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Chemical FIBC
Created with Pixso. Top Filling Bottom Discharge Chemical FIBC For Carbon Granule Bulk Handling

Top Filling Bottom Discharge Chemical FIBC For Carbon Granule Bulk Handling

Brand Name: SINOPACK
Model Number: SINA26011
MOQ: 1000PCS
Price: Negotiable
Delivery Time: 30dAYS
Payment Terms: T/T
Detail Information
Place of Origin:
CHINA
Name:
Top Filling Bottom Discharge Chemical FIBC
Bag Size:
100 × 100 × 120 Cm
Safe Working Load:
1000 Kg
Warp Fabric Strength:
≥1470 N
Weft Fabric Strength:
≥1470 N
Body Fabric:
170 G/m² Black Coated Fabric
Filling Spout:
φ40 × 45 Cm
Discharge Spout:
φ40 × 70 Cm
Lifting Belts:
4 Pcs, 7.5 × 170 Cm
Nternal Baffles:
4 Pcs, 53 × 100 Cm
Application:
Carbon Granule Filling, Bulk Handling And Bottom Discharge
Packaging Details:
1.1*1.1*1.3 PALLET
Supply Ability:
20000 pcs in one month
Highlight:

Chemical fibc bulk bags

,

1000kg fibc bulk bags

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Chemical fibc bags

Product Description

Top Filling Bottom Discharge Chemical FIBC for Carbon Granule Bulk Handling

Product Introduction

This Top Filling Bottom Discharge Chemical FIBC is designed for centralized filling, full-bag transfer and downstream discharge of carbon granules in industrial handling systems.

The φ40 × 45cm top filling structure connects the FIBC with hoppers, filling pipes or other upstream feeding equipment, while the φ40 × 70cm bottom discharge structure provides a defined outlet for transferring stored or transported carbon granules into downstream receiving systems.

The bag measures 100 × 100 × 120cm with a rated load of 1000kg. For projects where the FIBC needs to work directly with carbon granule filling and discharge equipment, interface compatibility becomes one of the main selection factors.

 Problem

In carbon granule bulk handling, a bag can have the correct load rating but still create operational problems if it does not match the production equipment.

An unsuitable top filling spout may require manual positioning or additional fixing during filling.

At the destination, a bottom discharge outlet that does not match the hopper, conveyor or receiving system may also increase manual unloading.

The FIBC therefore functions as an interface between different stages of the carbon granule handling process.

Solution

This Chemical FIBC combines a φ40 × 45cm top filling structure with a φ40 × 70cm bottom discharge structure to connect upstream filling equipment with downstream carbon granule receiving systems. The 1000kg rated load and four 7.5 × 170cm black lifting belts support full-bag transfer, while four 53 × 100cm internal baffles provide restraint against excessive lateral expansion. The filling and discharge structures can be reviewed according to actual hopper outlets, filling pipes, discharge stations and downstream equipment.

Specification

Parameter Specification
Product Type Top Filling Bottom Discharge Chemical FIBC
Bag Size 100 × 100 × 120cm
Rated Load 1000kg
Body Fabric 170gsm Black Coated Fabric
Warp Fabric Strength ≥1470N
Weft Fabric Strength ≥1470N
Filling Spout φ40 × 45cm
Discharge Spout φ40 × 70cm
Spout Fabric 90gsm Black Coated Fabric
Lifting Belts 4 pcs, 7.5 × 170cm
Internal Baffles 4 pcs, 53 × 100cm
Baffle Openings 4 pcs per Baffle, 10 × 30cm Oval
Application Carbon Granule Bulk Handling

Filling Interface

The top filling structure is one of the main features of this product.

Carbon granules may enter the FIBC from a hopper, filling pipe or weighing system, so the filling interface should match the actual equipment.

The current configuration uses a φ40 × 45cm filling spout.

For a project-based configuration, buyers should confirm:

  • Filling pipe diameter
  • Hopper outlet dimensions
  • Bag-clamping method
  • Filling height
  • Carbon granule flow rate

Discharge Interface

The bottom uses a φ40 × 70cm discharge structure for controlled unloading after storage or transportation.

Typical downstream systems may include:

  • Storage hoppers
  • Conveyors
  • Dosing equipment
  • Carbon-processing systems
  • Other receiving equipment

Discharge performance depends not only on outlet dimensions, but also on carbon granule size, flowability and downstream equipment.

Production Line Application

This Chemical FIBC is suitable for a process such as:

Carbon Granule Production / Screening
→ Hopper or Filling System
→ Top Filling Spout
→ FIBC
→ Full-Bag Transfer
→ Storage / Transportation
→ Bottom Discharge
→ Hopper / Conveyor / Processing Equipment

The FIBC therefore acts as an intermediate packaging unit between carbon granule production, logistics and downstream use.

For equipment-based operations, matching the filling and discharge interfaces to the production line is especially important.

Handling & Bag Shape

Four 7.5 × 170cm black lifting belts support full-bag lifting and transfer.

The bag also uses four 53 × 100cm internal baffles, each with four 10 × 30cm oval openings.

In this product, the baffles function as a supporting structure for filled-bag shape control rather than the main product focus.

Application

This FIBC is mainly designed for equipment-based filling and bottom discharge of carbon granules.

It is suitable for projects where carbon granules move from production or screening equipment into a hopper or filling system, then into an FIBC for handling, storage and transportation before being discharged into downstream receiving equipment.

Typical applications include:

  • Centralized carbon granule filling
  • Internal plant transfer
  • Bulk warehouse storage
  • Transportation
  • Bottom discharge at the destination
  • Integration with hoppers and conveying systems

Final configuration should be confirmed according to actual carbon granule size, bulk density, flowability and equipment interfaces.

How to Choose

1. Check the Upstream Equipment

Confirm how the carbon granules enter the FIBC.

Provide filling-pipe or hopper-outlet dimensions where possible.

2. Check the Downstream Equipment

Confirm where the carbon granules will be discharged.

Hopper, conveyor or receiving-system dimensions should be considered.

3. Confirm Load and Volume

The current rated load is 1000kg and the reference bag size is 100 × 100 × 120cm.

Actual required volume also depends on carbon granule bulk density.

4. Confirm the Handling Method

The current design uses four 7.5 × 170cm black lifting belts.

Forklift and lifting-equipment conditions should be reviewed.

5. Review the Baffle Requirement

The baffle configuration can be confirmed according to filled-bag shape, warehouse arrangement and transportation conditions.