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Friction and Wear Behavior of Ti-6Al-7Nb Biomaterial Alloy

Article dans une revue avec comité de lecture
Auteur
FELLAH, Mamoun
266547 Université Badji Mokhtar [Annaba] = Badji Mokhtar University [Annaba] = (عنابة) جامعة باجي مختار–عنابة [UBMA]
ASSALA, Omar
LABAIZ, Mohamed
266547 Université Badji Mokhtar [Annaba] = Badji Mokhtar University [Annaba] = (عنابة) جامعة باجي مختار–عنابة [UBMA]
DEKHIL, Leila
IOST, Alain
211915 Mechanics surfaces and materials processing [MSMP]

Article has an altmetric score of 3
URI
http://hdl.handle.net/10985/11961
DOI
10.1179/1751584X13Y.0000000032
Date
2013
Journal
Tribology - Materials, Surfaces & Interfaces

Résumé

The aim of this research is to study the tribological behaviour of AISI 316L stainless steel for surgical implants (total hip prosthesis). The tribological behaviour is evaluated by wear tests, using tribometers ball on disc and sphere on plane. These tests consisted of measuring the weight loss and the friction coefficient of stainless steel (SS) AISI 316L. The oscillating friction and wear tests have been carried out in ambient air with an oscillating tribotester in accord with standards ISO 7148, ASTM G99-95a and ASTM G133-95 under different conditions of normal applied load (3, 6 and 10 N) and sliding speed (1, 15 and 25 mm s−1). A ball of 100Cr 6, 10 mm in diameter, is used as counter pairs. These tribological results are compared with those carried out with a tribometer type pin on disc under different conditions of normal load applied P (19·43, 28 and 44 N) and sliding speed (600 and 1020 rev min−1). The behaviour observed for both samples suggests that the wear and friction mechanism during the tests is the same, and to increase the resistance to wear and friction of biomedical SS AISI 316L alloy used in total hip prosthesis (femoral stems), surface coating and treatment are necessary.

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  • Laboratoire Mechanics, Surfaces and Materials Processing (MSMP)

Documents liés

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  • Tribological behavior of biomaterial for total hip prosthesis 
    Article dans une revue avec comité de lecture
    FELLAH, Mamoun; LABAIZ, Mohamed; ASSALA, Omar; DEKHIL, Leila; ZERNIZ, N.; IOST, Alain (EDP Sciences, 2014)
    Friction and wear plays an important role in determining the performance of biomaterials. To this end, the present research is carried out to understand the tribological behavior important biometallic alloy, Ti-6Al-4V under ...
  • Friction and Wear Behavior of Ti-6Al-7Nb Biomaterial Alloy 
    Article dans une revue avec comité de lecture
    FELLAH, Mamoun; ASSALA, Omar; LABAIZ, Mohamed; DEKHIL, Leila; IOST, Alain (Scientific Research, 2013)
    Titanium has been increasingly applied to biomedical application because of its improved mechanical characteristics, corrosion resistance and biocompatibility. However their application remains limited, due to the low ...
  • Tribological behavior of Ti-6Al-4V and Ti-6Al-7Nb Alloys for Total Hip Prosthesis 
    Article dans une revue avec comité de lecture
    FELLAH, Mamoun; LABAIZ, Mohamed; OSSALA, Omar; DEKHIL, Leila; TALEB, Ahlem; REZAG, Hadda; IOST, Alain (2014)
    The aim of the study is to evaluate the friction and wear behavior of high-strength alloys Ti-6Al-7Nb used in femoral stem and compare it with a Ti-6Al-4V alloy cylindrical bar corresponding to ISO 5832-3 part 3/01-07-199 ...
  • Sliding friction and wear performance of the nano-bioceramic α -Al 2 O 3 prepared by high energy milling 
    Article dans une revue avec comité de lecture
    FELLAH, Mamoun; SAMAD, Mohammed Abdul; LABAIZ, Mohamed; ASSALA, Omar; IOST, Alain (Elsevier, 2015)
    The structural evolution and morphological changes of the nanostructured α-Al2O3 powder using different milling times (1, 8, 16 and 24 h) were studied. It is observed that the crystallite size of the particles reduced to ...
  • FRICTION AND WEAR BEHAVIOUR OF Ti-6AI-7Nb BIOMATERIAL ALLOY 
    Communication avec acte
    LABAIZ, Mohamed; FELLAH, Mamoun; ASSALA, Omar; IOST, Alain (Société Tribologique de France, 2013)
    Titanium and its alloys have been used as implant materials due to their very good mechanical and corrosion resistance and biocompatibility [1,2]. The most used biomaterials were commercially pure titanium (CP-Ti} issued ...

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