Mechanical Properties of Functionally Graded Biomaterials in Bone Replacement; Analytical and Numerical Solution

M. Mahbod, M. Asgari
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引用次数: 2

Abstract

Porous biomaterials are known as one of the new materials which are widely used and especially appropriate for bone interfacing components. Besides providing a proper area for bone ingrowth, their mechanical properties mimic properties of bone. It has been entrenched that porous biomaterials can be produced considering defined representative volume elements (RVE) by recent developments in additive manufacturing. In this paper a novel functionally graded porous material is introduced based on a new RVE. In order to calculate the mechanical properties (elastic modulus, yield stress and Poisson's ratio), theoretical solutions are developed. Furthermore, a numerical investigation via ANSYS Workbench has been performed to validate the analytical solution. As the results show the obtained properties of the proposed structures are suitable for application of bone implant. Furthermore, the mechanical properties of each layer of structure have been calculated.
功能梯度生物材料在骨置换中的力学性能研究解析与数值解
多孔生物材料是一种应用广泛的新型材料,尤其适用于骨界面材料。除了为骨骼生长提供合适的区域外,它们的机械性能也模仿了骨骼的性能。考虑到增材制造的最新发展,多孔生物材料可以通过定义的代表性体积元素(RVE)来生产。本文介绍了一种基于新型RVE的功能梯度多孔材料。为了计算其力学性能(弹性模量、屈服应力和泊松比),提出了理论解。在ANSYS Workbench上进行了数值研究,验证了解析解的正确性。结果表明,所获得的结构性能适合于骨种植体的应用。并对各层结构的力学性能进行了计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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