Method for preparing biomedical alloy HA (hahnium) coating by gelcasting
A gel injection molding, biomedical technology, applied in coating, medical science, tissue regeneration, etc., can solve the problems of inability to prepare coating and metal matrix materials at one time, difficult processing and forming, long time consumption, etc. The effect of improving material utilization, reducing processing cost, and excellent mechanical properties
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Embodiment example 1
[0027] A method for preparing titanium alloy HA coating by gel injection molding, the specific steps are as follows:
[0028] Step (1): Use a 3D printer to print out the mold of the bone joint, and then cast the bone joint with silicone mold splitting to make a gel injection mold;
[0029] Step (2): prepare the premixed solution according to the volume fraction percentage, add organic matter and pore-forming agent in the solvent, wherein the solvent is absolute ethanol 95%, organic matter is methyl cellulose (MC) 1.2%, hydroxypropyl methylcellulose Prime (HPMC) 3.75%, pore-forming agent polyethylene glycol is 0.05%, stir until dissolving completely;
[0030] Step (3): weigh 42vol.% of 35nm hydroxyapatite powder, marked as A; weigh 42vol.% of 20nm transition layer powder, marked as B, wherein the transition layer powder contains 50% titanium dioxide, zirconium dioxide 30%, magnesium silicate 20%; weigh 40 μm spherical TC4 powder, marked as C;
[0031] Step (4): Add 57vol.% of...
Embodiment example 2
[0037] A kind of method that gel injection molding prepares magnesium alloy HA coating, concrete steps are as follows:
[0038] Step (1): Use a 3D printer to print out the mold of the ulna, and then cast the ulna with polyurethane to make a gel injection mold;
[0039] Step (2): Prepare the premix solution according to the volume fraction percentage, add organic matter and pore forming agent in the solvent, wherein the solvent is dichloromethane 94%, organic matter is methyl cellulose (MC) 2.34%, hydroxypropyl methylcellulose Prime (HPMC) 3.6%, pore-forming agent polyethylene glycol is 0.06, stirs until dissolving completely;
[0040] Step (3): weigh 50vol.% of 25nm hydroxyapatite powder, marked as A; weigh 50vol.% of 15nm transition layer powder, marked as B, wherein the transition layer powder contains 20% titanium dioxide, zirconium dioxide 20%, magnesium silicate 60%; weigh 40μm spherical AZ91E magnesium alloy powder, marked as C;
[0041]Step (4): Add 49.18vol.% of the ...
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