首页|激光处理对Ti-45Nb合金表面、腐蚀性能和生物相容性的影响

激光处理对Ti-45Nb合金表面、腐蚀性能和生物相容性的影响

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研究Ti-45Nb(质量分数,%)合金的性能及其潜在的生物医学应用.采用激光表面改性技术提高合金的生物学性能.经过激光处理后,合金表面形成了(Ti,Nb)O氧化层和不同的形貌特征.评估了Ti-45Nb合金在模拟体液条件下的电化学行为,结果表明,无论是否进行激光表面改性处理,该合金都具有优异的耐腐蚀性.然而,激光处理后合金的耐腐性显著提高,经过5 mJ的激光处理后,合金的腐蚀电流密度从处理前的2.84x10-8A/cm降低为0.65×10-8A/cm,这是由于快速形成了一种复杂且具有钝化作用的双模态表面氧化层.还研究了合金的细胞毒性以及Ti-45Nb合金激光表面改性对MRC-5细胞的活性、形态和增殖的影响.结果表明,Ti-45Nb合金无细胞毒性.此外,细胞在激光处理后合金表面的活性和黏附性都有所提高.经15 mJ激光处理后,合金的平均细胞活性最高,为115.37%.结果表明,激光表面改性可以成功用于显著提高合金细胞相容性.
Laser processing effects on Ti-45Nb alloy surface,corrosive and biocompatible properties
The Ti-45Nb(wt.%)alloy properties were investigated in relation to its potential biomedical use.Laser surface modification was utilized to improve its performance in biological systems.As a result of the laser treatment,(Ti,Nb)O scale was formed and various morphological features appeared on the alloy surface.The electrochemical behavior of Ti-45Nb alloy in simulated body conditions was evaluated and showed that the alloy was highly resistant to corrosion deterioration regardless of additional laser surface modification treatment.Nevertheless,the improved corrosion resistance after laser treatment was evident(the corrosion current density of the alloy before laser irradiation was 2.84×10-8 A/cm2,while that after laser treatment with 5 mJ was 0.65×10-8 A/cm2)and ascribed to the rapid formation of a complex and passivating bi-modal surface oxide layer.Alloy cytotoxicity and effects of the Ti-45Nb alloy laser surface modification on the MRC-5 cell viability,morphology,and proliferation were also investigated.The Ti-45Nb alloy showed no cytotoxic effect.Moreover,cells showed improved viability and adherence to the alloy surface after the laser irradiation treatment.The highest average cell viability of 115.37%was attained for the alloy laser-irradiated with 15 mJ.Results showed that the laser surface modification can be successfully utilized to significantly improve alloy performance in a biological environment.

Ti-45Nb alloylaser surface scanningelectrochemical propertiesbiocompatibilitycell morphology

I.CVIJOVI?-ALAGI?、S.LAKETI?、M.MOM?ILOVI?、J.CIGANOVI?、D.VELJOVI?、J.BAJAT、V.KOJI?、M.RAKIN

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Vinča Institute of Nuclear Sciences-National Institute of the Republic of Serbia,University of Belgrade,P.O.Box 522,11001 Belgrade,Serbia

Faculty of Technology and Metallurgy,University of Belgrade,Karnegijeva 4,11120 Belgrade,Serbia

Oncology Institute of Vojvodina,Faculty of Medicine,University of Novi Sad,Put Dr Goldmana 4,21204 Sremska Kamenica,Serbia

Ti-45Nb合金 激光表面扫描 电化学性能 生物相容性 细胞形态

Ministry of Science,Technological Development and Innovation of the Republic of Serbia

451-03-47/2023-01/200017

2024

中国有色金属学报(英文版)
中国有色金属学会

中国有色金属学报(英文版)

CSTPCD
影响因子:1.183
ISSN:1003-6326
年,卷(期):2024.34(8)