Zirconium-niobium alloy partitioned bone trabecula uni-compartment tibial plateau containing oxide layer and preparation method
A zirconium-niobium alloy and tibial plateau technology is applied in the field of trabecular bone single-compartment tibial plateau and preparation field of zirconium-niobium alloy containing oxide layer, which can solve the problem of increasing the stress shielding effect of the interface between the prosthesis and the bone and uniform trabecular prosthesis fixation. Inhomogeneous, powder fails to get good fusion and other problems, to achieve excellent bone ingrowth performance, reduce stress shielding effect, and excellent biocompatibility.
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Embodiment 1
[0057] The preparation method of the zirconium-niobium alloy partitioned trabecular unicompartmental tibial platform containing an oxide layer comprises the following steps:
[0058] 1) Using zirconium-niobium alloy powder as raw material, the first intermediate product of the tibial plateau with zirconium-niobium alloy partitioned trabecular unicompartment containing the oxide layer was obtained by 3D printing, and the first intermediate product was placed in a hot isostatic pressing furnace. Under the protection of helium, raise the temperature to 1250°C, place it at a constant temperature of 180MPa for 3 hours, drop to normal pressure, and take it out with the furnace cooling to below 200°C to obtain the second intermediate product;
[0059] 2) Place the second intermediate product in a programmed cooling box to cool down to -80°C at a rate of 1°C / min, place it at a constant temperature for 10 hours, and take it out of the programmed cooling box; place it in liquid nitrogen ...
Embodiment 2
[0074] The preparation method of the zirconium-niobium alloy partitioned trabecular unicompartmental tibial platform containing an oxide layer comprises the following steps:
[0075] 1) Using zirconium-niobium alloy powder as raw material, the first intermediate product of the tibial plateau with zirconium-niobium alloy partitioned trabecular unicompartment containing the oxide layer was obtained by 3D printing, and the first intermediate product was placed in a hot isostatic pressing furnace. Under the protection of helium, raise the temperature to 1325°C, place it at a constant temperature of 160MPa for 2 hours, drop to normal pressure, and take it out with the furnace cooling to below 200°C to obtain the second intermediate product;
[0076] 2) Place the second intermediate product in a programmed cooling box to cool down to -100°C at a rate of 1°C / min, place it at a constant temperature for 7 hours, and take it out of the programmed cooling box; place it in liquid nitrogen ...
Embodiment 3
[0091] The preparation method of the zirconium-niobium alloy partitioned trabecular unicompartmental tibial platform containing an oxide layer comprises the following steps:
[0092] 1) Using zirconium-niobium alloy powder as raw material, the first intermediate product of the tibial plateau with zirconium-niobium alloy partitioned trabecular unicompartment containing the oxide layer was obtained by 3D printing, and the first intermediate product was placed in a hot isostatic pressing furnace. Under the protection of argon, raise the temperature to 1400°C, place it at a constant temperature of 140MPa for 1 hour, drop to normal pressure, and take it out with the furnace cooling to below 200°C to obtain the second intermediate product;
[0093] 2) Place the second intermediate product in a programmed cooling box to cool down to -120°C at a rate of 1°C / min, place it at a constant temperature for 5 hours, and take it out of the programmed cooling box; place it in liquid nitrogen fo...
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