Nano carbon tube reinforced plastics/ceramics-base composition for repairing bone
A composite material and carbon nanotube technology, used in medical science, prostheses, etc., can solve the problems of inability to promote bone cell growth, no osteoconductivity, non-bacterial inflammatory response, etc., and achieve good biodegradability, The effect of good biocompatibility and sufficient mechanical strength
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Embodiment 1
[0026] Fill the fully ground and mixed PHB powder (87wt%), HA powder (10wt%) and carbon nanotubes (3wt%) figure 1 In the cavity of the upper mold shown, and preset large-grained PHB raw materials in the cavity of the upper mold to prevent the powder from falling. at 3×10 7 It was extruded into the cavity of the lower die under a pressure of 120 Pascals, the mold was cooled to room temperature and the extruded sliver was taken out.
Embodiment 2
[0028] Fill the fully ground and mixed PHB powder (75wt%), TCP powder (20wt%) and carbon nanotubes (5wt%) figure 1 In the cavity of the upper mold shown, and preset large-grained PHB raw materials in the cavity of the upper mold to prevent the powder from falling. in 8×10 7 It was extruded into the cavity of the lower die at 110° C. under Pascal pressure, the die was cooled to room temperature and the extruded sliver was taken out.
Embodiment 3
[0030] Fill the fully ground mixed PHB powder (59.85wt%), HA powder (30wt%) carbon nanotubes (10wt%) and nucleating agent ammonium chloride (0.15wt%) figure 1 In the cavity of the upper mold shown, and preset large-grained PHB raw materials in the cavity of the upper mold to prevent the powder from falling. at 3×10 8 It was extruded into the cavity of the lower die at 100° C. under Pascal pressure, the die was cooled to room temperature and the extruded sliver was taken out.
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