ENERJİTEM GLOBAL
ENERJİTEM Three-Phase Plating Rectifier, Input 380-400V AC, Electroplating Rectifier, Output 0-12V DC, 1000 A/h
ENERJİTEM Three-Phase Plating Rectifier, Input 380-400V AC, Electroplating Rectifier, Output 0-12V DC, 1000 A/h
ENERJİTEM Three-Phase Coating Rectifier, 380-400 VAC Input, Electroplating Rectifier, 0-12 VDC Output, 1000 Amps
The three-phase coating and electroplating rectifier with 380-400 VAC input and 0-12 VDC output at 1000 Amps is an industrial power supply that converts high-voltage AC into adjustable low-voltage, high-current DC, specifically designed for electrochemical surface treatment processes.
Note: The use of “Ah” in this type of industrial application is often a common mistake; what is meant here is Amps (A), representing the continuous output current, not Amp-hours used to measure battery capacity.
380-400 VAC Three-Phase, Input: Standard industrial grid power used to achieve high energy efficiency and balanced load distribution across phases.
0-12 VDC, Output Voltage: A smoothly adjustable DC range. Most electroplating and anodizing reactions occur within this low-voltage range.
1000 Amps, Output Current: A massive current capacity required for intensive chemical deposition processes on large metal surfaces simultaneously.
These rectifiers are the backbone of surface treatment and metal processing industries. They are widely used in the following areas:
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Electroplating, Metal Deposition
The rectifier provides a negative charge to the workpiece, the cathode, and a positive charge to the plating metal, the anode, within the electrolyte bath.
Zinc Plating: Used to prevent rust in automotive fasteners, metal brackets, and structural steel.
Copper and Nickel Plating: Used as decorative finishes or as base layers to improve corrosion resistance and electrical conductivity.
Chrome Plating: Applied to hydraulic cylinders, tools, and consumer products for extremely high hardness and excellent corrosion resistance.
Precious Metal Plating: Depositing very thin layers of gold or silver on electronic connectors and jewelry.
Anodizing, Aluminum Treatment
Instead of adding a metal layer, this process forces the aluminum part to act as an anode, increasing the thickness of the natural oxide layer on its surface.
Type II Anodizing: Used in standard architectural aluminum, consumer electronics, and colored bicycle and automotive components.
Electrocleaning: Used at low voltages to remove grease and scale from metals before applying the final coating.
Electrolysis and Chemical Treatment
Water Treatment: Operating electrocoagulation systems to remove heavy metals from industrial wastewater.
Metal Recovery: Used in electrowinning processes to recover valuable metals from spent chemical stripping baths.
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