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Effect of Screw Diameter in Femoral Fracture Fixation Modeled by Finite Element Method

机译:螺钉直径在有限元模拟股骨骨折固定中的作用

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Research in the field of biomechanics related to orthopedic implants is rapidly growing in the world, especially for fixation of fractured bone. Fixation is a surgery to locate and attach a plate pressed by screws at the fractured bone. Most of the fracture bones sited in femur. This research focuses on modeling and simulation of plate and screw made of SS316L material for the fixation of the fractured femur using finite element method (FEM). SS316L is a material with good biocompatibility, cheap, and ductile enough. Modeling and simulation done using ANSYS 15.0 software. Simulation results are stress, strain, and total deformation. It is obtained that optimum diameter of screw is 4.5 mm with respect to minimum value of von Mises stress and deformation.
机译:与整形外科植入物有关的生物力学领域的研究在世界范围内正在迅速发展,尤其是用于固定骨折的骨头。固定术是在骨折的骨头上定位并固定由螺钉按压的板的手术。大部分骨折骨位于股骨中。这项研究的重点是用有限元方法(FEM)将SS316L材料制成的钢板和螺钉用于股骨骨折固定的建模和仿真。 SS316L是具有良好生物相容性,廉价且足够延展的材料。使用ANSYS 15.0软件进行建模和仿真。仿真结果是应力,应变和总变形。获得的螺钉的最佳直径相对于冯·米塞斯应力和变形的最小值为4.5毫米。

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