Short review on hydroxyapatite powder coating for SS 316L

Review paper

Authors

DOI:

https://doi.org/10.5599/jese.1611

Keywords:

Biomaterials, biocompatibility, implants, plasma spray, coatings
Graphical Abstract

Abstract

Medical implants and other biomaterials are used by millions of individuals all over the globe to restore lost bodily functions due to injury or illness. Many of these implants fail after a short time or have difficulties, despite the fact that they play important roles in keeping a person's life safe or increasing the quality of their lives. It is the lack of biocompatibility that has proven to be the biggest downfall of biomaterials. Investments in this industry may be made using a thin film of hydroxyapatite powder (HAP) on stainless steel. Plates, screws, pins, and artificial joints are only some fixation devices for bones that often use 316L stainless steel. However, due to its unique advan­tageous qualities such as super-elasticity and low-profile feature, thin film HAP signals a high potential for use in compact new cardiac devices like the cardiovascular system and protecting stent grafts.

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References

R. Langer, J. P. Vacanti, Tissue Engineering, Science 260 (1993) 920-926. https://doi.org/10.1126/science.8493529

S. Overgaard, H. M. Knudsen, L. N. Hansen, N. Mossing, Hip arthroplasty in Jutland, Denmark, Acta Orthopaedica Scandinavica 63 (1992) 536-538. https://doi.org/10.3109/17453679209154731

F. Cosman, S. J. de Beur, M. S. LeBoff, E. M. Lewiecki, B. Tanner, S. Randall, and R. Lindsay, Clinician’s Guide to prevention and treatment of osteoporosis, Osteoporos International 25 (2014) 2359-2381. https://doi.org/10.1007%2Fs00198-014-2794-2

J. B. Park, Biomaterials Science and Engineering, Springer US, Boston, MA, 1984. https://doi.org/10.1007/978-1-4613-2769-1

M. López, G. Fuentes, R. González, J. González, E. Peón, C. Toledo, PMMA/Ca2+ Bone cements: Part I. Physico chemical and thermoanalytical characterization, Latin American Applied Research 38 (2008) 227-234. http://www.scielo.org.ar/pdf/laar/v38n3/v38n3a05.pdf

M. Neville-Smith, L. Trujillo, R. Ammundson, Special Feature: Consistency in Postoperative Education Programs Following Total Hip Replacement, Topics in Geriatric Rehabilitation 15 (2000) 68-76. https://doi.org/10.1097/00013614-200006000-00008

D. Bhaisare, P.K. Behera, Synthesis and characterization of ultrafine hydroxyapatite (HAp) powder coating on stainless steel substrate by electrophoretic deposition, National Institute of Technology, Rourkela, 2010. https://core.ac.uk/download/pdf/53187495.pdf

N. R. Babu, S. Manwatkar, K. P. Rao, T. S. Kumar, Bioactive coatings on 316L stainless steel implants, Trends in Biomaterials and Artificial Organs 17 (2004) 43-47. https://e-tarjome.com/storage/btn_uploaded/2020-07-26/1595756035_10844-etarjome%20English.pdf

A. Choudhuri, P. S. Mohanty, J. Karthikeyan, Bio-ceramic Composite Coatings by Cold Spray Technology, in: Proceeding of International Thermal Spray Conference by Japan Association of Earthquake Engineering, Tokio, Japan, May 2009. https://www.asbindustries.com/documents/paper_22241_manuscript_3762_final.pdf

A. Fadli, Komalasari, I. Indriyani, Coating Hydroxyapatite on 316L Stainless Steel Using Electroforesis Deposition Method, Journal of Physics: Conference Series 1351 (2019) 012015. https://doi.org/10.1088/1742-6596/1351/1/012015

S. Jafari, M. M. Atabaki, J. Idris, Comparative study on bioactive coating of Ti-6Al-4V alloy and 316 L stainless steel, Metallurgical and Materials Engineering 18 (2011) 145-158. http://www.metalurgija.org.rs/mjom/vol18/No2/6_Jafari_MME_1802.pdf

