The Manufacturing Odyssey – Engineering Excellence in Foil Container Production

The metamorphosis of aluminum ingots into high-performance foil containers represents a feat of materials engineering and precision manufacturing. This process bridges metallurgical science, industrial automation, and food safety compliance to create sustainable, high-barrier packaging solutions.
Section 1: Raw Material Selection & Metallurgical Foundations
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Alloy Specifications
Alloy Series Key Elements Application Suitability 8000-series Fe 0.5-1.0%, Mn <0.3% Food containers (pH>4.0) 3000-series Mn 1.0-1.5%, Mg 0.8-1.3% High-strength trays -
Ingot Quality Control
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Hydrogen content: <0.15 ml/100g Al
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Inclusion size: ≤20 μm
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Section 2: Precision Rolling – From Slab to Foil
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Hot Rolling Process
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Temperature: 480-520°C
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Thickness reduction: 600mm → 6mm in 5 passes
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Cold Rolling Critical Parameters
Stage Entry Thickness Exit Thickness Reduction % Breakdown 6 mm 0.7 mm 88% Finishing 0.7 mm 0.05-0.2 mm 71-93% -
Annealing Protocols
Batch annealing at 340-380°C for 8-12 hours to restore ductility
Section 3: Container Forming Technologies
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Mechanical Pressing
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Force range: 200-800 tons
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Stroke speed: 30-70 cycles/minute
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Impact Extrusion
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Pressure: 1,500-2,500 bar
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Wall thickness tolerance: ±5%
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Critical Tooling Specifications
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Tool steel hardness: 58-62 HRC
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Surface finish: Ra ≤0.2 μm
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Section 4: Quality Assurance & Performance Testing
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Barrier Property Validation
Test Standard Requirement Water Vapor Transmission ASTM E96 <0.01 g/m²/day Oxygen Permeability ASTM D3985 <0.05 cc/m²/day -
Mechanical Strength Testing
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Stacking resistance: ≥150 kg for 24h
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Edge crush resistance: ≥180 N
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Section 5: Surface Engineering & Coatings
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Lacquer Application Systems
Coating Type Thickness Acid Resistance Epoxy-phenolic 3-5 g/m² pH ≥3.0 Polyester 4-6 g/m² pH ≥2.5 -
Corrosion Protection
Chromating treatment: 10-50 mg/m² Cr⁶⁺
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