Joint prosthesis thigh bone prosthesis and preparation method for same
A technology of femoral prosthesis and artificial joint, applied in the direction of prosthesis, femur, joint implants, etc., can solve the problems of unstable long-term fixation effect, poor bone ingrowth effect, and rehabilitation after surgery failure, so as to maintain effective mechanical Support, high mechanical strength, reduce the effect of stress shielding
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[0019] In the preparation method of the artificial joint femoral prosthesis of the present invention, various processing methods are used to generate holes or grooves on the artificial joint femoral prosthesis body, and then the column process, spherical process or Other three-dimensional shapes.
[0020] The various processing methods are any processing methods known in the art that can form holes or grooves on the main body of the artificial joint femoral prosthesis, such as casting, forging, laser melting, acid etching and the like.
[0021] The additive manufacturing technology is preferably but not limited to 3D printing.
[0022] The artificial joint femoral prosthesis body is preferably but not limited to be made by vacuum dewaxing casting or forging of biocompatible metal materials, wherein the biocompatible metal materials are preferably but not limited to titanium alloys, cobalt-chromium alloys, Among them, titanium alloys include Ti-8Fe-8Ta-4Zr. Compared with tradi...
Embodiment 1
[0024] An artificial joint femoral prosthesis, the preparation method of which comprises: using cobalt chromium molybdenum alloy to manufacture the artificial joint femoral prosthesis body by vacuum dewaxing casting, and then adopting the laser melting method to bond the artificial joint femoral prosthesis body and human bone for a long time Holes or grooves are formed on the surface of the contact part, and then 3D printing is used to construct columnar protrusions, spherical protrusions or other three-dimensional shapes in the holes; the laser melting method adopts the existing technology to make the holes with a diameter of 50 μm and a depth of 25 μm, so that the grooves The width is 50 μm, and the depth is 25 μm; the 3D printing technology adopts the existing technology to make the height of the pillars, spherical protrusions or other three-dimensional shapes be 2 μm.
Embodiment 2
[0026] An artificial joint femoral prosthesis, the preparation method of which comprises: using cobalt chromium molybdenum alloy to manufacture the artificial joint femoral prosthesis body by vacuum dewaxing casting, and then adopting the laser melting method to bond the artificial joint femoral prosthesis body and human bone for a long time Holes or grooves are formed on the surface of the contact part, and then 3D printing is used to construct columnar protrusions, spherical protrusions or other three-dimensional shapes in the holes; the laser melting method adopts the existing technology to make the holes with a diameter of 10000 μm and a depth of 5000 μm, so that the grooves The width is 10,000 μm, and the depth is 5,000 μm; the 3D printing technology adopts the existing technology, so that the height of the pillar, spherical protrusion or other three-dimensional shape is 6,000 μm.
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