Osseoinductive metal implants for a living body and producing method thereof
This invention provides an Osseo-inductive metal implant for a living body and the producing method thereof and, more particularly, the Osseo-inductive metal implant for a living body according to the present invention is produced by forming, on the surface of the metal implant, the layer of metal oxide and the layer of bio-active material injected.
1. A method of producing a metal implant for a living body, the method comprising:
mechanically processing a titanium alloy to form a metal implant substrate;
forming a titanium oxide layer on a surface of the processed metal implant substrate with a thickness of 3 nm to 20 nm;
cleaning a surface of the titanium oxide layer on the metal implant substrate in an alkali degreasing solution;
cleaning the titanium oxide layer of the metal implant substrate in a plasma atmosphere;
ionizing a bio-active material selected from a group of consisting of Li, Na, Mg and Ca; and
implanting the ionized bio-active material on the surface of the plasma cleaned titanium oxide layer of the metal implant substrate,
wherein the ionized bio-active material is implanted on the surface of the plasma cleaned titanium oxide layer with 40 KeV of ion energy,
wherein the ionized bio-active material is implanted while maintaining a temperature of the plasma cleaned titanium oxide layer at 25° C., and
wherein the ionized bio-active material is implanted to form a bio-active material layer having a thickness of 0.1 μm.
2. The method of producing the metal implant for a living body of claim 1 , wherein the titanium oxide layer on the metal implant substrate is formed by oxidation in an air atmosphere.
3. The method of producing the metal implant for a living body of claim 2 , wherein the cleaning in the plasma atmosphere is performed with Ar ion plasma for ten minutes under a pressure of 10 Pa, and a voltage of 300V by providing a cathode reaction in a vacuum chamber.
4. The method of producing the metal implant for a living body of claim 1 , wherein the bio-active material layer is formed between the titanium oxide layer and the metal implant substrate.
5. The method of producing the metal implant for a living body of claim 1 , wherein the bio-active material is Ca.
6. The method of producing the metal implant for a living body of claim 1 , wherein the bio-active material is Mg.
7. The method of producing the metal implant for a living body of claim 1 , wherein the cleaning in the plasma atmosphere is performed with Ar ion plasma for ten minutes under a pressure of 10 Pa, and a voltage of 300V by providing a cathode reaction in a vacuum chamber.