A Novel Composite Coating Surface Modified by Carbon Dioxide Laser
A laser surface modification and composite coating technology, applied in coatings, radiation-absorbing coatings, etc., can solve the problems of harmful gases generated by coating components, increased surface roughness of workpieces, micro-cracks, etc., and achieve uniform coating. Good performance, easy cleanup, cohesive effect
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Embodiment 1
[0025] The coating is divided into two parts: A-type microalloying layer and B-type anti-oxidation layer; when coating on the surface of the workpiece, the A-type microalloying layer coating is evenly coated on the surface of the workpiece for 0.6 mm, and after it is completely dry, apply Brush B-type anti-oxidation layer coating, the thickness is 0.1mm; A-type microalloying layer is a suspension composed of mixed powder and mixed solvent; the mixed powder uses ultra-fine silica powder with a particle size of 3000 mesh as the laser-absorbing The main material of energy, sub-micron copper powder (Cu) as the main material of micro-alloying, 8000 mesh neodymium-iron alloy powder (NdFe) as auxiliary material to provide lattice porosity, zinc stearate (C 36 h 70 o 4 Zn) is used as a powder binder, and the mixed powder is obtained by using a ball mill for dry mixing and ball milling for 30 minutes; the mixed solvent is mixed with ethanol (C 6 h 12 o 6 ) as the main ingredient, b...
Embodiment 2
[0031] The coating is divided into two parts: A-type microalloying layer and B-type anti-oxidation layer; when coating on the surface of the workpiece, first apply the A-type microalloying layer paint evenly on the surface of the workpiece for 0.5mm, and then apply it after it is completely dry. Brush B-type anti-oxidation layer coating, the thickness is 0.2mm; A-type microalloying layer is a suspension composed of mixed powder and mixed solvent; the mixed powder uses ultra-fine silica powder with a particle size of 3000 mesh as the laser-absorbing The main material of energy, sub-micron copper powder (Cu) as the main material of micro-alloying, 8000 mesh neodymium-iron alloy powder (NdFe) as auxiliary material to provide lattice porosity, zinc stearate (C 36 h 70 o 4 Zn) is used as a powder binder, and the mixed powder is obtained by using a ball mill for dry mixing and ball milling for 30 minutes; the mixed solvent is mixed with ethanol (C 6 h 12 o 6 ) as the main ingred...
Embodiment 3
[0037] The coating is divided into two parts: A-type microalloying layer and B-type anti-oxidation layer; when coating on the surface of the workpiece, first apply the A-type microalloying layer paint evenly on the surface of the workpiece for 0.5mm, and then apply it after it is completely dry. Brush B-type anti-oxidation layer coating, the thickness is 0.1mm; A-type microalloying layer is a suspension composed of mixed powder and mixed solvent; the mixed powder uses ultra-fine silica powder with a particle size of 2000 mesh as the laser-absorbing The main material of energy, sub-micron copper powder (Cu) as the main material of micro-alloying, 8000 mesh neodymium-iron alloy powder (NdFe) as auxiliary material to provide lattice porosity, zinc stearate (C 36 h 70 o 4 Zn) is used as a powder binder, and the mixed powder is obtained by using a ball mill for dry mixing and ball milling for 30 minutes; the mixed solvent is mixed with ethanol (C 6 h 12 o 6 ) as the main ingred...
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