A kind of titanium oxide composite coating and preparation method thereof
A composite coating, titanium oxide technology, applied in coating, surface reaction electrolytic coating, metal material coating technology and other directions, to achieve good antibacterial properties, fast proliferation rate, and accelerate the recovery of patients.
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[0036] The invention provides a method for preparing a titanium-based implant coating with both antibacterial and osteoblast proliferation-promoting properties, wherein medical titanium metal or alloy is used as the base material, and micro-arc oxidation technology is used to prepare porous coatings on the surface of the base material in advance. The titanium oxide coating is then implanted with iron ions into the surface and subsurface of the titanium oxide coating by a plasma immersion implantation process to form a composite titanium oxide coating modified with iron oxide nanoparticles.
[0037] The present invention first adopts micro-arc oxidation technology to generate porous titanium oxide coating in situ in a specific electrolyte, and then uses plasma immersion ion implantation technology for secondary modification to form a titanium oxide composite coating modified by iron oxide nanoparticles , the method comprises the following steps and process conditions:
[0038] ...
Embodiment 1
[0063] (a) Using deionized water, mix 0.018 mol / L sodium silicate nonahydrate, 0.037 mol / L sodium glycerophosphate and 0.050 mol / L sodium hydroxide to prepare an electrolyte solution. (b) With titanium as the anode and stainless steel as the cathode, a DC pulse power supply is used at a constant current density of 0.125A / cm 2 , Voltage 390 ~ 420V, frequency 800Hz, duty cycle ± 10% under the conditions of treatment for 2min, keep the electrolyte temperature below 60 ℃. (c) After the sample was taken out, it was rinsed in deionized water and dried naturally. (d) Put the sample into the immersion plasma immersion ion implantation vacuum chamber, and pump it to 5×10 -3 After Pa, iron ion implantation was performed for 60 minutes under the parameters of implantation voltage 30 kV, frequency 7 Hz, and pulse width 500 μs. After testing, the thickness of the coating is about 3-15 μm, and the element composition is mainly Ti, O, Si, P, Fe. X-ray diffraction analysis shows that the p...
Embodiment 2
[0072] (a) Using deionized water, mix 0.018 mol / L sodium silicate nonahydrate, 0.037 mol / L sodium glycerophosphate and 0.050 mol / L sodium hydroxide to prepare an electrolyte solution. (b) With titanium as the anode and stainless steel as the cathode, a DC pulse power supply is used at a constant current density of 0.125A / cm 2 , Voltage 390 ~ 420V, frequency 800Hz, duty cycle ± 10% under the conditions of treatment for 2min, keep the electrolyte temperature below 60 ℃. (c) After the sample was taken out, it was rinsed in deionized water and dried naturally. (d) Put the sample into the submerged plasma injection vacuum chamber and pump it to 5×10 -3 After Pa, iron ion implantation was performed for 30 minutes under the parameters of implantation voltage 30 kV, frequency 7 Hz, and pulse width 500 μs. After testing, the thickness of the coating is about 3-15 μm, and the element composition is mainly Ti, O, Si, P, Fe. X-ray diffraction analysis shows that the phase composition o...
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