New Energy 4-Panel FIBC Bulk Bag is a precision-engineered bulk packaging solution specially designed for battery electrode materials, conductive additives and advanced new energy powders.
Made from high-purity 100% virgin PP woven fabric, the bag features a precision 4-panel seamed construction that provides consistent dimensions and a regular square shape. This makes it particularly suitable for automated filling lines, precision lifting, high-density stacking and controlled discharge operations in battery manufacturing facilities.
Optional food-grade PE liners, aluminum foil liners and Type C / Type D anti-static configurations are available to provide additional protection against contamination, electrostatic hazards, moisture and oxygen ingress.
The precision 4-panel seamed construction provides a consistent square shape and tight dimensional tolerance.
This helps the FIBC align accurately with automated filling equipment, reducing misalignment and supporting efficient filling operations in new energy material production lines.
The rigid 4-panel structure combined with reinforced vertical seams helps the bag maintain a regular shape after filling.
Improved shape consistency provides more stable stacking and helps increase warehouse and transportation space utilization.
High-purity virgin PP woven fabric can be combined with an optional food-grade sealed PE liner and dust-tight closure system to help prevent external impurity ingress and cross-batch contamination.
This configuration provides additional purity protection for sensitive battery electrode and new energy materials.
Optional Type C and Type D anti-static configurations are available for applications requiring electrostatic charge control during powder filling, handling and discharge.
Anti-static test reports can be provided according to the selected configuration.
A smooth inner surface and optimized discharge opening help support gravity discharge with minimal material residue, reducing the loss of high-value new energy materials.
Optional PE and aluminum foil liners provide additional barrier options for materials requiring moisture and oxygen protection during storage and transportation.
| Category | Specification | Details |
|---|---|---|
| Basic | Product Name | 4-Panel New Energy Grade PP Woven FIBC |
| Basic | Material | High-Purity 100% Virgin Polypropylene (PP) Woven Fabric |
| Basic | Construction / Bag Type | 4-Panel Seamed Body |
| Load | Safe Working Load (SWL) | 1,000 kg Standard; 500–1,500 kg Customizable |
| Load | Safety Factor (SF) | 5:1 |
| Size | Dimensions (L×W×H) | 90 × 90 × 120 cm Standard; Fully Customizable with Tight Tolerance |
| Fabric | Fabric Weight / GSM | 170 GSM Standard; 150–200 GSM Customizable |
| Fabric | Coating / Lamination | Optional Dust-Proof PP Lamination |
| Handling | Lifting Loop Type | 4 Corner Loops; Size Customizable |
| Top | Top Type | Closed Dust-Proof Filling Spout |
| Bottom | Bottom Type | Flat Bottom; Discharge Spout Optional |
| Liner | Liner Type | Food-Grade PE Liner / Aluminum Foil Liner Optional |
| Liner | Liner Thickness | 80–150 μm; Customizable |
| Safety | Anti-Static Option | Type C / Type D Available on Request |
| Protection | UV Stabilization | Yes, Up to 12 Months Outdoor Exposure |
| Compliance | Compliance | Food Contact Grade; RoHS Compliant; Anti-Static Test Reports Provided |
| Printing | Printing | Up to 4 Colors, Custom Logo & Handling Marks |
| Packing | Packing Method | 200 pcs/Pack, Clean Compressed Packing |
New Energy 4-Panel FIBC Bulk Bags are designed for battery and advanced new energy materials requiring precise automated handling, stable stacking, purity protection and electrostatic control.
Suitable for:
The dimensional accuracy of the 4-panel structure makes the bag particularly suitable for automated filling systems while optional sealed liners help protect material purity.
Suitable for:
Optional anti-static configurations, stable stacking and low-residue discharge support efficient handling of high-value anode materials.
Suitable for:
Dust containment and Type C / Type D anti-static options are available for ultra-fine conductive powders, while the 4-panel structure supports precise automated handling.
Suitable for:
Optional PE and aluminum foil liners provide additional moisture and oxygen barrier protection for sensitive auxiliary battery materials.
Different battery materials and automated production lines have different requirements for bag dimensions, dimensional tolerance, purity, electrostatic control and barrier performance.
Send us your material name, bulk density, required load, bag dimensions, filling equipment parameters, filling/discharge method, purity requirements, anti-static requirements and compliance needs. We will recommend a suitable 4-Panel FIBC configuration based on your specific new energy material handling conditions.
Contact us today to discuss your New Energy 4-Panel FIBC Bulk Bag requirements and request a quotation.
The precision seamed 4-panel construction provides consistent dimensions and a regular square shape. This makes the bag particularly suitable for automated filling lines while also supporting stable and dense stacking.
Yes. The 4-panel structure provides tight dimensional tolerance and a uniform bag shape, making it suitable for automated filling, conveying and palletizing systems in new energy battery production facilities.
Yes. Type C and Type D anti-static configurations are available for applications requiring electrostatic charge control. These options can be integrated with the 4-panel construction.
Yes. PE and aluminum foil liner options are available according to moisture and oxygen barrier requirements.
Yes. Bag dimensions, Safe Working Load, lifting loop specifications and top/bottom structures can be customized. Final specifications depend on material density, filling equipment parameters and handling requirements.
The provided specification covers cathode materials such as NCM, NCA, LFP and LCO; anode materials such as synthetic graphite, silicon-carbon and hard carbon; as well as conductive carbon black, Super P, carbon nanotubes, graphene, PVDF powders and lithium salts.
The provided specification lists food contact grade, RoHS compliance and anti-static test reports. Final documentation should be confirmed according to the selected configuration.
The stated lead time for standard configurations is approximately 15–20 days. Custom anti-static structures, special liners or tight-tolerance requirements may require approximately 25–30 days. Final lead time depends on order quantity and customization complexity.