A. Rakngarm, Y. Miyashita, Y. Mutoh, Formation of hydroxyapatite layer on bioactive Ti and Ti-6Al-4V by simple chemical technique, Journal of Materials Science: Materials in Medicine 19 (2008) 1953-1961 https://doi.org/10.1007/s10856-007-3285-1

N. Eliaz, T. M. Sridhar, U. K. Mudali, B. Raj, Electrochemical and electrophoretic deposition of hydroxyapatite for orthopaedic applications, Surface Engineering 21 (2005) 238-242 https://doi.org/10.1179/174329405X50091

W. Höland, Biocompatible and bioactive glass-ceramics — State of the art and new directions, Journal of Non-Crystalline Solids 219 (1997) 192-197. https://doi.org/10.1016/S0022-3093(97)00329-3

M. Long, H. Rack, Titanium alloys in total joint replacement — A materials science perspective, Biomaterials 19 (1998) 1621-1639. https://doi.org/10.1016/S0142-9612(97)00146-4

J. Singh, S. Kumar, S. K. Mohapatra, Erosion tribo-performance of HVOF deposited Stellite-6 and Colmonoy-88 micron layers on SS-316L, Tribology International 147 (2020) 105262. https://doi.org/10.1016/j.triboint.2018.06.004

J. Singh, S. Singh, Neural network supported study on erosive wear performance analysis of Y2O3/WC-10Co4Cr HVOF coating, Journal of King Saud University - Engineering Sciences (2022). https://doi.org/10.1016/j.jksues.2021.12.005

J. Singh, S. Singh, Neural network prediction of slurry erosion of heavy-duty pump impeller/casing materials 18Cr-8Ni, 16Cr-10Ni-2Mo, super duplex 24Cr-6Ni-3Mo-N, and grey cast iron, Wear 476 (2021) 203741. https://doi.org/10.1016/j.wear.2021.203741

R. J. Narayan, P. N. Kumta, C. Sfeir, D. H. Lee, D. Choi, D. Olton, Nanostructured ceramics in medical devices: Applications and prospects, JOM 56 (2004) 38-43. https://doi.org/10.1007/s11837-004-0289-x

J. B. Park, R. S. Lakes, Biomaterials, Springer US, Boston, MA, 1992. https://doi.org/10.1007/978-1-4757-2156-0

S. Rujitanapanich, P. Kumpapan, P. Wanjanoi, Synthesis of hydroxyapatite from oyster shell via precipitation, Energy Procedia 56 (2014) 112-117. https://doi.org/10.1016/j.egypro.2014.07.138

K. Khlifi, H. Dhiflaoui, A. Ben Rhouma, J. Faure, H. Benhayoune, A. Ben Cheikh Laarbi, Nanomechanical Behavior, Adhesion and corrosion resistance of hydroxyapatite coatings for orthopedic implant applications, Coatings 11 (2021) 477. https://doi.org/10.3390/coatings11040477

J. Singh, S. Kumar, S. K. Mohapatra, Optimization of erosion wear influencing parameters of HVOF sprayed pumping material for coal-water slurry, Materials Today: Proceedings 5 (2018) 23789-23795. https://doi.org/10.1016/j.matpr.2018.10.170

J. Singh, A review on mechanisms and testing of wear in slurry pumps, pipeline circuits and hydraulic turbines, Journal of Tribology 143 (2021) 090801. https://doi.org/10.1115/1.4050977

J. Singh, S. K. Mohapatra, S. Kumar, Performance analysis of pump materials employed in bottom ash slurry erosion conditions, Jurnal Tribologi 30 (2021) 73-89. https://jurnaltribologi.mytribos.org/v30/JT-30-73-89.pdf

