Prevent corrosion during international shipping with rust-proof packaging. Learn about VCI technology, desiccants, moisture barriers, and export packaging best practices.
Introduction
Corrosion during shipping is a major concern for sheet metal products, especially for export shipments that face long transit times, ocean humidity, and temperature fluctuations. At Fulei Metal, we implement comprehensive rust-proof packaging strategies to ensure that metal products arrive corrosion-free at their international destinations.
Understanding Shipping Corrosion
Causes of Shipping Corrosion
Metal corrosion during shipping is caused by: moisture in the air, temperature changes causing condensation, salt air in ocean shipping, acidic or corrosive atmospheres, contact with moisture-absorbing materials. Even products with surface treatment can corrode if moisture penetrates packaging.
The Container Environment
Ocean shipping containers experience: temperature cycles from day to night. Humidity levels up to 100%. Condensation (container rain) on walls and ceiling. Salt-laden air in ocean transport. Long transit times of 2-6 weeks. These conditions create an aggressive corrosion environment.
VCI Technology
What is VCI?
Volatile Corrosion Inhibitor (VCI) is a chemical compound that vaporizes and forms a protective molecular layer on metal surfaces. This layer prevents the electrochemical reactions that cause corrosion. VCI is effective for steel, aluminum, copper, and other metals.
VCI Products
VCI paper: kraft paper impregnated with VCI chemicals. Used to wrap metal parts. Provides both physical and chemical protection. Available in different sizes and weights. VCI film: polyethylene film with VCI additives. Used as wrapping or bags. Provides moisture barrier and corrosion protection. Transparent for easy identification. VCI bags: pre-made bags in various sizes. Quick and easy to use. Provide sealed environment. VCI emitters: small devices placed inside sealed packages. Provide corrosion protection for enclosed spaces. VCI liquids: applied directly to metal surfaces. Provide temporary corrosion protection.
How VCI Works
VCI chemicals vaporize from the carrier material. Vapors fill the enclosed package space. VCI molecules adsorb onto metal surfaces. Protective layer forms, blocking corrosion reactions. Layer is only a few molecules thick. Does not affect appearance or properties. VCI protection is reversible: when package is opened, VCI evaporates.
VCI Effectiveness
Effective for: steel, cast iron, aluminum, copper, brass, zinc, galvanized steel. Protection duration: up to 2 years in sealed package. Temperature range: effective from 0°C to 60°C. Does not protect: already corroded surfaces, surfaces with standing water, surfaces in direct contact with moisture.
Desiccants
Purpose
Desiccants absorb moisture from the air inside packaging, reducing humidity below the corrosion threshold. By maintaining low humidity, desiccants prevent condensation and corrosion.
Types of Desiccants
Silica gel: most common desiccant. High moisture absorption capacity. Available in small packets or bulk. Can be regenerated by heating. Clay desiccant: natural, low cost. Lower absorption capacity than silica gel. Suitable for general use. Molecular sieve: highest absorption capacity. Effective at high temperatures and low humidity. Most expensive. Container desiccants: large desiccant bags for shipping containers. Absorb several liters of water. Hang inside container.
Desiccant Sizing
Calculate desiccant quantity based on: package volume, package material moisture vapor transmission rate, expected transit time, expected temperature and humidity, product moisture sensitivity. Undersized desiccant will be exhausted before transit ends. Oversized desiccant is wasteful.
Desiccant Indicators
Humidity indicator cards: change color at specific humidity levels. Placed inside package. Verify that humidity stayed below threshold. Indicator plug: mounted on package exterior. Read without opening package.
Moisture Barrier Packaging
Barrier Materials
Aluminum foil barrier bags: excellent moisture barrier. Used for critical products. Higher cost. Polyethylene film: moderate moisture barrier. Used for general protection. Low cost. Metallized film: good moisture barrier. Cost-effective alternative to aluminum foil. Co-extruded films: multiple layers for optimized properties.
Sealing
Heat sealing: creates airtight seal. Most reliable method. Use continuous heat sealer for consistent seals. Seal width: typically 10mm or wider. Seal integrity: verify with visual inspection or dye penetration test.
Vacuum Packaging
Remove air from package before sealing. Reduces moisture inside package. Provides visual confirmation of seal integrity. Not suitable for all products (may cause deformation). Modified atmosphere: replace air with inert gas (nitrogen). Eliminates oxygen for corrosion prevention.
Export Packaging Strategy
Multi-Layer Approach
Layer 1: VCI paper or film directly on metal surface. Layer 2: cushioning material (foam, bubble wrap). Layer 3: moisture barrier bag with desiccant. Layer 4: outer packaging (carton, crate). Layer 5: pallet with stretch wrap. This multi-layer approach provides redundant protection.
