Method for depositing functionally graded nanometer multilayer coating on steel workpiece surface and product comprising said functionally graded nanometer multilayer coating
A functionally gradient and nano-multilayer technology, applied in the coating, metal material coating process, ion implantation plating, etc., can solve the problems of insufficient density of the film structure, high surface roughness of the film, hidden safety hazards, etc., to overcome the problems of thin film The effect of not dense enough structure
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Embodiment 1
[0144] 1) Pretreatment of stainless steel workpieces: at room temperature, place polished stainless steel watch appearance parts in an ultrasonic cleaner filled with an environmentally friendly water-based metal cleaning solution for surface cleaning and degreasing; then put the cleaned workpieces into ethanol solution for dehydration After drying.
[0145] 2) Ion cleaning on the surface of the workpiece: (1) Place the polished stainless steel watch appearance workpiece in the reaction furnace, and keep the vacuum degree in the reaction furnace at 9.0×10 -3 Pa; (2) Start the Ta-HCD electron gun and the heating device in the furnace and control its current to 80A after the Ta-HCD electron gun arcs, and the plasma arc of the Ta-HCD source directly irradiates the surface of the workpiece until the temperature in the vacuum chamber reaches 120 ° C; (3) Keep the vacuum in the reaction furnace at 9.0×10 -3 Pa, adjust the Ta-HCD electron gun current to 100A and apply a pulsed negati...
Embodiment 2
[0157] 1) Pretreatment of stainless steel workpieces: at room temperature, place polished stainless steel watch appearance parts in an ultrasonic cleaner filled with an environmentally friendly water-based metal cleaning solution for surface cleaning and degreasing; then put the cleaned workpieces into ethanol solution for dehydration After drying.
[0158] 2) Ion cleaning on the surface of the workpiece: (1) Place the polished stainless steel watch appearance workpiece in the reaction furnace, and keep the vacuum degree in the reaction furnace at 5.0×10 -3 Pa; (2) Start the Ta-HCD electron gun and the heating device in the furnace and control its current to 80A after the Ta-HCD electron gun arcs, and the plasma arc of the Ta-HCD source directly irradiates the surface of the workpiece until the temperature in the vacuum chamber reaches 120 ° C; (3) Keep the vacuum in the reaction furnace at 5.0×10 -3 Pa, adjust the Ta-HCD electron gun current to 100A and apply a pulsed negati...
Embodiment 3
[0171] 1) Pretreatment of stainless steel workpieces: at room temperature, place polished stainless steel watch appearance parts in an ultrasonic cleaner filled with an environmentally friendly water-based metal cleaning solution for surface cleaning and degreasing; then put the cleaned workpieces into ethanol solution for dehydration After drying.
[0172] 2) Ion cleaning on the surface of the workpiece: (1) Place the polished stainless steel watch appearance workpiece in the reaction furnace, and keep the vacuum degree in the reaction furnace at 7.0×10 -3 Pa; (2) Start the Ta-HCD electron gun and the heating device in the furnace and control its current to 80A after the Ta-HCD electron gun arcs, and the plasma arc of the Ta-HCD source directly irradiates the surface of the workpiece until the temperature in the vacuum chamber reaches 120 ° C; (3) Keep the vacuum in the reaction furnace at 7.0×10 -3 Pa, adjust the Ta-HCD electron gun current to 100A, and apply a pulse negati...
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