J. Singh, S. Kumar, S. K. Mohapatra, Study on solid particle erosion of pump materials by fly ash slurry using Taguchi’s orthogonal array, Tribologia - Finnish Journal of Tribology 38 (2021) 31-38. https://doi.org/10.30678/fjt.97530

J. Singh, H. S. Gill, H. Vasudev, Computational fluid dynamics analysis on effect of particulate properties on erosive degradation of pipe bends, International Journal on Interactive Design and Manufacturing (2022). https://doi.org/10.1007/s12008-022-01094-7

J. Singh, S. Singh, J. Pal Singh, Investigation on wall thickness reduction of hydropower pipeline underwent to erosion-corrosion process, Engineering Failure Analysis 127 (2021) 105504. https://doi.org/10.1016/j.engfailanal.2021.105504

J. Singh, Application of thermal spray coatings for protection against erosion, abrasion, and corrosion in hydropower plants and offshore industry, in Thermal Spray Coatings, L. Thakur, H. Vasudev (Eds.), 1st ed., CRC Press, Boca Raton, 2021, pp. 243-283. https://doi.org/10.1201/9781003213185-10

A. Biswas, L. Li, T. T. Maity, U. K. Chatterjee, B. B. Mordike, I. Manna, J. D. Majumdar, Laser surface treatment of Ti-6Al-4V for bio-implant application, Lasers Engineering 17 (2007) 59-73. http://repository.ias.ac.in/18870/1/381.pdf

J. Singh, S. Kumar, G. Singh, Taguchi’s approach for optimization of tribo-resistance parameters for SS304, Materials Today: Proceedings 5 (2018) 5031-5038. https://doi.org/10.1016/j.matpr.2017.12.081

J. Singh, S. Kumar, S. K. Mohapatra, S. Kumar, Shape simulation of solid particles by digital interpretations of scanning electron micrographs using IPA technique, Materials Today: Proceedings 5 (2018) 17786-17791. https://doi.org/10.1016/j.matpr.2018.06.103

J. Singh, S. Kumar, S. Mohapatra, Study on role of particle shape in erosion wear of austenitic steel using image processing analysis technique, Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology in Sustainable Advances in Manufacturing Processes 233 (2019) 712-725. https://doi.org/10.1177/1350650118794698

J. Singh, S. Kumar, J. P. Singh, P. Kumar, S. K. Mohapatra, CFD modeling of erosion wear in pipe bend for the flow of bottom ash suspension, Particulate Science and Technology 37 (2019) 275-285. https://doi.org/10.1080/02726351.2017.1364816

J. Singh, J. P. Singh, M. Singh, M. Szala, Computational analysis of solid particle-erosion produced by bottom ash slurry in 90° elbow, MATEC Web of Conferences 252 (2019) 04008. https://doi.org/0.1051/matecconf/201925204008

J. Singh, Investigation on slurry erosion of different pumping materials and coatings, Thapar Institute of Engineering and Technology, Patiala, India, 2019. https://tudr.thapar.edu:8443/jspui/handle/10266/5460

S. Kumar, M. Singh, J. Singh, J. P. Singh, S. Kumar, Rheological characteristics of uni/bi-variant particulate iron ore slurry: Artificial neural network approach, Journal of Mining Science 55 (2019) 201-212. https://doi.org/10.1134/S1062739119025468

J. Singh, J. P. Singh, Numerical analysis on solid particle erosion in elbow of a slurry conveying circuit, Journal of Pipeline Systems Engineering and Practice 12 (2021) 04020070. https://doi.org/10.1061/(asce)ps.1949-1204.0000518

H. Vasudev, P. Singh, L. Thakur, A. Bansal, Mechanical and microstructural characterization of microwave post processed Alloy-718 coating, Materials Research Express 6 (2020) 1265f5. https://doi.org/10.1088/2053-1591/ab66fb

