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Horizontal U-Type Manual Anodizing Line for Aluminum Profiles 200T Monthly Output | Dual-Row Loading | 6-Stage Process Configuration

Horizontal U-Type Manual Anodizing Line for Aluminum Profiles 200T Monthly Output | Dual-Row Loading | 6-Stage Process Configuration

Brand Name: MEL-AL
Model Number: MEI-PN-200
MOQ: 1set
Price: Customized Price
Packaging Details: Standard Packaging
Payment Terms: L/C,T/T
Detail Information
Place of Origin:
Foshan, China
Wrranty:
365days
Monthly Capacity:
200Tons
Polishing Type:
Mechanical Polishing, Chemical Polishing
Size:
Customized
Proflie Type:
Customizable Appearance
Scope:
Aluminium Alloy Profiles
Function:
Semiautomatic Or Automatic
Surfacetreatment:
Cleaning, Etching, Anodizing, Coloring, Sealing
Extrusion Ratio:
2.5kg/m²
Tank Material:
Stainless Steel / PP /PVC
Power:
Natural Gas, LNG
Color:
Customized
Productname:
Anodizing Production Line
Product Description
Product Overview

A horizontal U-type manual anodizing line is a floor-space-efficient surface treatment system designed for medium-scale aluminum profile finishing. The U-shaped tank layout minimizes workshop footprint while allowing operators to manage loading, transfer, and unloading from a central control corridor.

This configuration handles 200 metric tons per month with dual-row loading per flight bar, effectively doubling single-batch capacity without extending tank dimensions. It is engineered for manufacturers transitioning from batch dip tanks to a structured, semi-continuous workflow.

The standard process sequence covers degreasing, alkali etching, neutralizing, sulfuric acid anodizing, electrolytic coloring, and medium-temperature sealing — delivering decorative anodic coatings compliant with ISO 7599 and GB/T 8013 standards.

Parameter Specification
Line Type Horizontal U-Type, Manual Overhead Transfer
Monthly Capacity 200 T (based on 25 operating days, 2 shifts/day)
Loading Configuration Dual-row per flight bar (2 rows / hanger)
Applicable Substrate Aluminum extrusion profiles, 6063-T5 / 6061-T6
Max. Profile Length 6,500 mm (customizable up to 7,500 mm)
Flight Bar Load 800–1,200 kg per bar (dual-row distributed)
Tank Configuration Degreasing → Alkali Etching → Neutralizing → Anodizing → Electrolytic Coloring → Medium-Temp Sealing
Anodizing Tank Sulfuric acid, 180–200 g/L, DC rectifier 0–18V / 0–6,000A
Etching Tank Caustic soda (NaOH), 40–60 g/L, with titanium cooling coil
Coloring Tank Tin salt electrolytic coloring, AC 15–20V
Sealing Tank Medium-temperature nickel acetate, 60–80°C, pH 5.5–6.5
Tank Material Polypropylene (PP) welded, 15–20 mm thickness
Rectifier IGBT high-frequency switching, ripple <5%
Control System Manual pendant control + digital timer / temperature controller
Exhaust System Side-draft fume hoods above degreasing, etching, and anodizing tanks
Power Supply 380V / 3-phase / 50Hz (customizable for 60Hz regions)
Water Consumption ~25–30 T/day (with counter-flow rinsing optimization)
Footprint (L×W) 28 m × 14 m (U-configuration, excluding loading/unloading zone)
Compliance CE-marked electrical components, ISO 14001 process design

Process Flow: 6-Stage Treatment Sequence
  1. Degreasing — Aluminum profiles are immersed in an alkaline degreasing bath to remove extrusion oils, lubricants, and surface contaminants. Bath temperature: 50–60°C. Duration: 3–5 minutes.

  2. Alkali Etching — Caustic soda solution chemically dissolves the native oxide layer and micro-roughens the surface. This creates a uniform matte finish essential for consistent color absorption. Bath temperature: 50–60°C. Duration: 3–10 minutes (adjustable per finish requirement).

  3. Neutralizing (Desmutting) — A nitric acid or sulfuric acid rinse neutralizes residual alkali and dissolves insoluble smut (intermetallic compounds) deposited during etching. This prevents contamination of the anodizing electrolyte.

