Journal of Biomaterials and Nanobiotechnology

Journal of Biomaterials and Nanobiotechnology

ISSN Print: 2158-7027
ISSN Online: 2158-7043
www.scirp.org/journal/jbnb
E-mail: jbnb@scirp.org
"Friction and Wear Behavior of Ti-6Al-7Nb Biomaterial Alloy"
written by Mamoun Fellah, Omar Assala, Mohamed Labaïz, Leila Dekhil, Alain Iost,
published by Journal of Biomaterials and Nanobiotechnology, Vol.4 No.4, 2013
has been cited by the following article(s):
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[1] The effect of milling time on the microstructure and mechanical properties of Ti-6Al-4Fe alloys
2021
[2] Mechanical and Tribological Properties of Hot Isostatically Pressed a+ ß Ti-Alloys (Ti-6Al-xNb) for Biomedical Applications.
2021
[3] Sol gel deposited hydroxyapatite-based coating technique on porous titanium niobium for biomedical applications: A mini review
2021
[4] Recent advances in tribological and wear properties of biomedical metallic materials
2021
[5] Кальций-фосфатные мишени для ВЧ-магнетронного осаждения биосовместимых покрытий
2020
[6] Investigating the Effect of Sintering Temperature on Structural and Tribological Properties of a Nanostructured Ti–20Nb–13Zr Alloy for Biomedical Applications
2020
[7] The Tensile Properties, Scratch Behaviors and Sliding Wear of Oxide Scale Formed on Titanium Grade 2
2020
[8] Effect of Sintering Temperature on Mechanical and Tribological Behavior of Ti–Ni Alloy for Biomedical Applications
2020
[9] Structure and properties of titanium and the Ti-6Al-7Nb alloy after isothermal oxidation
2020
[10] The Influence of Thermal Oxidation Parameters on Structural, Friction, and Wear Characteristics of Oxide Layers Produced on the Surface of Ti-6Al-7Nb …
2019
[11] Enhanced structural and tribological performance of nanostructured Ti–15Nb alloy for biomedical applications
2019
[12] Tribological Properties of Ti-6Al-7Nb Alloy after Isothermal Oxidation
2019
[13] Effect of sintering temperature on structure and tribological properties of nanostructured Ti–15Mo alloy for biomedical applications
2019
[14] The Effect of Milling Time on Structural, Friction and Wear Behavior of Hot Isostatically Pressed Ti–Ni Alloys for Orthopedic Applications
2019
[15] Synthesis and structural and mechanical properties of nanobioceramic (α-Al2O3)
2019
[16] Effect of Molybdenum Content on Structural, Mechanical, and Tribological Properties of Hot Isostatically Pressed β-Type Titanium Alloys for Orthopedic Applications
2019
[17] Investigations of surface integrity, bio-activity and performance characteristics during wire-electrical discharge machining of Ti-6Al-7Nb biomedical alloy
2019
[18] Sliding Response of Grade 5 Titanium Alloy at Different Speed and Load Levels
International Journal of Recent Technology and Engineering, 2019
[19] Effect of Nb at.% content on friction on tribological behaviour of nanobiomaterials Ti-Nb alloys.
2018
[20] Comportement à l'usure et au frottement de deux biomatériaux AISI 316L et Ti-6Al-7Nb pour prothèse totale de hanche
2018
[21] 2.4 Ti-Nb-Zr system and its surface biofunctionalization for biomedical applications
2018
[22] Review of Existing Biomaterials—Method of Material Selection for Specific Applications in Orthopedics
Biomaterials in Clinical Practice, 2018
[23] Kinetics of thermodiffusion of TZ20 titanium alloy gas-nitride within temperature of 500° C–650° C
Journal of Alloys and Compounds, 2018
[24] Modelling the structure and mechanical properties of oxide layers obtained on biomedical Ti-6Al-7Nb alloy in the thermal oxidation process
Vacuum, 2018
[25] Ti-Nb-Zr system and its surface biofunctionalization for biomedical applications
Titanium in Medical and Dental Applications, 2018
[26] Optimization of process parameters in CNC turning of Titanium alloy with carbide coated tool inserts using grey based Taguchi analysis
Journal of Advanced Mechanical Design, Systems, and Manufacturing, 2018
[27] Effect of calcination temperature on friction and wear behavior of α–Alumina (α‐Al2O3) for biomedical applications
International Journal of Applied Ceramic Technology, 2018
[28] Multi-criteria optimization in hard turning of Titanium alloy Ti-6Al-7Nb using Taguchi based grey relational analysis coupled with principle component …
2018
[29] The Influence of Thermal Oxidation Parameters on Structural, Friction, and Wear Characteristics of Oxide Layers Produced on the Surface of Ti–6Al–7Nb Alloy
Journal of Tribology, 2018
[30] CHARACTERIZATION OF TRIBOLOGICAL PROPERTIES OF OXIDE LAYERS OBTAINED ON TITANIUM IN DIFFERENT FRICTION COUPLES
Tribologia, 2018
[31] Odporność korozyjna warstw azotonawęglanych wytworzonych na stopie tytanu Ti6Al7Nb
Ochrona przed Korozj?, 2017
[32] The influence of thermal oxidation parameters on the growth of oxide layers on titanium
Vacuum, 2017
[33] Physical and tribological properties of radio-frequency-sputtered chromium zirconium nitride coatings
2017
[34] Effect of Zr content on friction and wear behavior of Cr‐Zr‐N coating system
International Journal of Applied Ceramic Technology, 2017
[35] Effect of milling time on sliding friction and wear behavior of hot isostatically pressed titanium alloys Ti-6Al-4X (X= V, Nb Fe) for biomedical applications
2017
[36] Effect of replacing vanadium by niobium and iron on the tribological behavior of hiped titanium alloys
Acta Metallurgica Sinica (English Letters), 2017
[37] Surface characterization of thermally oxidized Ti-6Al-7Nb alloy
Materials Chemistry and Physics, 2016
[38] Sliding wear resistance of oxide layers formed on a titanium surface during thermal oxidation
Wear, 2016
[39] c Metallic Biomaterials: Titanium and Titanium Alloys
Handbook of Biomaterial Properties, 2016
[40] Mechanical and tribological properties of oxide layers obtained on Ti-6Al-7Nb alloy
Tribologia, 2016
[41] Experimental study of new titanium alloy Ti-6Al-4Fe for biomedical application
2015
[42] Sliding friction and wear performance of the nano-bioceramic α-Al2O3 prepared by high energy milling
Tribology International, 2015
[43] Sliding friction and wear performance of the nano-bioceramic α-Al 2 O 3 prepared by high energy milling
Tribology International, 2015
[44] Tribological behavior of biomaterial for total hip prosthesis
Matériaux & Techniques, 2014
[45] Tribological behavior of Ti-6Al-4V and Ti-6Al-7Nb Alloys for Total Hip Prosthesis
Advances in Tribology, 2014
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