H. Vasudev, G. Prashar, L. Thakur, A. Bansal, Microstructural characterization and electrochemical corrosion behaviour of HVOF sprayed Alloy718-nanoAl2O3 composite coatings, Surface Topography: Metrology and Properties 9 (2021) 035003. https://doi.org/10.1088/2051-672X/ac1044

H. Vasudev, Wear characteristics of Ni-WC powder deposited by using a microwave route on mild steel, International Journal of Surface Engineering and Interdisciplinary Materials Science 8 (2020) 44-54. https://doi.org/10.4018/IJSEIMS.2020010104

H. Vasudev, G. Singh, A. Bansal, S. Vardhan, L. Thakur, Microwave heating and its applications in surface engineering, Materials Research Express 6 (2019) 102001. https://doi.org/10.1088/2053-1591/ab3674

Q. Wei, R. Haag, Universal polymer coatings and their representative biomedical applications, Materials Horizons 2 (2015) 567-577. https://doi.org/10.1039/c5mh00089k

J. Joseph, R. M. Patel, A. Wenham, J. R. Smith, Biomedical applications of polyurethane materials and coatings, Transactions of the Institute of Metal Finishing 96 (2018) 121-129. https://doi.org/10.1080/00202967.2018.1450209

R. N. Oosterbeek, C. K. Seal, J. M. Seitz, M. M. Hyland, Polymer-bioceramic composite coatings on magnesium for biomaterial applications, Surface Coatings and Technology 236 (2013) 420-428. https://doi.org/10.1016/j.surfcoat.2013.10.029

A. K. Hussain, U. M. B. Al Naib, Recent developments in graphene based metal matrix composite coatings for corrosion protection application: A review, Journal of Metals, Materials and Minerals 29 (2019) 1-9. https://doi.org/10.14456/jmmm.2019.27

J. Singh, S. Singh, R. Gill, Applications of biopolymer coatings in biomedical engineering, Journal of Electrochemical Science and Engineering (2022). https://doi.org/10.5599/jese.1460

J. Song, B. Winkeljann, O. Lieleg, Biopolymer-Based Coatings: Promising strategies to improve the biocompatibility and functionality of materials used in biomedical engineering, Advanced Materials Interfaces 7 (2020) 2000850. https://doi.org/10.1002/admi.202000850

Y. Guo, Y. Su, R. Gu, Z. Zhang, G. Li, J. Lian, L. Ren, Enhanced corrosion resistance and biocompatibility of biodegradable magnesium alloy modified by calcium phosphate/collagen coating, Surface Coatings and Technology 401 (2020) 126318. https://doi.org/10.1016/j.surfcoat.2020.126318

G. Singh, H. Vasudev, A. Bansal, S. Vardhan, S. Sharma, Microwave cladding of Inconel-625 on mild steel substrate for corrosion protection, Materials Research Express 7 (2020) 026512. https://doi.org/10.1088/2053-1591/ab6fa3

Y. Wang, J. Stella, G. Darut, T. Poirier, H. Liao, APS prepared NiCrBSi-YSZ composite coatings for protection against cavitation erosion, Journal of Alloys and Compounds 699 (2017) 1095-1103. https://doi.org/10.1016/j.jallcom.2017.01.034

F. Zhang, Y. Liu, Q. Wang, Y. Han, Z. Yan, H. Chen, Y. Tan, Fabricating a heavy oil viscosity reducer with weak interaction effect: Synthesis and viscosity reduction mechanism, Colloid and Interface Science Communications 42 (2021) 100426. https://doi.org/10.1016/j.colcom.2021.100426

S. S. Rajahram, T. J. Harvey, R. J. K. Wood, Erosion-corrosion resistance of engineering materials in various test conditions, Wear 267 (2009) 244-254. https://doi.org/10.1016/j.wear.2009.01.052

