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Numerical Stress Analysis of the Plates Used to Treat the Tibia Bone Fracture

机译:胫骨骨折治疗板的数值应力分析

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Tibial fractures are one of the most frequent bone fractures caused by accidents or falls because of the tibia’s slender shape. In the tibial fractures close to the joint surface, a plate and screws may be the ideal method of fixation. While using the plate and the screws the estimation of the stress on the plate and screw gains importance before beginning the treatment. In this study, it is aimed to conduct a numerical simulation which uses finite element methodology, to estimate the von Mises stress subjected to the plate and screw which is used in tibia fracture treatment. A titanium plate and 4 screws on it are used for treatment of the fracture. The fracture angle varies as 0°, 15°, 30°, and 45°. The compressive force affected on the plate is estimated to be 750 N. Moreover, the bone is simulated 3D, by using commercial software, ANSYS Structural.
机译:胫骨骨折是由于胫骨细长而导致的事故或跌倒引起的最常见的骨折之一。在靠近关节表面的胫骨骨折中,钢板和螺钉可能是理想的固定方法。在使用钢板和螺钉时,在开始治疗之前,估算钢板和螺钉上的应力非常重要。在这项研究中,旨在进行使用有限元方法的数值模拟,以估计在胫骨骨折治疗中使用的钢板和螺钉承受的冯·米塞斯应力。钛板和其上的四个螺钉用于治疗骨折。断裂角变化为0°,15°,30°和45°。估计作用在板上的压缩力为750N。此外,使用商业软件ANSYS Structural对骨骼进行3D模拟。

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