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用于牙科植入应用的Ti-5Cu-xNb生物医学合金在模拟体液中的腐蚀与磨损行为。

Corrosion and wear behavior of Ti-5Cu-xNb biomedical alloy in simulated body fluid for dental implant applications.

作者信息

Pandey Anurag Kumar, Gautam R K, Behera C K

机构信息

Department of Mechanical Engineering, Indian Institute of Technology (Banaras Hindu University) Varanasi, Varanasi- 221005, India.

Department of Metallurgical Engineering, Indian Institute of Technology (Banaras Hindu University) Varanasi, Varanasi- 221005, India.

出版信息

J Mech Behav Biomed Mater. 2023 Jan;137:105533. doi: 10.1016/j.jmbbm.2022.105533. Epub 2022 Oct 27.

Abstract

The present study examined the corrosion and tribological behavior of novel Ti-5Cu-xNb alloy synthesized via powder metallurgy as a new biomedical material in a simulated bodily fluid (SBF) solution. The electrochemical impedance spectroscopy (EIS) study reveals the formation of two protective layers on the surface of alloys during the test. The alloys spontaneously produce a passivating oxide coating on their surfaces, and the breakdown potential (1.14-1.17 V) and re-passivation current density (2.07-3.04 μAcm) were observed during the potentiodynamic polarization test. The highest corrosion resistance was observed for the alloy Ti-5Cu-10Nb (i = 21.44 nA-cm). The SEM and XPS analysis of the corroded surface showed the formation of oxide on the surfaces of the alloys. The samples were tested at 10 N, 15 N, and 20 N loads against the zirconia counterpart to investigate the effect of loading on friction and wear. The lowest coefficient of friction was obtained for Ti-5Cu-5Nb (0.25-0.41) at 20 N loading, while the maximum for Ti-5Cu-10Nb at 15 N load falls in the range of (0.71-0.25). Additionally, they present the wear rate in the range of (5.3 × 10-1.45 × 10 mm/mm), in accordance with the change in microstructure and mechanical properties. However, the wear rate increases with the addition of niobium and reaches the maximum for Ti-5Cu-15Nb at 20 N loading condition, but it is relatively deficient compared to commonly used implant material. Therefore, it is suggested that this β-type Ti-5Cu-xNb alloy is a promising candidate, more suitable than the commercially used Ti and Ti-6Al-4V for dental applications.

摘要

本研究考察了通过粉末冶金合成的新型Ti-5Cu-xNb合金作为一种新型生物医学材料在模拟体液(SBF)溶液中的腐蚀和摩擦学行为。电化学阻抗谱(EIS)研究表明,在测试过程中合金表面形成了两层保护膜。合金在其表面自发形成钝化氧化膜,在动电位极化测试中观察到击穿电位(1.14 - 1.17 V)和再钝化电流密度(2.07 - 3.04 μA/cm)。Ti-5Cu-10Nb合金的耐腐蚀性最高(i = 21.44 nA/cm)。对腐蚀表面的扫描电子显微镜(SEM)和X射线光电子能谱(XPS)分析表明,合金表面形成了氧化物。样品在10 N、15 N和20 N载荷下与氧化锆配对进行测试,以研究载荷对摩擦和磨损的影响。在20 N载荷下,Ti-5Cu-5Nb合金的摩擦系数最低(0.25 - 0.41),而在15 N载荷下,Ti-5Cu-10Nb合金的摩擦系数最大值在(0.71 - 0.25)范围内。此外,根据微观结构和力学性能的变化,它们的磨损率在(5.3×10 - 1.45×10 mm³/mm)范围内。然而,磨损率随着铌的添加而增加,在20 N载荷条件下,Ti-5Cu-15Nb合金的磨损率达到最大值,但与常用的植入材料相比相对较低。因此,建议这种β型Ti-5Cu-xNb合金是一种有前途的候选材料,比商业使用的Ti和Ti-6Al-4V更适合牙科应用。

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