  4. Sulfuric Acid Anodizing — Profiles are anodized in a sulfuric acid electrolyte (15–20% concentration) with DC current to build a porous aluminum oxide (Al₂O₃) layer. For decorative applications, target thickness: 8–15 μm. Bath temperature: 18–22°C with continuous cooling.

  5. Electrolytic Coloring — An AC current drives metallic salt deposition (typically tin-based) into the porous anodic film. This produces stable bronze, champagne, or black tones with UV resistance superior to organic dyeing. Voltage: 15–20V. Duration: 30–120 seconds depending on target shade.

  6. Medium-Temperature Sealing — The porous anodic layer is hydrated and sealed in a nickel acetate bath at 60–80°C. This locks in color, enhances corrosion resistance, and meets ASTM B136 seal quality standards. Duration: 10–15 minutes per μm of coating thickness.


Key Features & Benefits
Feature Operational Benefit Business Outcome
U-type horizontal layout Central operator corridor; tanks arranged on two parallel wings Reduces floor space by ~30% versus linear configurations
Dual-row loading Two profile rows per flight bar without shadowing Effectively doubles output per transfer cycle; lowers labor cost per ton
Manual overhead crane transfer Operator-controlled pacing; ideal for mixed tank sizes Eliminates complex automation investment; flexible for custom orders
Independent tank temperature control Each tank maintains ±2°C stability via titanium heating/cooling coils Consistent film thickness and color uniformity across 200T monthly volume
Counter-flow rinsing cascade Water flows from cleanest to dirtiest rinse stage Cuts freshwater consumption by 40–50% versus single-stage rinsing
Modular tank design Individual tanks bolted, not monolithic cast Easy maintenance access; future process upgrades (e.g., adding coloring stations)

Applications
  • Architectural Aluminum — Curtain wall frames, window and door profiles requiring uniform bronze or champagne anodized finishes.

  • Interior Decoration — Furniture frames, handrails, and fixture profiles with decorative matte or satin surfaces.

  • Industrial Profiles — Conveyor rails, machine frames, and structural extrusions where moderate corrosion resistance is required.

  • Automotive Trim — Roof rack rails and interior trim components (non-structural).


Frequently Asked Questions

What is the difference between a U-type and a linear anodizing line?

A U-type line arranges process tanks in a U-shaped configuration with a central aisle. This reduces overall length by approximately 40% compared to a straight-line layout, making it suitable for workshops with limited longitudinal space. A linear line requires more floor length but allows for fully automated conveyor systems.

How many operators are required for this manual anodizing line?

For 200T monthly output running two shifts, the line typically requires 4–6 operators: 2 for loading/unloading, 1 for crane transfer control, and 1–2 for bath monitoring and chemical maintenance. Exact staffing depends on shift structure and profile complexity.

Can the line process both Type II decorative and Type III hardcoat anodizing?

This configuration is optimized for Type II decorative anodizing (8–25 μm) with electrolytic coloring. Type III hardcoat anodizing requires lower bath temperatures (0–5°C), higher voltage rectifiers, and refrigeration units — these can be retrofitted if specified during design.

What utilities must be prepared before installation?

You will need: three-phase industrial power (capacity calculated by rectifier load + heating), municipal or well water supply (30 T/day peak), compressed air (0.6–0.8 MPa for pneumatic valves), and a wastewater neutralization pit to treat acidic and alkaline rinse water before discharge.

How long does installation and commissioning take?

Standard delivery is 60–75 days after deposit. On-site installation and wet commissioning require 25–35 days, including tank leak testing, rectifier calibration, and trial production runs. Operator training is included during the commissioning phase.

Is the dual-row loading compatible with all profile geometries?

Dual-row loading is suitable for standard hollow and solid profiles with widths up to 150 mm per row. Large, irregular, or high-aspect-ratio profiles may require single-row loading to prevent solution trapping or uneven coating. We evaluate profile drawings before confirming loading configuration.


Contact for Technical Consultation

Tel: +86-13232661277
Email: Rainbow151018@163.com
Address: Changgang North Rd, Changhongling Industrial Park,Shishan Town, Nanhai District, Foshan City, Guangdong Province, P.R.China