1. Product Description
Near-Prime LLDPE 2669 Resin is a high-performance Linear Low-Density Polyethylene grade designed primarily for blown film extrusion. This resin is engineered to offer an optimized balance of toughness, high tensile strength, and excellent heat-sealing properties. It is highly recommended for applications requiring superior mechanical endurance and production reliability.

2. Key Features
- High Impact & Tear Strength: Specifically designed to withstand high stress, preventing tears and breakage during handling and transport.
- Superior Melt Strength: Provides excellent bubble stability during the blown film process, even at high production speeds.
- Excellent Draw-down Capability: Allows for the production of very thin films (downgauging) while maintaining high structural integrity.
- Strong Heat Sealing: Ensures reliable and durable seals, making it perfect for liquid or heavy-duty packaging.
- Near-Prime Quality: Delivers high consistency in density and flow rate, offering a reliable alternative to Prime-grade resins at a more competitive cost.
3. Applications
Near-Prime LLDPE 2669 Resin is ideal for:
- Heavy-Duty Packaging: Industrial liners, heavy-duty sacks, and shipping bags.
- Food & Consumer Packaging: Multi-layer films, grocery bags, and frozen food packaging.
- Lamination Films: Used as a high-strength sealing layer in laminated structures.
- Agriculture: Durable mulch films and greenhouse covers.
4. Processing Guidelines
- Processing Method: Optimized for blown film extrusion lines.
- Melt Temperature: The recommended range for processing is 190°C – 230°C.
- Blending: Excellent compatibility for blending with LDPE to enhance film gloss or with HDPE to increase stiffness.
5. Why Choose Our Near-Prime LLDPE 2669?
- Reliability: Low gel content ensures high film quality and fewer production interruptions.
- Cost Efficiency: High performance-to-cost ratio, ideal for large-scale manufacturing.
- Consistent Properties: Rigorous quality control ensures stable Melt Flow Index (MFI) and density across batches.









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