A kind of method for preparing micro-arc oxidation film of aluminum-titanium composite plate
A technology of micro-arc oxidation and composite plate, which is applied in the direction of anodic oxidation, coating, surface reaction electrolytic coating, etc., can solve the problems of corrosion resistance and thermal shock resistance in the transition zone of the micro-arc oxidation film, and achieve Easy process production, increased corrosion resistance, improved corrosion resistance and thermal shock resistance
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Embodiment 1
[0023] A method for preparing a micro-arc oxidation film on an aluminum-titanium composite plate, comprising the steps of:
[0024] (1) Use titanium as the base plate and aluminum as the cladding plate to form an aluminum-titanium composite plate by explosive welding. The sample of the aluminum-titanium composite plate is polished step by step with sandpaper until the surface is smooth, ultrasonically cleaned in ethanol for 5 minutes, and air-dried at room temperature;
[0025] (2) The aluminum-titanium composite plate sample is immersed in the electrolyte as the anode, and the stainless steel electrolyte tank is used as the cathode, and the AC constant voltage mode is used for micro-arc oxidation treatment. After the treatment, the micro-arc oxidation sample is rinsed with cold water , remove the residue on the surface, and air-dry at room temperature to obtain a micro-arc oxidation film on the surface of the aluminum-titanium composite plate.
[0026] The electrolyte is prep...
Embodiment 2
[0030] A method for preparing a micro-arc oxidation film on an aluminum-titanium composite plate, comprising the steps of:
[0031] (1) Using titanium as the substrate and aluminum as the cladding plate to form an aluminum-titanium composite plate by explosive welding, the sample of the aluminum-titanium composite plate is polished step by step with sandpaper until the surface is smooth, ultrasonically cleaned in ethanol for 10 minutes, and air-dried at room temperature;
[0032] (2) The aluminum-titanium composite plate sample is immersed in the electrolyte as the anode, and the stainless steel electrolyte tank is used as the cathode, and the AC constant voltage mode is used for micro-arc oxidation treatment. After the treatment, the micro-arc oxidation sample is rinsed with cold water , remove the residue on the surface, and air-dry at room temperature to obtain a micro-arc oxidation film on the surface of the aluminum-titanium composite plate.
[0033] The preparation of th...
Embodiment 3
[0037] A method for preparing a micro-arc oxidation film on an aluminum-titanium composite plate, comprising the steps of:
[0038] (1) Using titanium as the substrate and aluminum as the cladding plate to form an aluminum-titanium composite plate through explosive welding, the sample of the aluminum-titanium composite plate is polished step by step with sandpaper until the surface is smooth, ultrasonically cleaned in acetone for 5 minutes, and air-dried at room temperature;
[0039] (2) The aluminum-titanium composite plate sample is immersed in the electrolyte as the anode, and the stainless steel electrolyte tank is used as the cathode, and the AC constant voltage mode is used for micro-arc oxidation treatment. After the treatment, the micro-arc oxidation sample is rinsed with cold water , remove the residue on the surface, and air-dry at room temperature to obtain a micro-arc oxidation film on the surface of the aluminum-titanium composite plate.
[0040] The preparation o...
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