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Lithium Carbonate FIBC Bag
Created with Pixso. Top Filling Lithium Carbonate FIBC Bag With Bottom Discharge Spout

Top Filling Lithium Carbonate FIBC Bag With Bottom Discharge Spout

Brand Name: Cholly
MOQ: 2000pcs
Price: Negotiable
Delivery Time: 10days
Payment Terms: T/T, L/C
Detail Information
Place of Origin:
CHINA
Name:
Top Filling And Bottom Discharge Lithium Carbonate FIBC Bag
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:

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1 Ton fibc bulk bag

Product Description

Top Filling Lithium Carbonate FIBC Bag with Bottom Discharge Spout

Product Introduction

This Top Filling Lithium Carbonate FIBC Bag is designed around the complete material-transfer process: lithium carbonate powder enters through filling equipment, remains in the bag during storage and transportation, and is discharged into downstream processing equipment through the bottom outlet.

The bag has a Φ45 × 60 cm top filling spout for connection to a powder filler or storage hopper. A Φ40 × 55 cm bottom discharge spout allows gravity unloading without cutting open the bottom panel.

Both spouts use flexible 90 g/m² internally coated PE material for easier connection and closure. The filling spout has a 25 cm tie, while the discharge spout has a 20 cm tie for closing the bag after filling and controlling the outlet before discharge.

With a rated load of 1,000 kg, the bag is suitable for lithium carbonate handling systems requiring defined filling connections, bottom discharge and batch-based material transfer.

Top Filling Spout Design

The filling spout connects the bag to filling equipment and directs lithium carbonate powder into the bag from a defined position.

The documented filling configuration includes:

  • Nominal filling-spout dimensions of Φ45 × 60 cm
  • Filling-spout cut-piece dimensions of 151 × 65 cm
  • Φ39 cm cross opening in the top panel
  • 90 g/m² internally coated PE material
  • 25 cm closing tie
  • Flexible spout material
  • Double-folded raw-edge seam
  • Single-fold, single-stitch connection to the top panel

The filling-spout diameter should be matched to the equipment outlet. An oversized spout may be difficult to secure, while an undersized spout may restrict filling or cause material accumulation around the connection.

Bottom Discharge Spout Design

The bottom outlet supports controlled unloading of lithium carbonate at the point of use. Operators can open the spout without cutting or damaging the bottom panel.

The documented discharge configuration includes:

  • Nominal discharge-spout dimensions of Φ40 × 55 cm
  • Discharge-spout cut-piece dimensions of 136 × 60 cm
  • Φ34 cm cross opening in the bottom panel
  • 90 g/m² internally coated PE material
  • 20 cm closing tie
  • Double-stitched spout construction
  • Flexible material for easier closing and opening

Actual discharge speed depends on powder flowability, particle size and moisture condition. Material that tends to bridge or compact should be evaluated through an unloading test rather than by outlet diameter alone.

Application

This Lithium Carbonate FIBC Bag is intended for end-of-line filling, finished-product storage, internal transfer, logistics transportation and downstream feeding of battery-grade or industrial-grade lithium carbonate powder, particularly in handling systems with an overhead hopper or screw-filling unit and a receiving station or mixing system below the bag; the top spout connects to the filling side, while the bottom outlet supports point-of-use discharge and forms a complete filling, closing, handling and unloading process.

Specifications

Specification Product configuration
Product name Top Filling and Bottom Discharge Lithium Carbonate FIBC Bag
Core keyword Lithium Carbonate FIBC Bag
Suitable material Lithium carbonate powder
Rated load 1,000 kg
Nominal dimensions 108 × 108 × 125 cm
Body fabric 190 g/m², internally coated
Top and bottom panels 185 g/m², internally coated
Filling-spout dimensions Φ45 × 60 cm
Filling-spout cut piece 151 × 65 cm
Top-panel opening Φ39 cm
Filling-spout material 90 g/m² internally coated PE
Filling-spout tie 25 cm
Discharge-spout dimensions Φ40 × 55 cm
Discharge-spout cut piece 136 × 60 cm
Bottom-panel opening Φ34 cm
Discharge-spout material 90 g/m² internally coated PE
Discharge-spout tie 20 cm
Spout requirement Flexible material with finished raw edges
Baffle construction Four internal baffles
Baffle dimensions 56 × 100 cm
Lifting-loop design Four cross-corner loops
Loop dimensions 7 × 151 cm
Loop tensile requirement ≥17,000 N per loop
Fabric tensile strength ≥1,700 N/50 mm
Weaving density 54 × 54 yarns/10 cm
Stitch density 10 stitches/10 cm
UV additive 1%

How to Choose

1. Measure the filling-equipment outlet

Measure the outside diameter of the filling machine or hopper outlet before specifying the filling spout. The spout should fit over the outlet and leave enough length for secure attachment.

Confirm:

  • Equipment outlet diameter
  • Required insertion length
  • Spout fixing method
  • Target filling time
  • Air-venting requirement

The standard Φ45 × 60 cm filling spout can be adjusted when it does not match the equipment.

2. Determine the air-venting requirement

Powder entering the bag displaces the air inside it. For high filling rates, define how this air will escape to avoid premature bag inflation or powder accumulation around the inlet.

Options may include:

  • Natural venting through the connection gap
  • A separate venting spout
  • Connection to a dust-collection system
  • Reduced filling speed
  • Staged filling and weighing

3. Select the outlet according to flowability

The Φ40 × 55 cm discharge spout supports gravity discharge, but performance depends on the actual lithium carbonate characteristics.

Confirm:

  • Particle size
  • Bulk density
  • Moisture condition
  • Bridging or caking tendency
  • Required discharge rate
  • Receiving-equipment inlet dimensions

4. Define the discharge-control method

For partial or batch discharge, determine whether the standard tie closure is sufficient or whether a double outlet, flap valve or protective cover is required.

For complete single-batch discharge, focus on matching the outlet diameter to the receiving equipment.

5. Define the permitted residue

A bottom spout allows centralized discharge but does not guarantee that no material will remain inside the bag. Baffle position, bottom construction and powder flowability can all affect residue.

When a residue limit is specified, verify it through an actual filling and discharge test with lithium carbonate powder.