Preparation method of biodegradable magnesium alloy/calcium phosphorus coating composite material
A calcium-phosphorus coating and composite material technology, applied in the field of biomedical degradable material preparation, can solve problems such as lack of systematic evaluation standards and systems for clinical application performance, rapid degradation, material failure, etc., to promote research and application , reduce the degradation rate and improve the effect of corrosion resistance
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Embodiment 1
[0020] (1) Pretreatment of the substrate: the magnesium alloy is cut into moderately sized samples with a wire cutting machine, and polished with 2000# alumina water-resistant sandpaper to remove the oxide layer on the surface of the sample. Ultrasonic cleaning with water and ethanol for 10 min, and drying at room temperature for later use.
[0021] (2) Configuration of conversion solution: The conversion solution used was prepared from sodium dihydrogen phosphate dihydrate and calcium nitrate tetrahydrate, and a low-concentration conversion solution (as shown in Table 1) was prepared, wherein the solvent was deionized water.
[0022] (3) Preparation of biomimetic calcium-phosphorus coating: Put the processed sample and the transformation solution into the inner tank of the hydrothermal kettle. Cover, put the water heating kettle into the furnace to heat. Heat treatment at 100°C for 2.5 hours to prepare calcium phosphorus coating;
[0023] (4) Performance testing: corrosion ...
Embodiment 2
[0025] (1) Pretreatment of the substrate: the magnesium alloy is cut into moderately sized samples with a wire cutting machine, and polished with 2000# alumina water-resistant sandpaper to remove the oxide layer on the surface of the sample. Ultrasonic cleaning with water and ethanol for 20 min, and drying at room temperature for later use.
[0026] (2) Configuration of conversion solution: The conversion solution used was prepared from sodium dihydrogen phosphate dihydrate and calcium nitrate tetrahydrate, and a low-concentration conversion solution (as shown in Table 1) was prepared, wherein the solvent was deionized water.
[0027] (3) Preparation of biomimetic calcium-phosphorus coating: Put the processed sample and 80ml of conversion liquid into the inner tank of the hydrothermal kettle, the volume of the conversion solution accounts for 1 / 2 of the volume of the inner tank of the hydrothermal kettle, and tighten the water heating kettle Metal lid, put the hydrothermal ket...
Embodiment 3
[0030] (1) Pretreatment of the substrate: the magnesium alloy is cut into moderately sized samples with a wire cutting machine, and polished with 2000# alumina water-resistant sandpaper to remove the oxide layer on the surface of the sample. Water and ethanol ultrasonic cleaning for 30min, and dry at room temperature, set aside.
[0031] (2) Configuration of conversion solution: The conversion solution used was prepared from sodium dihydrogen phosphate dihydrate and calcium nitrate tetrahydrate, and a low-concentration conversion solution (as shown in Table 1) was prepared, wherein the solvent was deionized water.
[0032] (3) Preparation of biomimetic calcium-phosphorus coating: Put the processed sample and the transformation solution into the inner tank of the hydrothermal kettle. Cover, put the water heating kettle into the furnace to heat. Heat treatment at 140°C for 1.5h to prepare calcium phosphorus coating;
[0033] (4) Performance testing: corrosion performance chara...
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