Metal implant material with controllable corrosion and degradation and its application
An implant material and metal technology, applied in the field of biomedical metal implant materials, can solve the problems of loss of strength, low hardness and rigidity, poor degradation controllability, etc., to reduce volume and quality, ensure mechanical properties, and good degradation cycle Effect
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Embodiment 1
[0019] Pure magnesium (99.95%, average grain size: 32 μm) is used to make a coronary stent sample (after polishing, the wire diameter is 70-80 μm), and the service time of the stent needs to be 6 months to one year according to the usual clinical requirements. The stent was ultrasonically cleaned in alcohol for 5 minutes, dried, and soaked in the simulated plasma solution prepared according to Table 1. After about 7 months, it was completely corroded and degraded, and the average corrosion rate was between 0.1-0.12mm / year.
Embodiment 2
[0021] Cast pure magnesium (99.5%, average grain size: 257μm, size: 19.6mm×25.7mm×2.0mm) is polished, ultrasonically cleaned in alcohol for 5 minutes, dried, and soaked in 0.9% NaCl solution One month, the average corrosion degradation rate calculated according to the weight loss is: 1.31mm / year, and it is estimated that it will take about one and a half years for the entire sample to fully degrade.
Embodiment 3
[0023] After forging, pure magnesium (99.95%, average grain size: 62μm, size: 18.9mm×22.6mm×1.76mm) is polished, ultrasonically cleaned in alcohol for 5 minutes, dried, and soaked in 0.9% NaCl solution One month, the average corrosion degradation rate calculated according to the weight loss is: 0.42mm / year, and it is estimated that it will take about two to three years for the entire sample to degrade completely.
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