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Lithium Carbonate FIBC Bag
Created with Pixso. 190 G/M² Lithium Carbonate FIBC Bag With Coated Fabric For Powder Handling

190 G/M² Lithium Carbonate FIBC Bag With Coated Fabric For Powder Handling

Brand Name: Cholly
MOQ: 2000pcs
Price: Negotiable
Delivery Time: 10days
Payment Terms: T/T, L/C
Detail Information
Place of Origin:
CHINA
Name:
Lithium Carbonate FIBC Bags
Material:
Coated Woven Fabric
Suitable Material:
Lithium Carbonate Powder
Safe Working Load:
1 Ton
Bag Dimension:
108 × 108 × 125 Cm
Fabric Strength:
Warp ≥1700 N/50 Mm / Weft ≥1700 N/50 Mm
Fabric Weight:
190g/m²
Coating Structure:
Inner Coated Woven Fabric
Lifting Loop Design:
4 Cross-Corner Lifting Loops, 7 × 151 Cm
Custom Service:
Custom Size, Spout And Baffle Configuration Available
Filling & Discharge Design:
Top Filling Spout / Bottom Discharge Spout
Application:
Industrial-grade Lithium Carbonate Transportation
Highlight:

Lithium Carbonate fibc bag

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Powder Handling fibc bag

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1 Ton fibc bags

Product Description

190 g/m² Lithium Carbonate FIBC Bag with Coated Fabric for Powder Handling

Product Introduction

This 190 g/m² Lithium Carbonate FIBC Bag is designed for filling, internal transfer, storage and transportation of lithium carbonate powder. The body uses 190 g/m² internally coated fabric. The coating covers the openings in the woven fabric and helps reduce the risk of fine powder escaping through the fabric structure.

The bag has a rated load of 1,000 kg and nominal dimensions of 108 × 108 × 125 cm. Its specified fabric tensile strength is ≥1,700 N/50 mm, with a weaving density of 54 × 54 yarns per 10 cm. These values provide measurable references for fabric and bag-structure selection.

A top filling spout and bottom discharge spout allow the bag to connect with filling and unloading systems. Four internal baffles restrain excessive outward movement of the bag walls, while four cross-corner lifting loops support mechanical handling.

The coated construction is primarily intended to improve powder control through the fabric openings. If the application has stricter requirements for moisture protection, needle-hole leakage or internal cleanliness, an additional liner or specialized seam construction should be considered.

Applications

The product is suitable for 1-ton powder-packaging operations throughout lithium carbonate production, processing and distribution, including:

  • Battery-grade lithium carbonate packaging
  • Industrial-grade lithium carbonate transportation
  • End-of-line filling in lithium carbonate production
  • Material transfer between warehouses and production areas
  • Temporary raw-material storage before cathode-material processing
  • Automatic or semi-automatic powder-filling systems
  • Palletized warehouse storage
  • Processing systems requiring bottom discharge
  • Container and truck transportation

For fine lithium carbonate powder or applications with defined moisture-control requirements, a separate PE liner should be evaluated according to the actual material and storage conditions.

Specifications

Specification Product configuration
Product name Coated Lithium Carbonate FIBC Bag
Core keyword Lithium Carbonate FIBC Bag
Suitable material Lithium carbonate powder
Rated load 1,000 kg / 1 Ton
Nominal dimensions 108 × 108 × 125 cm
Bag construction Tubular body with four internal baffles
Body fabric weight 190 g/m²
Fabric treatment Internally coated
Fabric tensile strength ≥1,700 N/50 mm
Weaving density 54 × 54 yarns/10 cm
Top-panel dimensions 118 × 118 cm
Top-panel fabric 185 g/m², internally coated
Bottom-panel dimensions 118 × 118 cm
Bottom-panel fabric 185 g/m², internally coated
Filling spout Φ45 × 60 cm
Filling-spout material 90 g/m² internally coated PE
Discharge spout Φ40 × 55 cm
Discharge-spout material 90 g/m² internally coated PE
Number of baffles Four
Baffle dimensions 56 × 100 cm
Baffle fabric 130 g/m², internally coated
Number of lifting loops Four
Loop design Cross-corner
Loop dimensions 7 × 151 cm
Loop weight 52 g/m
Sewn-down loop length 30 cm
Loop tensile requirement ≥17,000 N per loop
Stitch density 10 stitches/10 cm
UV additive 1%
Filling method Top-spout filling
Discharge method Bottom-spout discharge

How to Choose

1. Calculate the required volume from bulk density

The volume occupied by lithium carbonate depends on its actual bulk density. Use the following calculation before confirming the dimensions:

Required bag volume (m³) = filling weight (kg) ÷ bulk density (kg/m³)

Verify whether 1,000 kg of the customer’s material matches the nominal 108 × 108 × 125 cm bag. The bag should not be selected by its 1-ton load rating alone.

2. Select the coating and seam construction

Coated fabric helps control powder passing through the woven structure, but needle holes and stitched seams must be evaluated separately.

Confirm:

  • Lithium carbonate particle-size range
  • Permitted dust on the external bag surface
  • Seam-sealing tape requirements
  • Dust-resistant sewing requirements
  • Whether a separate liner is needed

When strict powder control is required, conduct an actual filling test instead of relying only on the 190 g/m² fabric weight.

3. Define the moisture-protection requirement

The documented bag uses internally coated fabric but does not include a separate liner. Coated fabric should not automatically be described as verified moisture-proof packaging.

Confirm:

  • Whether a PE liner is required
  • Liner material and thickness
  • Liner fixing method
  • Closure method
  • Packing and storage conditions

4. Match the filling spout to the filling line

The standard filling spout measures Φ45 × 60 cm. Confirm the filling-machine outlet diameter, fixing method, filling speed and air-venting requirement.

If filling generates trapped air or airborne powder, suitable venting or dust-collection measures should be considered.

5. Select the discharge spout according to flowability

The standard discharge spout measures Φ40 × 55 cm. Its final dimensions should be selected according to powder flowability, required discharge rate and equipment connection.

Poor-flowing powder may require:

  • A larger outlet diameter
  • An adjusted spout length
  • Vibration or external agitation
  • Modified openings in the baffle panels
  • An actual discharge test

6. Confirm cleanliness requirements

For battery-grade lithium carbonate, confirm:

  • Internal bag cleanliness
  • Metallic-contamination limits
  • Control of loose threads and cutting debris
  • Pre-packing cleaning procedures
  • Production-environment requirements
  • Batch inspection and traceability

These requirements must be supported by production controls and inspection standards. They cannot be demonstrated by the 190 g/m² coated fabric specification alone.