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Effect of Geometrical Parameters on the Performance of Longitudinal Functionally Graded Femoral Prostheses

机译:几何参数对纵向功能梯度股骨假体性能的影响

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摘要

This study aimed to assess the performance of different longitudinal functionally graded femoral prostheses. This study was also designed to develop an appropriate prosthetic geometric design for longitudinal functionally graded materials. Three-dimensional models of the femur and prostheses were developed and analyzed. The elastic modulus of these prostheses in the sagittal plane was adjusted along a gradient direction from the distal end to the proximal end. Furthermore, these prostheses were composed of titanium alloy and hydroxyapatite. Results revealed that strain energy, interface stress, and developed stress in the femoral prosthesis and the bone were influenced by prosthetic geometry and gradient index. In all of the prostheses with different geometries, strain energy increased as gradient index increased. Interface stress and developed stress decreased. The minimum principal stress and the maximum principal stress of the bone slightly increased as gradient index increased. Hence, the combination of the femoral prosthetic geometry and functionally graded materials can be employed to decrease stress shielding. Such a combination can also be utilized to achieve equilibrium in terms of the stress applied on the implanted femur constituents; thus, the lifespan of total hip replacement can be prolonged.
机译:这项研究旨在评估不同的纵向功能梯度股骨假体的性能。该研究还旨在为纵向功能梯度材料开发合适的假体几何设计。开发并分析了股骨和假体的三维模型。这些假体在矢状面上的弹性模量沿着从远端到近端的梯度方向被调节。此外,这些假体由钛合金和羟基磷灰石组成。结果表明,假体的几何形状和梯度指数会影响股骨假体和骨骼的应变能,界面应力和发育应力。在具有不同几何形状的所有假体中,应变能随梯度指数的增加而增加。界面应力和发达应力降低。骨骼的最小主应力和最大主应力随梯度指数的增加而略有增加。因此,可以采用股骨假体几何形状和功能梯度材料的组合来减少应力屏蔽。这样的组合也可以用来在施加于所植入的股骨成分上的应力方面达到平衡。因此,可以延长全髋关节置换的寿命。

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