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Production and Characterization of a Bone-Like Porous Ti/Ti-Hydroxyapatite Functionally Graded Material

机译:骨状多孔Ti / Ti-羟基磷灰石的生产和表征功能梯度材料

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摘要

A new kind of functionally graded material (FGM) that mimics the inner porous structure and outer dense layer of human bone was produced using powder metallurgy. The inner part of the FGM material (16 mm in diameter) has porosity of approximately 60%, and its mechanical properties are compatible with cortical bone; however, the shell (1.8 mm in thickness) is composed of a layer of Ti-10% wt. hydroxyapatite (HA) and shows hydrophilic behavior and improved biofunction. Elastic moduli of the core and shell layer were calculated as 18.99 and 42.98 GPa, respectively, and those values are compatible with that of cortical bone. Addition of HA to the shell had a significant effect on the wettability (81.6% decrease) and cell viability (46% increase). Furthermore, the porosity of the shell layer (28.88%) is similar to that of human cortical bone. It is concluded that the developed Ti-HA FGM has promising properties for implant applications.
机译:利用粉末冶金技术制备了一种新型功能梯度材料(FGM),该材料模仿人体骨骼的内部多孔结构和外部致密层。FGM材料(直径16 mm)的内部具有约60%的孔隙率,其机械性能与皮质骨相容;然而,外壳(1.8mm厚)由一层Ti-10%重量的羟基磷灰石(HA)组成,并显示出亲水性和改善的生物功能。计算出核层和壳层的弹性模量分别为18.99和42.98 GPa,这些值与皮质骨的弹性模量一致。在壳中添加HA对润湿性(降低81.6%)和细胞活力(增加46%)有显著影响。此外,贝壳层的孔隙率(28.88%)与人类皮质骨的孔隙率相似。结论是,所开发的Ti-HA功能梯度材料具有良好的植入应用性能。

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