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Battery Material Bulk Bag
Created with Pixso. UV 1% 1000KG Lithium Manganese Iron Phosphate Bulk Bag For Cathode Material Packaging

UV 1% 1000KG Lithium Manganese Iron Phosphate Bulk Bag For Cathode Material Packaging

Brand Name: Cholly
MOQ: 2000pcs
Price: Negotiable
Delivery Time: 10days
Payment Terms: T/T, L/C
Detail Information
Place of Origin:
CHINA
Name:
Lithium Manganese Iron Phosphate Bulk Bag
Material:
PP Woven Fabric
Safe Working Load:
1000KG
Bag Dimension:
90×90×105cm
Fabric Strength:
Warp ≥1600N / Weft ≥1600N
Fabric Weight:
180g/m²
Coating Structure:
Inner Coated PP Fabric
Inner Liner Type:
Aluminum Foil Inner Liner
Aluminum Foil Thickness:
14μm
Lifting Loop Design:
4 Lifting Loops, 7×170cm
Sewing Process:
Double Chain Stitching
UV Treatment:
UV 1%
Application:
Cathode Material Packaging
Highlight:

1000KG bulk fibc bags

,

UV 1% bulk fibc bags

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Manganese Iron Phosphate fibc bags

Product Description

UV 1% 1000KG Lithium Manganese Iron Phosphate Bulk Bag for Cathode Material Packaging

 

Product Positioning

 

The UV 1% 1000KG Lithium Manganese Iron Phosphate Bulk Bag is an industrial FIBC solution designed for lithium battery cathode material packaging applications.

It is mainly used for the packaging, transportation, and storage of powder materials such as Lithium Manganese Iron Phosphate (LMFP).

This Battery Material Bulk Bag adopts a high-strength PP woven fabric structure combined with an inner coated layer and aluminum foil liner design.

The bag is designed with a 90×90×105cm size, 1000KG loading capacity, and ≥1600N warp and weft fabric strength, providing a practical packaging solution for large-volume battery material handling.

 

Problem: Challenges in Cathode Material Packaging

 

Moisture and Material Protection Requirements

Lithium battery cathode materials are commonly processed and transported in powder form.

During transportation and storage, battery material manufacturers need packaging solutions that can reduce risks caused by:

  • Environmental moisture exposure

  • Powder leakage

  • Material contamination

  • Packaging damage during handling

Standard packaging bags mainly provide basic mechanical support but may not meet the combined requirements of strength and internal protection for battery material applications.

Heavy-Duty Transportation Requirements

Battery materials are often transported in large-volume packaging.

When the loading capacity reaches 1000KG, the bulk bag needs to withstand mechanical stress during:

  • Filling process

  • Lifting operations

  • Factory transportation

  • Warehouse storage

Therefore, fabric strength and structural design are important factors when selecting battery material packaging.

 

Why Battery Material Packaging Needs Advanced Structure

 

Limited Protection from Standard Woven Bags

Traditional woven bags mainly provide external load support.

For lithium battery powder materials, additional packaging structures may be required to provide better protection during transportation and storage.

Important design elements include:

  • Coated inner layer

  • Aluminum foil liner

  • Sealing structure

  • Vent valve design

These structures help create a more suitable packaging system for battery material handling.

High Mechanical Stress During Handling

A 1000KG bulk bag experiences continuous stress during filling, lifting, and transportation.

The packaging performance depends on:

  • Fabric strength

  • Lifting loop structure

  • Sewing design

  • Inner liner configuration

Therefore, buyers should evaluate both material specifications and packaging structure.

 

Lithium Manganese Iron Phosphate Bulk Bag Design

 

1000KG Heavy-Duty Loading Capacity

This Lithium Manganese Iron Phosphate Bulk Bag is designed with a 1000KG loading capacity for industrial battery material packaging.

The large-capacity design helps manufacturers handle battery material powder in a more efficient bulk packaging format.

≥1600N Warp and Weft Fabric Strength

The bag body uses PP woven fabric with:

  • Warp strength ≥1600N

  • Weft strength ≥1600N

The defined strength parameters provide measurable support for heavy-duty battery material transportation.

