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BUCKLING ANALYSIS OF A FUNCTIONALLY GRADED IMPLANT MODEL FOR TREATMENT OF BONE FRACTURES: A NUMERICAL STUDY

机译:功能梯度植骨治疗骨骨折的屈曲分析:数值研究

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In orthopedics, the current internal fixations often use screws or intramedullary rods that obstruct bone material. In this paper, an internal implant was modelled as a hollow cylindrical sector made of a functionally graded material (FGM), which will hold bone in place with less obstruction of bone surface. Functionally graded implant was considered as an inhomogeneous composite structure, with continuously compositional variation from a ceramic at the outer diameter to a metal at the inner diameter. The buckling behavior of the implant was numerically analyzed using a finite element analysis software (ANSYS), and the structural stability of the implant was assessed. The buckling critical loads were calculated for different fixation lengths, cross sectional areas, and different sector angles. These critical loads were then compared with the critical loads of an FGM hollow cylinder with the same cross sectional area. Results showed that the critical load of the hollow cylindrical sector was ~ 63%, ~ 70%, and ~ 73% of the hollow cylinder for different fixation lengths, cross sectional areas, and sector angles, respectively. Further investigations are warranted to study the relation between the composition profile and the implant stability, which can lead to batter internal fixation solutions.
机译:在骨科中,当前的内固定经常使用螺钉或髓内棒来阻塞骨材料。在本文中,将内部植入物建模为由功能梯度材料(FGM)制成的空心圆柱体,该部分将骨骼固定在适当位置,而对骨骼表面的阻碍较小。功能梯度植入物被认为是不均匀的复合结构,其成分从外径的陶瓷到内径的金属连续变化。使用有限元分析软件(ANSYS)对植入物的屈曲行为进行了数值分析,并评估了植入物的结构稳定性。计算了不同固定长度,横截面积和不同扇形角的屈曲临界载荷。然后将这些临界载荷与具有相同横截面积的FGM空心圆柱体的临界载荷进行比较。结果表明,对于不同的固定长度,横截面积和扇形角,空心圆柱体的临界载荷分别为空心圆柱体的〜63%,〜70%和〜73%。有必要做进一步的研究来研究组成轮廓和植入物稳定性之间的关系,这可能会导致面糊内部固定解决方案。

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