K. R. R. M. Reddy, N. Ramanaiah, M. M. M. Sarcar, Effect of heat treatment on corrosion behavior of duplex coatings, Journal of King Saud University - Engineering Sciences 29 (2017) 84-90. https://doi.org/10.1016/j.jksues.2014.08.002

A. F. Yetim, M. Y. Codur, M. Yazici, Using of artificial neural network for the prediction of tribological properties of plasma nitrided 316L stainless steel, Materials Letters 158 (2015) 170-173. https://doi.org/10.1016/j.matlet.2015.06.015

S. Buytoz, M. Ulutan, S. Islak, B. Kurt, O. N. Çelik, Microstructural and wear characteristics of high velocity oxygen fuel (HVOF) Sprayed NiCrBSi-SiC composite coating on SAE 1030 steel, Arabian Journal for Science and Engineering 38 (2013) 1481-1491. https://doi.org/10.1007/s13369-013-0536-y

J. Singh, S. Singh, A. Verma, Artificial intelligence in use of ZrO2 material in biomedical science, Journal of Electrochemical Science and Engineering (2022). https://doi.org/10.5599/jese.1498

Y. Iwai, T. Miyajima, A. Mizuno, T. Honda, T. Itou, S. Hogmark, Micro-Slurry-jet Erosion (MSE) testing of CVD TiC/TiN and TiC coatings, Wear 267 (2009) 264-269. https://doi.org/10.1016/j.wear.2009.02.014

Z. Feng, Y. Tzeng, J. E. Field, Solid particle impact of CVD diamond films, Thin Solid Films 212 (1992) 35-42. https://doi.org/10.1016/0040-6090(92)90497-Y

U. B. Pal, S. C. Singhal, Electrochemical vapor deposition of Yttria‐stabilized zirconia films, Journal of Electrochemical Society 137 (1990) 2937-2941. https://doi.org/10.1149/1.2087102

G. Prashar, H. Vasudev, Surface topology analysis of plasma sprayed Inconel625-Al2O3 composite coating, Materials Today: Proceedings 50 (2022) 607-611. https://doi.org/10.1016/j.matpr.2021.03.090

G. Prashar, H. Vasudev, High temperature erosion behavior of plasma sprayed Al2O3 coating on AISI-304 stainless steel, World Journal of Engineering 18 (2021) 760-766. https://doi.org/10.1108/WJE-10-2020-0476

G. Prashar, H. Vasudev, Structure-Property Correlation of Plasma-Sprayed Inconel 625-Al2O3 Bimodal Composite Coatings for High-Temperature Oxidation Protection, Journal of Thermal Spray Technology 31 (2022) 2385-2408. https://doi.org/10.1007/s11666-022-01466-1

H. Vasudev, L. Thakur, H. Singh, A. Bansal, Erosion behaviour of HVOF sprayed Alloy718-nano Al2O3 composite coatings on grey cast iron at elevated temperature conditions, Surface Topography: Metrology and Properties 9 (2021) 035022. https://doi.org/10.1088/2051-672X/ac1c80

P. Singh, H. Vasudev, A. Bansal, Effect of post-heat treatment on the microstructural, mechanical, and bioactivity behavior of the microwave-assisted alumina-reinforced hydroxyapatite cladding, Proceedings of the Institution of Mechanical Engineers Part E Journal of Process Mechanical Engineering (2022). https://doi.org/10.1177/09544089221116168

R. Singh, M. Toseef, J. Kumar, J. Singh, Benefits and Challenges in Additive Manufacturing and Its Applications, in: Sustainable Advances in Manufacturing and Materials Processing, S. Kaushal, I. Singh, S. Singh, A. Gupta (Eds.), 1st ed., CRC Press, Boca Raton, 2022, pp. 137-157. https://doi.org/10.1201/9781003269298-8

D. Kumar, R. Yadav, J. Singh, Evolution and Adoption of Microwave Claddings in Modern Engineering Applications, in: Advances in Microwave Processing for Engineering Materials, A. Bansal and H. Vasudev (Eds.), 1st ed., CRC Press, Boca Raton, 2022, pp. 134-153. https://doi.org/10.1201/9781003248743-8

