Method for preparing ZrO2 compound ceramic film on surfaces of magnesium and magnesium alloy through microarc oxidization
A technology of composite ceramic film and micro-arc oxidation, which is applied in anodic oxidation and other directions, can solve problems that cannot meet the needs of aerospace and aviation fields, and achieve good versatility, long service life, and improved corrosion resistance.
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Embodiment 1
[0028] Step 1. Use water as a solvent to prepare a zirconium salt system solution. Each liter of the zirconium salt system solution contains 15g of zirconium salt, 10g of sodium hexametaphosphate, 3g of sodium silicate, 4g of sodium fluoride, 12mL of glycerin, and 8mL of ammonia water. Adjust the zirconium salt The pH value of the system solution is 7-8, and then the zirconium salt system solution is placed in the electrolytic cell for 24 hours to be used as an electrolyte; the zirconium salt is zirconium acetate;
[0029] Step 2. Place the magnesium alloy to be treated in the electrolyte described in step 1 as the anode, and the stainless steel plate as the cathode, control the temperature of the electrolyte to 10°C, and set the micro-arc oxidation power supply (DC pulse power supply) to work at a constant voltage In this method, the pulse frequency is adjusted to 600Hz, the duty cycle is 20%, and the constant voltage treatment is performed under the condition of 280V for 10 m...
Embodiment 2
[0035] The preparation method of this example is the same as that of Example 1, except that the zirconium salt is zirconium hydroxide, zirconium carbonate, ammonium zirconium fluoride or sodium zirconium silicate.
[0036] In this example, by adding Zr element in the electrolyte, the prepared magnesium alloy micro-arc oxidation ceramic film contains ZrO 2 Composite ceramics to improve the corrosion resistance of the ceramic membrane. When the prepared ceramic membrane is not subjected to post-sealing treatment, the corrosion resistance of neutral NaCl salt spray can reach more than 400h, and the microhardness can reach more than 1000HV.
Embodiment 3
[0038] Step 1. Prepare a zirconium salt system solution with water as a solvent. Each liter of the zirconium salt system solution contains 12g of zirconium salt, 12g of sodium hexametaphosphate, 5g of sodium silicate, 2g of sodium fluoride, 10mL of glycerin, and 8mL of ammonia water. Adjust the zirconium salt The pH value of the system solution is 9-10, and then the zirconium salt system solution is placed in the electrolytic cell for 20 hours to be used as an electrolyte; the zirconium salt is zirconium hydroxide;
[0039] Step 2. Put the magnesium to be treated in the electrolyte solution described in step 1 as the anode, and the stainless steel plate as the cathode, control the temperature of the electrolyte to 35°C, and set the micro-arc oxidation power supply (DC pulse power supply) as a constant voltage working mode , adjust the pulse frequency to 500Hz, and the duty cycle to 10%, and treat it at a constant voltage of 250V for 20 minutes, then increase the voltage to 400V...
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