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基于3D打印和阳极氧化的多孔Ti6Al4V抗菌结构设计

Antibacterial Structure Design of Porous Ti6Al4V by 3D Printing and Anodic Oxidation.

作者信息

Yang Guijun, Liu Houjiang, Li Ang, Liu Tiansheng, Lu Qiqin, He Fang

机构信息

School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China.

College of Chemical Engineering, Qinghai University, Xining 810016, China.

出版信息

Materials (Basel). 2023 Jul 25;16(15):5206. doi: 10.3390/ma16155206.

Abstract

Titanium alloy Ti6Al4V is a commonly used bone implant material, primarily prepared as a porous material to better match the elastic modulus of human bone. However, titanium alloy is biologically inert and does not have antibacterial properties. At the same time, the porous structure with a large specific surface area also increases the risk of infection, leading to surgical failure. In this paper, we prepared three porous samples with different porosities of 60%, 75%, and 85%, respectively (for short, 3D-60, 3D-75, and 3D-85) using 3D printing technology and clarified the mechanical properties. Through tensile experiments, when the porosity was 60%, the compressive modulus was within the elastic modulus of human bone. Anodic oxidation technology carried out the surface modification of a 3D-printed porous titanium alloy with 60% porosity. Through change, the different voltages and times on the TiO oxide layer on the 3D-printed porous titanium alloy are different, and it reveals the growth mechanism of the TiO oxide layer on a 3D-printed unique titanium alloy. The surface hydrophilic and antibacterial properties of 3D-printed porous titanium alloy were significantly improved after modification by anodic oxidation.

摘要

钛合金Ti6Al4V是一种常用的骨植入材料,主要制成多孔材料以更好地匹配人体骨骼的弹性模量。然而,钛合金具有生物惰性且没有抗菌性能。同时,具有大比表面积的多孔结构也增加了感染风险,导致手术失败。在本文中,我们使用3D打印技术制备了孔隙率分别为60%、75%和85%的三种多孔样品(简称为3D-60、3D-75和3D-85),并阐明了其力学性能。通过拉伸实验,当孔隙率为60%时,压缩模量在人体骨骼的弹性模量范围内。阳极氧化技术对孔隙率为60%的3D打印多孔钛合金进行了表面改性。通过改变,3D打印多孔钛合金上TiO氧化层的不同电压和时间不同,揭示了3D打印独特钛合金上TiO氧化层的生长机制。阳极氧化改性后,3D打印多孔钛合金的表面亲水性和抗菌性能得到显著改善。

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