H. Vasudev, G. Prashar, L. Thakur, A. Bansal, Electrochemical Corrosion Behavior and Microstructural Characterization of HVOF Sprayed Inconel-718 Coating on Gray Cast Iron, Journal of Failure Analysis and Prevention 21 (2021) 250-260. https://doi.org/10.1007/s11668-020-01057-8

H. Vasudev, L. Thakur, H. Singh, A. Bansal, A study on processing and hot corrosion behaviour of HVOF sprayed Inconel718-nano Al2O3 coatings, Materials Today: Proceedings 25 (2020) 101626. https://doi.org/10.1016/j.mtcomm.2020.101626

G. Singh, A. Mehta, A. Bansal, Electrochemical behaviour and biocompatibility of claddings developed using microwave route, Journal of Electrochemical Science and Engineering 13(1) (2023) 173-192 https://doi.org/10.5599/jese.1604

P. Singh, A. Bansal, H. Vasudev, P. Singh, In situ surface modification of stainless steel with hydroxyapatite using microwave heating, Surface Topography: Metrology and Properties 9 (2021) 035053. https://doi.org/10.1088/2051-672X/ac28a9

G. Prashar, H. Vasudev, L. Thakur, Influence of heat treatment on surface properties of HVOF deposited WC and Ni-based powder coatings: a review, Surface Topography: Metrology and Properties 9 (2021) 043002. https://doi.org/10.1088/2051-672X/ac3a52

G. Prashar, H. Vasudev, Structure-property correlation and high-temperature erosion performance of Inconel625-Al2O3 plasma-sprayed bimodal composite coatings, Surface Coatings and Technology 439 (2022) 128450. https://doi.org/10.1016/j.surfcoat.2022.128450

G. Prashar, H. Vasudev, L. Thakur, Performance of different coating materials against slurry erosion failure in hydrodynamic turbines: A review, Engineering Failure Analysis 115 (2020) 104622. https://doi.org/10.1016/j.engfailanal.2020.104622

G. Singh, H. Vasudev, A. Bansal, S. Vardhan, Influence of heat treatment on the microstructure and corrosion properties of the Inconel-625 clad deposited by microwave heating, Surface Topography: Metrology and Properties 9 (2021) 025019. https://doi.org/10.1088/2051-672X/abfc61

J. Singh, Analysis on suitability of HVOF sprayed Ni-20Al, Ni-20Cr and Al-20Ti coatings in coal-ash slurry conditions using artificial neural network model, Industrial Lubrication and Tribology 71 (2019) 972-982. https://doi.org/10.1108/ILT-12-2018-0460

J. Singh, Wear performance analysis and characterization of HVOF deposited Ni-20Cr2O3, Ni-30Al2O3, and Al2O3-13TiO2 coatings, Applied Surface Science Advances 6 (2021) 100161. https://doi.org/10.1016/j.apsadv.2021.100161

J. Singh, Tribo-performance analysis of HVOF sprayed 86WC-10Co4Cr & Ni-Cr2O3 on AISI 316L steel using DOE-ANN methodology, Industrial Lubrication and Tribology 73 (2021) 727-735. https://doi.org/10.1108/ILT-04-2020-0147

J. Singh, J. P. Singh, Performance analysis of erosion resistant Mo2C reinforced WC-CoCr coating for pump impeller with Taguchi’s method, Industrial Lubrication and Tribology 74 (2022) 431-441. https://doi.org/10.1108/ILT-05-2020-0155

K. Sunitha, H. Vasudev, Microsrtructural and Mechanical Characterization of HVOF-Sprayed Ni-Based Alloy Coating, International Journal of Surface Engineering and Interdisciplinary Materials Science 10 (2022) 5. https://doi.org/10.4018/IJSEIMS.298705

