




Introduction to Self-Sealing Plastic Packaging Bags for Garments
Self-sealing plastic packaging bags for garments are designed with a secure, resealable closure mechanism, ensuring protection, convenience, and brand presentation. These bags are widely used in the fashion industry for their versatility and functionality.
Key Features:
1. Material Composition:
· Primarily made from PE (Polyethylene) and EVA (Ethylene-Vinyl Acetate), offering flexibility, durability, and moisture resistance.
· Some premium options use multi-layer composite materials or biodegradable films to align with eco-friendly trends.
2. Closure Mechanism:
· Zipper Closure: Features a durable slider mechanism for easy sealing and reopening, ideal for repeated use.
· Flat Seam Closure: Some designs use heat-sealed seams with reinforced edges to prevent fraying.
3. Applications:
· Garment Protection: Shields clothing from dust, moisture, and odors, maintaining freshness during storage and transport.
· Brand Promotion: Customizable with logos, sizes, and colors to enhance brand visibility.
· E-commerce Logistics: Lightweight and space-saving, suitable for shipping individual items or bulk orders.
4. Types:
· Transparent PE Bags: Offer clear visibility of contents, ideal for easy identification.
· Matte EVA Bags: Provide a sleek, low-glare finish, perfect for luxury or sensitive garments.
· Reclosable Mesh Bags: Feature breathable grids for storing accessories like scarves or hats.
5. Production Considerations:
· Customization: Available in various sizes (e.g., 40×60mm to 650×780mm) and thicknesses (0.03mm-0.2mm) to suit different garment types.
· Anti-Static Options: Incorporate conductive additives for electronic accessories packaging.
Environmental Impact:
Biodegradable self-sealing bags made from materials like PLA (Polylactic Acid) or starch blends are gaining popularity, addressing sustainability concerns while maintaining performance.
For optimal performance, avoid overfilling bags and ensure proper sealing temperature settings to prevent material degradation.