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003 KUKTEM
005 20251117113309.0
008 151203t2015 my da f abm 000 0 eng d
020 _aTHE0005532(Local)
039 9 _a201905161049
_bhanafiah
_c201710091214
_daishah
_y201512031614
_zasma
040 _aUMP
090 _aR857.C63 M37 2015 r Thesis
100 0 _aMas Ayu Hassan
245 1 0 _aEffects of hydroxyapatite coating with oxide interlayer on bioactivity performances in CoCrMo alloy /
_cMas Ayu Hassan
260 _aSkudai, Johor :
_bUTM,
_c2015
300 _axviii, 141 p. :
_bill. (some col.) ;
_c30 cm. + 1 CD ROM
502 _aThesis (Doctor of Philosophy (Mechanical Engineering)) -- Universiti Teknologi Malaysia – 2015
504 _aBibliography : p. 117-126
520 3 _aCobalt-chromium-molybdenum (Co-Cr-Mo) alloys have been reported difficult to bond directly on hard tissues owing to encapsulation by fibrous tissues. Several attempts have been made to improve the situation including coating with a bioactive layer which is mainly hydroxyapatite (HA). Various HA coating methods have been introduced but massive micro crack surface, delamination and low adhesion strength of HA coating are still the major concerns that cause the harmful release of metal ions. In this study, an oxide interlayer on Co-Cr-Mo alloys was developed through thermal oxidation prior to HA coating with the objective to provide better anchorage of HA coatings on the substrate surface, reduce metal ions release and at the same time enhancing the cell attachment. The thermal oxidation process was conducted in a muffle furnace at different temperatures (850°C, 1050°C and 1250°C) for 3 hours to create an oxide interlayer on the substrate surface. It was followed by coating HA on the bare material and on the oxidized substrates using sol gel dip coating technique. Scratch test results showed that the bonding strength of the HA on the oxide interlayer is markedly higher than the HA coated substrates without oxide interlayer. It seems that rough surface of oxide interlayer provides better mechanical interlocking of HA particles to the substrate surface. Inductively coupled plasma-mass spectrometry (ICP-MS) test illustrated that the release of Co and Cr ions from the HA coated oxidized substrates reduced significantly after 28 days immersion as compared to bare material and HA coated substrates without oxide interlayer. This indicates that oxide interlayer is able to act as an additional barrier to suppress the metal ions release. Similarly, the HA coated substrates with oxide interlayer demonstrate strong attachment and proliferation of cells than the HA coated substrates without oxide interlayer. It is concluded that the introduction of an intermediate oxide layer on Co-Cr-Mo substrate prior to HA coating has shown a positive effect in terms of increment of the adhesion strength of HA coating as well as cell bioactivity performance
650 0 _aCobalt-chromium-nickel alloys
650 0 _aBiomedical materials
856 4 0 _uhttp://ecollib.ump.edu.my/3566/
_zLibrary access only
999 _aVIRTUA40
_c6283
_d6289
999 _aVTLSSORT0080*0200*0400*0900*1000*2450*2600*3000*5020*5040*5200*6500*6501*8560*9992