A method for suppressing hydrogen evolution by anodic oxidation of aluminum powder under neutral conditions
A technology of anodizing and neutral conditions, applied in anodizing and other directions, can solve the problems of prone to hydrogen evolution and poor stability of aluminum powder, and achieve the effects of short production cycle, good resistance to hydrogen evolution, and simple process
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Embodiment 1
[0027] The first step is to disperse 12 parts of aluminum powder in 100 parts of deesterification solution in parts by mass, stir at 25°C for 2 minutes, then rinse with hot water at 40°C, and dry;
[0028] In this embodiment, the selected aluminum powder pigments are flake-shaped aluminum powder pigments with a diameter of 0.5-2 μm and a thickness of 0.05-1 μm.
[0029] In the second step, put the aluminum powder prepared in the first step into the electrolyte, make the aluminum powder in a floating state, touch the anode at any time while flowing, and keep the state of not touching the cathode (use a roller smaller than the particle size of the aluminum powder for the cathode) net or filter paper), connect the DC power supply, the control voltage is 35V, and the anode current density is 3A / dm 2 , the temperature is 25°C, after 60min anodizing treatment, it can be out of the tank;
[0030] In the third step, the aluminum powder prepared in the second step is filtered, washed ...
Embodiment 2
[0037] The difference from Example 1 is that,
[0038] In the first step, disperse 14 parts of aluminum powder in 125 parts of deesterification solution in parts by mass, stir at 30°C for 3 minutes, then rinse with hot water at 45°C, and dry;
[0039] In this embodiment, the selected aluminum powder pigments are flake-shaped aluminum powder pigments with a diameter of 5-10 μm and a thickness of 0.05-1 μm.
[0040] In the second step, put the aluminum powder prepared in the first step into the electrolyte, make the aluminum powder in a floating state, touch the anode at any time while flowing, and keep the state of not touching the cathode (use a roller smaller than the particle size of the aluminum powder for the cathode) net or filter paper), connect the DC power supply, the control voltage is 40V, and the anode current density is 3.5A / dm 2 , the temperature is 30°C, after 50min anodizing treatment, it can be out of the tank;
[0041] In the third step, the aluminum powder ...
Embodiment 3
[0048] The difference from Example 1 is that,
[0049] In the first step, disperse 15 parts of aluminum powder in 140 parts of deesterification solution in parts by mass, stir at 35°C for 5 minutes, then rinse with hot water at 50°C, and dry;
[0050] In this embodiment, the selected aluminum powder pigments are flake-shaped aluminum powder pigments with a diameter of 20-30 μm and a thickness of 0.05-1 μm.
[0051] In the second step, put the aluminum powder prepared in the first step into the electrolyte, make the aluminum powder in a floating state, touch the anode at any time while flowing, and keep the state of not touching the cathode (use a roller smaller than the particle size of the aluminum powder for the cathode) net or filter paper), connect the DC power supply, the control voltage is 45V, and the anode current density is 4A / dm 2 , the temperature is 30°C, after 70min anodizing treatment, it can be out of the tank;
[0052] In the third step, the aluminum powder p...
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