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Permanent Stainless Steel Cathodes

1.Material:Stainless Steel Clad Copper Hanger Bar:304,316,316L /C11000
Stainless Steel Plate:304,316,316L

2.  Specification: According to customer’s drawing & requirement

Such as :

1) Stainless Steel Clad Copper Hanger Bar: 40*20*1420 mm*drawing

Stainless Steel Plate: 1165*950*3mm* drawing

2) Stainless Steel Clad Copper Hanger Bar: 40*20*1082 mm*drawing

Stainless Steel Plate: 880*1240*3mm*drawing

3) Stainless Steel Clad Copper Hanger Bar: 40*20*1342mm*drawing

Stainless Steel Plate: 950*1382*3.0mm*drawing

3. Standard: Stainless Steel Clad Copper Hanger Bar  GB/T 12769-2015

Stainless Steel Plate: ASTM A312

Stainless steel cathode plates are key components in hydrometallurgy (such as electrolytic copper, zinc, nickel, cobalt, etc.), mainly used as cathodes in electrolytic cells to carry metal deposits. The product features are mainly reflected in materials, structure, performance and economy, etc. 

    Product Description

    1. Material properties

    • Strong corrosion resistance: Made of high-quality stainless steel (such as 304, 316, 316L, etc.), it can resist the corrosion of electrolyte (often containing sulfuric acid, chloride ions, etc.), and has a long service life.
    • High electrical conductivity: The surface is usually specially treated (such as polishing, coating) to reduce contact resistance and improve current efficiency.
    • High mechanical strength: Stainless steel has good rigidity, is not easy to deform, and can withstand mechanical stress during hoisting, transportation, and stripping.

    2.Structural Design Features

    • High flatness requirement: The surface of the plate is extremely flat (the tolerance is usually ≤ ±2mm/m²), ensuring uniform metal deposition and avoiding short circuits or local over-thickness.
    • Optimized edge sealing: The edges are designed with flanging or sealing to prevent the deposited metal from wrapping around the edges, facilitating stripping.
    • Robust lifting lug structure: The lifting lugs are firmly welded to the plate body with a reasonable design, facilitating hoisting by crane and stripping operations.
    • Lightweight design: The thickness is optimized under the guarantee of strength to reduce weight, lowering material and transportation costs.

    3. Performance Characteristics

    • High deposition efficiency: Smooth surface finish, fine metal crystallization, uniform adhesion, and easy stripping.
    • Long service life: Corrosion-resistant and wear-resistant, can be reused thousands of times, and has low maintenance costs.
    • Energy-saving and consumption reduction: Good electrical conductivity, reduces cell voltage, and minimizes electrical energy loss.
    • Convenient operation: Humanized design, easy to hoist, align, and strip, enhancing production efficiency.

    4. Economy and Environmental Protection

    • Low comprehensive cost: Although the initial investment is relatively high, its long service life and low maintenance cost make it highly economically beneficial in the long term.
    • Environmentally friendly: Stainless steel can be fully recycled, reducing waste; the optimized electrolytic process lowers energy consumption and pollution.

    Product Display

    Permanent Stainless Steel Cathodes (1)
    Permanent Stainless Steel Cathodes (2)
    Permanent Stainless Steel Cathodes (3)

    Application Field Analysis

    • Widely used in non-ferrous metallurgy
    • Customizable specifications
    • Optional surface treatments

    Technological Development Trends

    • Material upgrade: Develop composite materials or special stainless steel with higher corrosion resistance and electrical conductivity.
    • Intelligent design: Integrate sensors to monitor parameters such as temperature and current density, achieving intelligent management.
    • Lightweight and energy-saving: Further optimize the structure to reduce energy consumption and material usage.

    Summary: Stainless steel cathode plates, characterized by their corrosion resistance, high electrical conductivity, long service life and ease of operation, are key consumables in modern hydrometallurgy. Their technology is constantly upgrading, playing a significant role in enhancing metal recovery rates, reducing production costs and promoting green metallurgy.

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