Anode Cells for Electrophoretic Coating Systems

Place of Origin China
Brand Name Jingtu

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Product Details
Warranty 1 Year Core ComponentsType Membrane Elements
Membrane Fuction Anion Exchange Membrane Effective Membrane Length 1000mm
SS316 Electrode OD 48mm / 60mm Membrane OD 77mm
Membrane Area 0.24m² Electrode Area 0.15m²
Current Endure 50A/M² Anodic Liquid Flux 1.5-2.4 L/min/m
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1 L/minDry Running Pump

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MK Dry Running Pump

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1000 L/min Self Priming Pump

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Product Description

Overview
Anode Cells, also known as Anolyte Cells, are essential components in cathodic electrophoretic coating (e-coating) systems. They serve to isolate the anode from the paint bath while allowing ion exchange through a selective membrane. This separation helps maintain bath consistency and enhances the overall coating quality.

 

Working Principle

  • Each Anode Cell is made up of a corrosion-resistant stainless steel anode encased in an ion exchange membrane. During e-coating, under DC voltage, positively charged ions (such as amines or contaminants) migrate through the membrane into the anolyte solution. This process:
  • Helps control the pH balance in the bath
  • Improves paint stability and life span
  • Reduces contamination and coating defects

 

Anode Cells for Electrophoretic Coating Systems 0 Anode Cells for Electrophoretic Coating Systems 1 Anode Cells for Electrophoretic Coating Systems 2

 

Specifications

Brand & Configuration Cell Type Effective Membrane Length (mm) Membrane Outer Diameter (mm) Electrode Outer Diameter (mm)
Jingtu Tubular Anode Open ... 1=76
2=67
A=48
B=60
N=no electrode
1000
1500
2000
...

 

 

Key Features

  • High-performance ion-exchange membrane with excellent chemical resistance
  • Integrated high-strength porous support for structural integrity
  • Stainless steel electrode for durability and corrosion resistance
  • Leak-proof design to avoid paint contamination
  • Efficient anolyte circulation system to aid in heat dissipation and ion removal

 

Advantages

  • High-quality anion exchange membrane for superior ion selectivity
  • More open area = lower resistance = better current efficiency
  • Consistent performance even in high-throughput industrial applications

 

Applications

  • Automotive parts e-coating
  • Home appliances and metal housings
  • Agricultural and construction equipment
  • Steel furniture, shelves, and frames

 

Anode Cell Drawing

Anode Cells for Electrophoretic Coating Systems 3

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

A=Effective membrane length
B=Top cap length
C=Top to mid of anolyte return fitting
A,B,C will be made based on customer's request.