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Steel Coil Packaging Standards

Steel Coil Packaging Standards ensure the secure and safe handling of steel coils during transport and storage. These guidelines cover methods such as wrapping, strapping, and cushioning, aiming to prevent damage like corrosion and mechanical impact, thereby maintaining coil integrity and quality.

Steel Coil Packaging Standards

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Description:

Steel Coil Packaging Standards define the best practices for securing steel coils for storage and transportation. These standards ensure that each coil is adequately protected against environmental elements, mechanical damage, and corrosion through the use of appropriate wrapping materials, strapping techniques, and supportive padding. The guidelines also specify the handling procedures to maintain the structural integrity of the coils during loading, unloading, and shipping. Adhering to these standards minimizes the risk of accidents, reduces product loss, and ensures compliance with international shipping regulations, making them crucial for manufacturers and logistics companies dealing with steel products.


Specifications:

  • Purpose: Ensure safety, integrity, and quality of steel coils during transport and storage
  • Scope of Application: Applicable to hot-rolled, cold-rolled, and coated steel coils
  • Material Requirements: Wrapping with waterproof and corrosion-resistant materials like VCI paper or polyethylene film; Strapping with high-tensile steel bands or durable composite 
  • Strapping Guidelines: Radial and circumferential strapping methods; Tension adjustable based on coil size and weight
  • Environmental Considerations: Protection against rust, moisture, and mechanical wear; Recommended humidity-controlled storage environments
Applicable industry:

  • Integral to the manufacturing process of high-quality roofing materials, steel coils from coil packing lines are designed with variable thicknesses from 0.5 mm to 1.5 mm, widths from 600 mm to 1500 mm, and weights of 3 to 5 tons. These specifications allow for the production of metal sheets that effectively combat weather-related degradation, making them suitable for both residential and commercial roofing applications. The coatings applied to these coils bolster their resistance to corrosion and UV light, significantly extending roof durability. This combination of strength and longevity makes these coils especially valuable in climates that experience harsh weather, ensuring long-lasting roof performance with minimal upkeep.
  • Utilizing state-of-the-art coil packing lines, aluminum coils are processed to meet the stringent requirements of automotive trim production. These coils, with their typical measurements ranging from 0.8 mm to 2 mm in thickness and 1000 mm to 1600 mm in width, are adept at crafting a variety of trim elements that enhance both vehicle aesthetics and performance. Aluminum, chosen for its blend of lightweight and robust properties, plays a crucial role in reducing overall vehicle weight, which in turn boosts fuel efficiency and handling. Moreover, its excellent resistance to corrosion ensures the longevity and visual appeal of the trim, reducing lifecycle maintenance costs.
  • In the healthcare sector, particularly in the manufacturing of MRI machines, the significance of copper coils processed through coil packing lines is pronounced. These coils are typically produced with thicknesses from 1.5 mm to 3.0 mm, widths of 1300 mm to 1800 mm, and weights ranging from 2000 kg to 5000 kg. The high conductivity of copper is essential for generating strong, stable magnetic fields required in medical imaging, while its thermal properties allow it to manage high currents without overheating, enhancing the safety and efficiency of such devices.

Main Features:

  • Handling Procedures: Use of cranes and forklifts with attachments like C-hooks and coil tilters for safe loading/unloading; Securement protocols for truck, rail, and sea transport
  • Quality Control: Mandatory pre and post-packaging inspections; Established damage reporting procedures
  • Compliance: Adherence to ASTM, ISO, or national standards; Required certifications for materials and components
  • Training and Implementation: Detailed operator training on packaging techniques and safety; Regular audits to ensure compliance and update procedure

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