J. Singh, S. Kumar, S. K. Mohapatra, An erosion and corrosion study on thermally sprayed WC-Co-Cr powder synergized with Mo2C/Y2O3/ZrO2 feedstock powders, Wear 438 (2019) 102751 https://doi.org/10.1016/j.wear.2019.01.082

J. Singh, S. Kumar, S. K. Mohapatra, Erosion wear performance of Ni-Cr-O and NiCrBSiFe-WC(Co) composite coatings deposited by HVOF technique, Industrial Lubrication and Tribology 71 (2019) 610-619. https://doi.org/10.1108/ILT-04-2018-0149

J. Singh, S. Kumar, S. K. Mohapatra, Tribological performance of Yttrium (III) and Zirconium (IV) ceramics reinforced WC-10Co4Cr cermet powder HVOF thermally sprayed on X2CrNiMo-17-12-2 steel, Ceramics International 45 (2019) 23126-23142. https://doi.org/10.1016/j.ceramint.2019.08.007

A. Billard, F. Maury, P. Aubry, F. Balbaud-Célérier, B. Bernard, F. Lomello, H. Maskrot, E. Meillot, A. Michau, F. Schuster, Emerging processes for metallurgical coatings and thin films, Comptes Rendus Physique 19 (2018) 755-768. https://doi.org/10.1016/j.crhy.2018.10.005

M. Elices, Structural Biological Materials: Design and Structure-Property Relationships, 1st ed., Elsevier & Pergamon Materials Series, 2000. ISBN: 978-0080434162.

J. F. V. Vincent, Strength and fracture of grasses, Journal of Materials Science 26 (1991) 1947-1950. https://doi.org/10.1007/BF00543628

R. C. Todd, C. D. R. Lightowler, J. Harris, Total Hip Replacement in Osteoarthrosis using the Charnley Prosthesis, British Medical Journal 2 (1972) 752-755. https://doi.org/10.1136/bmj.2.5816.752

S. J. Birtwistle, K. Wilson, M. L. Porter, Long-term survival analysis of total hip replacement, Annals of The Royal College of Surgeons of England 78 (1996) 180-183. http://www.ncbi.nlm.nih.gov/pmc/articles/pmc2502711/

D. F. G. Emery, H. J. Clarke, M. L. Grover, Stanmore total hip replacement in younger patients: Review of a group of patients under 50 years of age at operation, The Journal of Bone and Joint Surgery 79 (1997) 240-246. https://doi.org/10.1302/0301-620X.79B2.7165

T. Karachalios, C. Tsatsaronis, G. Efraimis, P. Papadelis, G. Lyritis, G. Diakoumopoulos, The long-term clinical relevance of calcar atrophy caused by stress shielding in total hip arthroplasty, The Journal of Arthroplasty 19 (2004) 469-475. https://doi.org/10.1016/j.arth.2003.12.081

M. M. Stevens, J. H. George, Exploring and Engineering the Cell Surface Interface, Science 310 (2005) 1135. https://doi.org/10.1126/science.1106587

M. M. Soliman, M. E. H. Chowdhury, M. T. Islam, F. Musharavati, M. Nabil, M. Hafizh, A. Khandakar, S. Mahmud, E.Z. Nezhad, M.N.I. Shuzan, F.F. Abir, A review of biomaterials and associated performance metrics analysis in pre-clinical finite element model and in implementation stages for total hip implant system, Polymers 14 (2022) 4308. https://doi.org/10.3390/polym14204308

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Published

17-01-2023 — Updated on 14-01-2023

How to Cite

Singh, J., Singh, J. P., Kumar, S., & Gill, H. S. (2023). Short review on hydroxyapatite powder coating for SS 316L: Review paper. Journal of Electrochemical Science and Engineering, 13(1), 25–39. https://doi.org/10.5599/jese.1611

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Biomaterials