Superior Protection: Possesses antistatic, waterproof, and moisture-proof properties, while effectively blocking light and oxygen, maintaining the quality of the contents for a long time.
Packaging Compatibility: Supports vacuum packaging; double-layer design provides excellent water and oxygen barrier functions, suitable for the preservation and protection needs of various items.
Wide Applications: Suitable for moisture-proof, light-proof, and vacuum packaging in the food, pharmaceutical raw materials, biochemical, chemical raw materials, pharmaceutical intermediates, and potassium iron phosphate cathode materials industries.
Flexible Customization: Unrestricted size; different specifications and styles can be customized according to customer needs, including flat bags, stand-up pouches, gusseted bags, and other packaging bags.
High-End Appearance: High-end and exquisite packaging effect, enhancing the overall quality and market competitiveness of products.
Product Parameters:
Material Structure: Aluminized PET+PE
Product Thickness: 3-20 microns, customizable upon request
Product Width: 500mm-1500mm, customizable upon request
Heat Sealing Temperature: 150℃±10℃
Aluminized film possesses multiple superior properties, making it an excellent choice for packaging various items. The product features anti-static, waterproof, moisture-proof, light-blocking, and oxygen-barrier properties, supporting vacuum packaging. Its double-layer structure enhances water and oxygen barrier effects, effectively protecting the quality of food, pharmaceutical raw materials, chemical raw materials, potassium iron phosphate cathode materials, and other items. Custom thicknesses of 3-20 microns and widths of 500mm-1500mm are available. It can also be processed into various styles such as flat bags, stand-up pouches, and gusseted bags, providing high-end and exquisite packaging that meets the packaging needs of different scenarios while enhancing product quality. Reliable sealing can be achieved by controlling the heat sealing temperature at 150℃±10℃.









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