Method for preparing hydroxyapatite coating on surface of titanium or titanium alloy
A technology of hydroxyapatite and titanium alloy, which is applied in the field of medical devices and can solve the problems of long time-consuming and low production volume
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Embodiment 1
[0021] A method for preparing a hydroxyapatite coating on the surface of a titanium alloy, characterized in that it comprises the following steps:
[0022] S1. Using bioactive glass particles as a sandblasting medium, sandblasting the surface of the titanium alloy, cleaning and drying after the treatment, to obtain a sandblasting substrate; the particle size of the bioactive glass particles is 50nm;
[0023] S2. Immerse the titanium alloy in an aqueous solution containing calcium ions, and keep it at room temperature for 30 seconds, and the concentration of the calcium ions is 0.1mol / L;
[0024] S3. Under vacuum conditions, provide phosphorus element vapor and ozone to collide with the surface of the substrate. The flow rate of phosphorus element vapor is 10 sccm, and the ozone flow rate is 1 sccm. By adjusting the temperature, the reaction of the component elements only occurs on the substrate to promote A low-crystalline, bioactive hydroxyapatite coating is formed on the sur...
Embodiment 2
[0027] A method for preparing a hydroxyapatite coating on the surface of a titanium alloy, characterized in that it comprises the following steps:
[0028] S1. Using bioactive glass particles as a sandblasting medium, sandblasting the surface of the titanium alloy, cleaning and drying after the treatment, to obtain a sandblasting substrate; the particle size of the bioactive glass particles is 200nm;
[0029] S2. Immerse the titanium alloy in an aqueous solution containing calcium ions, and keep it at room temperature for 60 seconds, and the concentration of the calcium ions is 2.0mol / L;
[0030] S3. Under vacuum conditions, provide phosphorus element vapor and ozone to collide with the surface of the substrate. The flow rate of phosphorus element vapor is 50 sccm, and the flow rate of ozone is 5 sccm. By adjusting the temperature, the reaction of the component elements only occurs on the substrate to promote A low-crystalline, bioactive hydroxyapatite coating is formed on the...
Embodiment 3
[0033] A method for preparing a hydroxyapatite coating on the surface of a titanium alloy, characterized in that it comprises the following steps:
[0034] S1. Using bioactive glass particles as a sandblasting medium, sandblasting the surface of the titanium alloy, cleaning and drying after the treatment, to obtain a sandblasting substrate; the particle size of the bioactive glass particles is 100nm;
[0035] S2. Immerse the titanium alloy in an aqueous solution containing calcium ions, and keep it at room temperature for 30 seconds, and the concentration of the calcium ions is 1.0mol / L;
[0036] S3. Under vacuum conditions, provide phosphorus element vapor and ozone to collide with the surface of the substrate. The flow rate of phosphorus element vapor is 1000 sccm, and the flow rate of ozone is 10 sccm. By adjusting the temperature, the reaction of the component elements only occurs on the substrate to promote A low-crystalline, bioactive hydroxyapatite coating is formed on ...
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