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Lithium Carbonate FIBC Bag
Created with Pixso. 190 G/M² 1 Ton Coated Lithium Carbonate FIBC Bag With Internal Baffles

190 G/M² 1 Ton Coated Lithium Carbonate FIBC Bag With Internal Baffles

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:
Bulk Packaging After Lithium Carbonate Processing
Highlight:

1 Ton pp fibc bags

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190 G/M² pp fibc bags

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1 Ton fibc sack

Product Description

190 G/M² 1 Ton Coated Lithium Carbonate FIBC Bag With Internal Baffles

Problem|Filled-Bag Expansion Affects Storage Efficiency

When lithium carbonate is packed in 1,000 kg FIBCs, buyers need to consider more than whether the material fits inside the bag. The actual profile after filling is also important.

A conventional bulk bag may expand around the middle under internal material pressure. This increases the occupied footprint and can affect pallet fit, warehouse arrangement and transport loading.

For operations using fixed pallets, containers or automated filling equipment, controlling the filled-bag profile can be more important than the empty-bag dimensions.

Cause|Sidewall Pressure Changes the Filled-Bag Profile

The bulk density, particle size and flow characteristics of lithium carbonate affect the lateral pressure applied to the bag walls. Without internal restraints, opposing walls can move outward as the bag is filled.

Fabric weight, weaving density and tensile strength also influence how the sidewalls respond under load. Increasing the bag dimensions alone does not control lateral expansion. The fabric construction and internal baffles must work together to manage the filled-bag profile.

Solution|190 g/m² Coated Fabric with Four Internal Baffles

This 190 g/m² Coated Lithium Carbonate FIBC Bag has a rated load of 1,000 kg and nominal dimensions of 108 × 108 × 125 cm.

The body uses 190 g/m² internally coated fabric with a specified tensile strength of ≥1,700 N/50 mm and a weaving density of 54 × 54 yarns/10 cm. These values provide measurable references for evaluating the body construction.

Four 56 × 100 cm internal baffle panels connect the opposing bag walls. During filling, the baffles restrain outward wall movement and help maintain a more controlled square profile.

A Φ45 × 60 cm filling spout supports connection to filling equipment, while a Φ40 × 55 cm discharge spout allows bottom unloading. The four cross-corner loops are sewn 30 cm down the bag body, with a specified tensile requirement of ≥17,000 N per loop.

Application|Lithium Carbonate Production and Material Transfer

This product is designed for 1-ton packaging operations throughout lithium carbonate production and supply chains, including:

  • Bulk packaging after lithium carbonate processing
  • Material transfer between warehouses and production areas
  • Temporary storage before battery-material processing
  • Automatic or semi-automatic filling systems
  • Palletized warehouse storage
  • Container and truck transportation
  • Bottom-discharge processing systems
  • Storage projects requiring a controlled filled-bag profile

The baffle structure is intended to control the bag profile. It does not, by itself, establish certified stacking performance. Multi-layer stacking should be evaluated according to filled-bag tests, pallet dimensions and storage height.

Specifications

Specification Product configuration
Core product 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 and bottom panels 185 g/m² internally coated fabric
Number of baffles Four
Baffle dimensions 56 × 100 cm
Baffle fabric weight 130 g/m², internally coated
Filling spout Φ45 × 60 cm
Discharge spout Φ40 × 55 cm
Lifting-loop design Four cross-corner loops
Loop dimensions 7 × 151 cm
Loop weight 52 g/m
Loop tensile requirement ≥17,000 N per loop
Sewn-down loop length 30 cm
Stitch density 10 stitches/10 cm
UV additive 1%
Filling method Top filling
Discharge method Bottom gravity discharge

How to Choose|Match the Bag to the Packaging System

Information to confirm Effect on bag selection
Lithium carbonate bulk density Determines the volume required for a 1,000 kg filling weight
Permitted filled-bag profile Determines the required baffle construction
Pallet dimensions Determines whether the base dimensions need adjustment
Filling-machine connection Determines filling-spout diameter, length and fixing method
Discharge-equipment connection Determines discharge-spout diameter and length
Powder flowability Affects outlet dimensions and assisted-discharge requirements
Moisture-control requirement Determines whether a separate PE liner is required
Cleanliness requirement Affects the production environment and packing method
Lifting equipment Affects loop style, length and handling procedure
Outdoor storage period Affects the UV formulation and external protection

Selection Priorities

For filled-bag profile control:
Confirm the bulk density, filling height, pallet dimensions and baffle arrangement.

For automated filling:
Confirm the filling-machine outlet, filling speed, spout connection and air-venting requirements.

For bottom discharge:
Confirm the outlet dimensions, powder flowability, discharge-control method and acceptable residue.

For battery-grade material packaging:
Separately define the liner, cleanliness, metallic-contamination and moisture-control requirements.