Grounding grid NiP-DLC composite corrosion resisting protection coating and preparing method
A technology of protective coating and grounding grid, which is applied in the direction of coating, metal material coating process, connection, etc., can solve the problem that few people pay attention to the research and development of protective coating, and achieve better corrosion resistance and oxidation resistance. High binding force and uniform distribution effect
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Embodiment 1
[0052] The Q235 steel was processed into a 10*10mm square sample, which was ground step by step with diamond sandpaper, and then the surface of the Q235 steel was mechanically polished. The polished sample was ultrasonically cleaned in alcohol and then dried to obtain a Q235 steel sample.
[0053] Put the Q235 steel sample into the plating solution to deposit a NiP alloy coating on the surface of the Q235 steel sample. The plating solution is a plating solution with a pH of 4.7 prepared by nickel sulfate, sodium hypophosphide, caustic soda and lactic acid, wherein the concentration of nickel sulfate The concentration of sodium hypophosphite is 30g / L, the concentration of sodium hypophosphite is 30g / L, the concentration of lactic acid is 25g / L, and the concentration of caustic soda is 5g / L.
[0054] Put the Q235 steel sample deposited with NiP alloy coating into the anode layer ion source deposition equipment for glow cleaning, see figure 1 , The Q235 steel sample is placed on ...
Embodiment 2
[0056] The Q235 steel was processed into a 10*10mm square sample, which was ground step by step with diamond sandpaper, and then the surface of the Q235 steel was mechanically polished. The polished sample was ultrasonically cleaned in alcohol and then dried to obtain a Q235 steel sample.
[0057] Put the Q235 steel sample into the plating solution to deposit a NiP alloy coating on the surface of the Q235 steel sample. The plating solution is a plating solution with a pH of 5 prepared by nickel sulfate, sodium hypophosphide, caustic soda and lactic acid, wherein the concentration of nickel sulfate The concentration of sodium hypophosphite is 30g / L, the concentration of sodium hypophosphite is 30g / L, the concentration of lactic acid is 25g / L, the concentration of caustic soda is 5g / L, the temperature of the plating solution is maintained at 95°C, and the thickness of the deposited NiP alloy coating is 27μm.
[0058] Put the Q235 steel sample deposited with NiP alloy coating into...
Embodiment 3
[0060] The Q235 steel was processed into a 10*10mm square sample, which was ground step by step with diamond sandpaper, and then the surface of the Q235 steel was mechanically polished. The polished sample was ultrasonically cleaned in alcohol and then dried to obtain a Q235 steel sample.
[0061] Put the Q235 steel sample into the plating solution to deposit a NiP alloy coating on the surface of the Q235 steel sample. The plating solution is a plating solution with a pH of 5 prepared by nickel sulfate, sodium hypophosphide, caustic soda and lactic acid, wherein the concentration of nickel sulfate The concentration of sodium hypophosphite is 30g / L, the concentration of sodium hypophosphite is 30g / L, the concentration of lactic acid is 25g / L, the concentration of caustic soda is 5g / L, the temperature of the plating solution is maintained at 100°C, and the thickness of the deposited NiP alloy coating is 28μm.
[0062] Put the Q235 steel sample deposited with NiP alloy coating int...
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