Open Access

The Determination of Abrasion Resistance of Selected Biomaterials for the Friction Pairs in the Hip Joint Endoprosthesis


Cite

1. Cho H., Wei W., Kao H., Cheng C: Wear behavior of PE-UHMW sliding on artificial hip arthroplasty materials. Materials Chemistry and Physics, 88 (2004), 9-16.Search in Google Scholar

2. Deptuła P., Grądzka-Dahlke M., Dąbrowski J. R.: Investigation of near beta-phase titanium implant alloys produced by the powder metallurgy method [in Polish]. Inżynieria Materiałowa 2009/5, (2009), 455-457.Search in Google Scholar

3. Domingo J.: Vanadium and diabetes. What about vanadium toxicity? Molecular and Cellular Biochemistry 203 (2000), 185-187.10.1023/A:1007067011338Search in Google Scholar

4. Gierzyhska-Dolna M., Sulej-Chojnacka J., Wiśniewski T., Rybak T.: New materials for knee endoprosthesis pads [in Polish]. Tribologia, rok XLI nr 5/2010 (2010), 223-233.Search in Google Scholar

5. Gispert M., Serro A., Colaco R., Saramago B.: Friction and mechanisms in hip prosthesis: Comparison of joint materials behaviour in several lubricants. Wear 260 (2006), 149-158.Search in Google Scholar

6. Hermawan H., Ramdan D., Djuansjah J.: Metals for Biomedical Applications. Biomedical Engineering - From Theory to Applications. InTech Pub, Croatia (2011), 411-430.10.5772/19033Search in Google Scholar

7. Jedynak B., Mierzwihska-Nastalska E.: Titanium - its properties and application in prosthetic dentistry. Dental Forum, Protetyka Stomatologiczna 1/2013/XXXXI (2013), 224-233.10.5604/.1132696Search in Google Scholar

8. Kozierski C, Trzaskacz T., Ferenc Z.: Tribological properties of degenerate synovial joints [in Polish]. Tribologia, XLI nr 4/2010 (2010), 211-222.Search in Google Scholar

9. Krasicka-Cydzik E., Mstowski J., Ciupik F.: Metallic implant materials: implant steel and titanium alloys. System DERO, Zielona Góra: LfC (2005), 81-91.Search in Google Scholar

10. Kumar P., Oka M., Ikeuchi K., Shimizu K., Yamamuro T., Okumura H., Kotoura Y.: Low wear rate of PEUHMW against zirconia ceramic (Y-PSZ) in comparison to alumina ceramic and SUS 316L alloy. Journal of Biomedical Materials Research, Volume 25, Issue 7, (1991), 813-828.Search in Google Scholar

11. Li X., Dong H., Shi W.: New insights into wear of Ti6Al4V by ultra-high molecular weight polyethylene under water lubricated conditions. Wear 250, (2001), 553-560.10.1016/S0043-1648(01)00637-8Search in Google Scholar

12. Łubihski J., Olszewski H., Olszewski A.: A multi-mass discrete model of tribometer for the research on dynamic friction characteristics. Tribologia, XLI, 6/2010 (2010), 69-78.Search in Google Scholar

13. Marciniak J.: Biomaterials in bone surgery [in Polish]. Wydawnictwo Politechniki Śląskiej, Gliwice (1992).Search in Google Scholar

14. Marciniak J.: Biomaterials [in Polish]. Wydawnictwo Politechniki Śląskiej, Gliwice (2002).Search in Google Scholar

15. Morlock M., Schneider E., Bluhm A., Vollmer M., Bergmann G., Müller V., Honl M.: Duration and frequency of everyday activities in total hip patients. Journal of Biomechanics 34 (2001), 873-881.Search in Google Scholar

16. Munuera C, Matzelle T., Kruse N. at all.: Surface elastic properties of Ti alloys modified for medical implants: A force spectroscopy study, Acta Biomaterialia 3 (2007), 113-119.10.1016/j.actbio.2006.08.00917070123Search in Google Scholar

17. Okazaki Y.: Ito: New Ti alloy without Al and V for medical implants, Advanced Engineering Materials, Volume 2, Issue 5 (2000), 278-281.Search in Google Scholar

18. Pawelec Z., Molenda J., Wolszczak M.: Abrasive wear resistance of metal-polymer composites [in Polish]. Tribologia, XLI nr 5/2010 (2010), 117-130.Search in Google Scholar

19. Pawlak Z., Jurvelin J., Urbaniak W.: Biotribochemistry of the lubrication of natural joints [in Polish]. Tribologia, XLI nr 5/2010 (2010), 131-141.Search in Google Scholar

20. Saikko V.: A simulator study of friction in total replacement hip joints. Proc. Inst. Mech. Engrs, 206, (1992), 201-211.10.1243/PIME_PROC_1992_206_292_021300112Search in Google Scholar

21. Seramak T., Serbihski W., Zielihski A.: Porous biomaterial for orthopedic implants based on titanium alloy. Advances in Materials Science, Vol. 11, 1 (2011), 27-34.Search in Google Scholar

22. Serbihski W., Zielihski A., Seramak T., Ossowska A., Sobieszczyk S., Supernak M., Majkowska B.: Surface treatment of porous Ti13Nb13Zr alloy for biomedical applications [in Polish]. Inżynieria Materiałowa 2012/1 (2012), 6-12.Search in Google Scholar

23. Wendland J., Gierzyhska-Dolna M., Rybak T., Wiśniewski T., Rajchel B.: Investigation for a new biomaterial for the hip endoprostheses elements [in Polish]. Obróbka Plastyczna Metali, XX, 2 (2009), 1-17.Search in Google Scholar

24. Wendland J., Wiśniewski T., Rybak T., Gierzyhska-Dolna M.: Preliminary research on new solutions concerning biomaterials used for endoprostheses’ friction elements [in Polish]. Obróbka Plastyczna Metali XIX, 1 (2008), 1-5.Search in Google Scholar

25. http://www.tribologia.eu/ptt/inst/polGdanKoEksMa.htmSearch in Google Scholar

eISSN:
2083-4799
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Materials Sciences, Functional and Smart Materials