Aluminum Foil Inner Liner Structure

The bulk bag is equipped with an aluminum foil inner liner structure.

The liner specifications include:

  • Size: 95×285cm

  • Thickness: 14μm

  • Vent valve design

The aluminum foil liner provides an additional protection layer for battery powder packaging applications.

180g/m² Coated PP Fabric Structure

The bag body uses:

  • White PP woven fabric

  • 180g/m² fabric weight

  • Inner coating structure

This structure combines external mechanical support with additional internal protection requirements for powder material packaging.

 

Technical Specifications

 

Item

Specification

Product Name

Lithium Manganese Iron Phosphate Bulk Bag

Product Type

Battery Material Bulk Bag

Application

Cathode Material Packaging

Bag Size

90×90×105cm

Loading Capacity

1000KG

Warp Strength

≥1600N

Weft Strength

≥1600N

Main Material

PP Woven Fabric

Fabric Weight

180g/m²

Surface Treatment

Inner Coated Layer

Aluminum Foil Inner Liner Size

95×285cm

Aluminum Foil Thickness

14μm

Filling Port Size

136×58cm

Discharge Port Size

136×70cm

Lifting Loop Size

7×170cm

Number of Lifting Loops

4 Loops

UV Treatment

UV 1%

 

Application

 

1 Lithium Battery Cathode Material Packaging

 

This bulk bag is designed for lithium battery cathode material packaging applications.

Typical applications include:

  • Lithium Manganese Iron Phosphate (LMFP) material packaging

  • Cathode material powder handling

  • Battery material transportation

2 Battery Material Transportation

 

The 1000KG capacity design makes this FIBC suitable for:

  • Battery material factory transportation

  • Bulk powder transfer

  • Industrial logistics operations

3 Battery Material Storage

 

The combination of PP woven fabric, coated structure, and aluminum foil liner provides additional packaging protection during battery material storage.

It is suitable for manufacturers requiring large-volume material handling solutions.

 

How to Choose Battery Material Bulk Bag

 

1. Confirm Material Application

 

Before selecting a battery material bulk bag, buyers should confirm:

  • Material type

  • Powder characteristics

  • Storage environment

  • Transportation requirements

For LMFP and cathode materials, inner protection structures should be considered based on material requirements.

 

2. Check Loading Capacity

 

The bulk bag capacity should match:

  • Material weight

  • Filling equipment

  • Lifting method

  • Transportation conditions

A 1000KG capacity design is suitable for industrial battery material packaging.

 

3. Evaluate Fabric Strength

 

For heavy-duty FIBC applications, buyers should check:

  • Warp strength

  • Weft strength

  • Lifting loop design

  • Sewing structure

This product uses ≥1600N warp and weft fabric strength.

 

4. Select Proper Inner Protection Structure

 

Different battery materials may require different packaging configurations.

Important factors include:

  • Coated fabric structure

  • Aluminum foil liner

  • Vent valve design

  • Filling and discharge port configuration

FAQ

 

Q1: What is this Lithium Manganese Iron Phosphate Bulk Bag used for?

 

This bulk bag is mainly designed for Lithium Manganese Iron Phosphate (LMFP) and lithium battery cathode material powder packaging applications.

 

Q2: What is the loading capacity of this battery material bulk bag?

 

The loading capacity is 1000KG, suitable for industrial-scale battery material transportation and storage.

 

Q3: Why does this bulk bag use an aluminum foil inner liner?

 

The aluminum foil inner liner provides an additional protective structure for battery material powder packaging and helps improve packaging protection during transportation and storage.

 

Q4: What specifications should buyers consider when selecting this type of FIBC?

 

Important specifications include:

  • Loading capacity

  • Fabric strength

  • Inner liner structure

  • Filling and discharge design

  • Storage requirements

Q5: Is this bulk bag suitable for cathode material packaging?

 

Yes. This product is designed as a Battery Material Bulk Bag for Lithium Manganese Iron Phosphate and cathode material powder packaging applications.