Sol–gel derived Al2O3/Gr/HAP nanocomposite coatings on Ti–6Al–4V alloy for enhancing tribo-mech properties and antibacterial activity for bone implants

被引:0
作者
V. Shanmugapriya
A. Sivamaran
P. Padma Rao
S. T. Senthil Kumar
T. K. Selvamani
机构
[1] Annamalai University,Department of Manufacturing Engineering
[2] Audisankara College of Engineering and Technology (Autonomous),Department of Mechanical Engineering
[3] B. V. Raju Institute of Technology,Department of Mechanical Engineering, Center for Material Research
[4] Chennai Institute of Technology,School of Mechanical Engineering
[5] Yeungnam University,undefined
来源
Applied Physics A | 2022年 / 128卷
关键词
Titanium; Hardness; Wear; Antibacterial activity; Sol–gel method; Hydroxyapatite (HAP); Graphene (Gr);
D O I
暂无
中图分类号
学科分类号
摘要
Titanium and its alloys are substantially used as prosthetics, for internal screw fixation in the human body, due to their incredible chemical and mechanical properties. But, due to the low hardness and high coefficient of friction of titanium alloys, which led to poor wear properties. Hence, in the present work, nano-alumina/hydroxyapatite/graphene as the bioactive coating are deposited using the sol–gel method on the Ti–6Al–4V alloy to improve its biomechanical properties. After coating, the tribological behavior, antibacterial activity, and apatite nuclei in simulated body fluid were evaluated. The resultant coatings surface morphology and worn substrates were studied by scanning electron microscopy. The presence of alumina/hydroxyapatite/graphene was evidenced by energy dispersive X-ray peaks. The topography of the coated surface was inspected, using the atomic force microscope. The coatings on the Ti–6Al–4V alloy resulted in enhanced surface roughness for cell attachment and cell growth. The hardness of the coated and uncoated substrates was investigated by Vickers microhardness tester. The microhardness test reveals that coating substrates exhibits 72% hardness as compared to uncoated substrates. The tribological test was conducted by a pin-on-disc testing machine by varying the process parameters like load, velocity, and distance. The results show that the Ti–6Al–4V alloy with coating exhibited greater wear resistance as compared to the uncoated Ti–6Al–4V alloy. The biomimetic apatite was found on the coated surface after a period from 1 to 7 days when immersed in SBF at 37 °C, signifying an enhancement in apatite nucleation. Ti–6Al–4V alloy with nano-alumina/hydroxyapatite/graphene coating can be proved as a potential applicant for significant antibacterial activity in load-bearing performance in bio-implants.
引用
收藏
相关论文
共 197 条
[1]  
Al-Mobarak A(2014)Development of titanium surgery implants for improving osseointegration through formation of a titanium nanotube layer Int. J. Electrochem. Sci. 9 32-45
[2]  
Al-Swayih A(2020)Improvement of biomedical functionality of titanium by ultrasound-assisted electrophoretic deposition of hydroxyapatite-graphene oxide nanocomposites Ceram. Int. 46 18297-18307
[3]  
Fardi SR(2014)Preparation of titanium oxide and hydroxyapatite on Ti-6Al-4V alloy surface and electrochemical behaviour in bio-simulated fluid solution Corros. Sci. 80 331-338
[4]  
Khorsand H(2019)Corrosion behaviour of Ti6Al4V ELI nanotubes for biomedical applications J. Market. Res. 8 5548-5556
[5]  
Askarnia R(2016)Hydroxyapatite—past, present, and future in bone regeneration Bone Tissue Regen. Insights 7 9-19
[6]  
Pardehkhorram R(2018)Sol-gel deposition of hydroxyapatite coatings on porous titanium for biomedical applications Surf. Coat. Technol. 333 158-162
[7]  
Adabifiroozjaei E(2018)Optimizing chemical vapor deposition parameters to attain minimum diameter carbon nano tubes by response surface methodology J. Adv. Microsc. Res. 13 181-189
[8]  
Benea L(2017)Developing empirical relationship to predict the diameter of multiwall carbon nano tubes (MWCNTs) synthesized by chemical vapor deposition (Cvd) process Manuf. Technol. Today 16 6-4019
[9]  
Mardare-Danaila E(2020)Mechanical and tribological properties of self-lubricating Al 6061 hybrid nano metal matrix composites reinforced By NSiC and MWCNTs Surf. Interfaces 97 3999-20
[10]  
Mardare M(2018)Synthesis and recent advances in tribological applications of graphene Int. J. Adv. Manuf. Technol. 9 1-122