羟基磷灰石纤维形态对磷酸钙水泥力学性能的影响

Sadegh Ghofrani, Ali Abouei Mehrizi
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摘要

磷酸钙骨水泥是骨折修复中最好的植骨材料之一。它们易于成型,具有生物活性和生物相容性。由于多孔性,这类材料具有较低的断裂韧性和抗压强度。为了增强某些机械性能和减少孔隙率,它们与羟基磷灰石纤维等材料结合使用。这种组合使得控制和提高弹性模量和抗压强度成为可能。纤维的形状和取向会影响这些参数。通过有限元模拟研究了三种不同形状的羟基磷灰石纤维增强磷酸钙水泥的力学性能。该复合水泥中纤维的添加比为10 vol.%,纤维形状为球形、椭球形和多面体。三种试样的弹性模量基本相同,但各试样的抗压强度和纤维间的应力分布不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of hydroxyapatite fiber’s shape on mechanical properties of calcium phosphate cement
Calcium phosphate cements are one the best grafting materials in bone fracture repair. They are easily shapeable, bioactive, and biocompatible. These group of materials have lower fracture toughness and compressive strength, due to their porosity. For enhancement of some mechanical properties and reducing porosity, they are combined with materials such as hydroxyapatite fibers. This combination makes it possible to control and increase elastic modulus and compressive strength. The shape and the orientation of fibers can affect these parameters. In this study, mechanical properties of calcium phosphate cement which is enhanced by three different shaped fibers of hydroxyapatite is investigated via FEM simulation. Ratio of the fibers added in this composite cement is 10 vol.% and they are in spherical, ellipsoidal, and polyhedral shapes. Three specimens have about same elastic modulus but compressive strengths of each specimen and the stress distribution among the fibers are different.
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