosion resistance, wear characteristics, mechanical properties and a good biocompatibility. These properties make it an ideal biological engineering material, especially in orthopedic surgery and orthodontics. In this work, modular plates for the osteosynthesis of the long bones fractures are presented. The proposed modular plates are realized from identical modules, completely interchangeable, made of titanium or stainless steel having as connecting elements U-shaped staples made of Nitinol. Using computed tomography (CT) images to provide three-dimensional geometric details and SolidWorks software package, the three dimensional virtual models of the tibia bone and of the modular plates are obtained. The finite element models of the tibia bone and of the modular plate are generated. For numerical simulation, VisualNastran software is used. Finally, displacements diagram, von Misses strain diagram, for the modular plate and for the fractured tibia and modular plate ensemble are obtained.
机译:形状记忆合金具有许多卓越的性能,这为工程特别是生物医学工程打开了新的可能性。生物医学应用中最重要的合金是NiTi。这种合金兼具形状记忆效果和超弹性的特性,以及优异的耐腐蚀性,耐磨性,机械性能和良好的生物相容性。这些特性使其成为理想的生物工程材料,尤其是在骨科手术和牙齿矫正中。在这项工作中,提出了用于长骨骨折的骨合成的模块化钢板。所提出的模块板由完全可互换的,由钛或不锈钢制成的相同模块实现,具有由镍钛诺制成的U形钉作为连接元件。使用计算机断层扫描(CT)图像提供三维几何细节和SolidWorks软件包,即可获得胫骨和模块化板的三维虚拟模型。生成胫骨和模块化板的有限元模型。对于数值模拟,使用VisualNastran软件。最后,获得了模块板以及胫骨骨折和模块板整体的位移图,von Misses应变图。

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