Container Loading
Container desiccants: hang 4-8 kg of desiccant per container. Monitor with humidity indicator. Block and brace: prevent product movement during transport. Load evenly: distribute weight in container. Avoid direct contact with container walls: condensation on walls can wet packaging.
Documentation
Include packing list inside and outside package. Include corrosion protection instructions for receiver. Include humidity indicator card inside package. Document packaging materials used for quality records.
Product-Specific Considerations
Bare Metal Products
Highest corrosion risk. Require VCI paper or film. Require moisture barrier. Require desiccant. May require rust preventive oil in addition to VCI.
Powder-Coated Products
Lower corrosion risk but exposed metal edges can corrode. VCI paper on exposed metal. Moisture barrier for long transit. Desiccant for humidity control. Protective film on coated surfaces.
Galvanized Products
Zinc coating provides corrosion protection but white rust can form in high humidity. VCI paper to prevent white rust. Moisture barrier to prevent condensation. Desiccant for humidity control. Separators between galvanized surfaces.
Stainless Steel Products
Generally corrosion-resistant but can stain or pit in corrosive environments. VCI paper for stainless steel. Moisture barrier for long transit. Desiccant for humidity control. Avoid contact with carbon steel (contamination).
Quality Verification
Package Testing
Humidity testing: place packaged product in humidity chamber. Verify no corrosion after specified time. Drop testing: verify package integrity after impact. Vibration testing: verify package integrity after simulated transport.
Inspection
Verify VCI material is correctly applied. Verify desiccant is present and correct quantity. Verify moisture barrier is sealed. Verify humidity indicator is included. Document inspection results.
At Fulei Metal
Our rust-proof packaging program includes: VCI paper and film for all metal products. Moisture barrier bags for export shipments. Desiccant bags sized for each package. Humidity indicator cards. Container desiccants for ocean shipments. Heat-sealed moisture barriers. Export-compliant wooden crates and pallets. We have successfully shipped corrosion-free products to Europe, America, Japan, Korea, and Southeast Asia.
Conclusion
Rust-proof packaging is essential for international shipping of metal products. At Fulei Metal, our comprehensive approach to corrosion prevention ensures that our products arrive at international destinations in pristine condition, regardless of the shipping environment or transit duration.
Corrosion Protection in Transit: Method, Mechanism and Limit
Corrosion during shipment is a humidity problem before it is a coating problem. Each protection method manages humidity or blocks it differently, and each has a condition under which it stops working.
| Method | Mechanism | Suited to | Limit |
|---|---|---|---|
| Vapour corrosion inhibitor paper or film | Inhibitor vapour saturates the enclosed space and forms a molecular layer on metal surfaces | Enclosed packs with a reasonable seal, including complex shapes | Needs the enclosure to stay closed, and compatibility should be confirmed for non-ferrous metals |
| Desiccant with a sealed barrier bag | Removes moisture from the enclosed air | Where the pack can be sealed properly and the initial moisture content is known | Requires the right quantity of desiccant and a genuine seal; an unsealed bag makes it useless |
| Oil or temporary protective coating | Direct barrier on the metal surface | Machined and uncoated surfaces that will be cleaned before use | Must be removed before the product is used, which is a downstream requirement |
| Waterproof wrapping and sealed seams | Blocks liquid water ingress | Protecting against rain and condensation drip rather than against humidity | Does not control humidity inside the pack; trapped moisture remains |
| Container desiccant for the whole container | Controls humidity across a container load | Long sea voyages with high humidity swings | Supplements rather than replaces protection at pack level |
| Humidity indicator card in the pack | Indicates whether the internal humidity exceeded a threshold | Any sealed pack, as a check rather than a control | It records, it does not protect |
The failure that catches people out is sealing. A desiccant in a bag that is not properly sealed, or a pack closed after parts were assembled in humid conditions, carries the moisture it was meant to remove. Controlling the condition at the moment of packing matters as much as choosing the material.
Frequently Asked Questions
How much desiccant is needed?
It depends on the enclosed volume, the barrier material and the expected humidity exposure, and desiccant suppliers publish calculation methods for it. The common error is not the quantity but a seal that leaks.
Is vapour corrosion inhibitor safe for all metals?
Most products are formulated for ferrous metals, and some are unsuitable for certain non-ferrous alloys. Check the compatibility for the specific metals in the pack rather than assuming.
Does a coated part still need protection in transit?
Yes, because the protection is for the surfaces the coating does not reach, such as machined faces, threads and edges. It also protects against the damage that follows coating damage in transit.
Questions about a specific part are usually faster to answer against the drawing — send it through the route below.
Before you send the RFQ. Reference export packaging standards first if this part is still at drawing stage — most cost drivers are decided there. For anything already specified, send the drawing for review is where to send it. Related: custom sheet metal fabrication and packaging design.