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Chemical FIBC
Created with Pixso. Custom Type C Conductive Chemical FIBC Bag For Industrial Powder And Granule Packaging

Custom Type C Conductive Chemical FIBC Bag For Industrial Powder And Granule Packaging

Brand Name: SINOPACK
Model Number: SINA26011
MOQ: 1000PCS
Price: Negotiable
Delivery Time: 30dAYS
Payment Terms: T/T
Detail Information
Place of Origin:
CHINA
Name:
Custom Type C Conductive Chemical FIBC
Bag Size:
90 × 90 × 70 Cm /Customizable
Safe Working Load:
700 Kg / Customizable
Warp Fabric Strength:
≥1850 N
Weft Fabric Strength:
≥1850 N
Body Fabric:
190 G/m² White Conductive Coated Fabric
Filling Spout:
φ36 × 75 Cm/ Customizable
Discharge Spout:
φ55 × 70 Cm / Customizable
Lifting Belts:
4 Pcs, 5 × 148 Cm / Customizable
Lifting Belt Type:
Red Conductive Soft Belt With Conductive Yarns
Printing & Label:
Custom Printing And Type C Identification
Application:
Custom Chemical Powder And Granule Packaging
Packaging Details:
1.1*1.1*1.3 PALLET
Supply Ability:
20000 pcs in one month
Highlight:

Custom fibc baffle bag

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Type C fibc baffle bag

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Industrial Powder bulk fibc bags

Product Description

Custom Type C Conductive Chemical FIBC Bag for Industrial Powder and Granule Packaging

Product Introduction

This custom Type C Conductive Chemical FIBC is intended for project-based packaging of industrial chemical powders and granules.

The bag configuration can be determined according to material properties, target filling weight, filling equipment, discharge method, full-bag handling and conductive-connection requirements.

The current reference configuration measures 90 × 90 × 70cm with a safe working load of 700kg. The body, top and bottom use 190gsm white conductive coated fabric with minimum warp and weft fabric strength of ≥1850N.

The structure includes conductive film, red conductive lifting belts, top filling, bottom discharge, closing components, a document pouch and a Type C conductive label.

 Problem

Chemical packaging conditions vary significantly from one project to another.

Powders and granules may differ in bulk density, flowability, dust generation, electrostatic characteristics and moisture sensitivity.

Filling pipes, hopper outlets, downstream equipment, forklifts and lifting systems also differ between factories.

A fixed FIBC configuration may therefore create problems with filling connections, discharge operations or full-bag handling.

For Type C applications, conductive continuity and actual grounding conditions must also be considered.

Solution

A custom Type C Chemical FIBC can be configured around the complete packaging process instead of selecting only a fixed bag model. Bag dimensions and materials are first matched to the chemical material and target filled weight. Filling and discharge structures are then selected according to upstream and downstream equipment, while lifting belts are matched to actual handling methods. Where Type C construction is required, conductive film, conductive lifting belts, body connections and conductive identification can also be incorporated into the final configuration.

Specification

Parameter Specification
Product Type Custom Type C Conductive Chemical FIBC
Bag Size 90 × 90 × 70cm
Safe Working Load 700kg
Body Fabric 190gsm White Conductive Coated Fabric
Warp Fabric Strength ≥1850N
Weft Fabric Strength ≥1850N
Filling Spout φ36 × 75cm
Discharge Spout φ55 × 70cm
Lifting Belts 4 pcs, 5 × 148cm
Lifting Belt Type Red Conductive Soft Belt
Conductive Structure Conductive Film + Conductive Lifting Belts
Application Industrial Chemical Powder & Granule Packaging

The specifications above represent the current reference configuration. Final specifications should be confirmed according to the actual project.

Custom Options

Bag Size and Filling Requirement

Bag dimensions should be selected according to material bulk density, required filling weight, warehouse space and transportation conditions.

The current reference bag is 90 × 90 × 70cm with a 700kg safe working load.

If the required load changes, fabric, lifting and sewing structures should also be reviewed.

Filling and Discharge Configuration

The current configuration uses a φ36 × 75cm top filling spout and a φ55 × 70cm bottom discharge spout.

Final spout dimensions can be confirmed against filling pipes, hopper outlets, bag-clamping devices and downstream discharge equipment.

Conductive and Lifting Configuration

For Type C applications, the conductive path is more important than simply specifying conductive fabric.

The current structure combines conductive coated fabric, conductive film and four red conductive lifting belts.

Lifting and conductive connections should be matched to the actual handling and grounding requirements.

Labels and Auxiliary Components

Document pouches, label positions, printing, ties, closing ropes and closing methods can also be confirmed according to project requirements.

These details help match the FIBC to actual identification, handling and documentation procedures.

Application

Custom Type C FIBCs can be evaluated for resin powders and pellets, mineral and inorganic powders, inorganic salts, pigments, fillers, chemical additives and similar dry industrial chemical materials.

Typical applications may include PVC resin powder, resin granules, calcium carbonate, talc, titanium dioxide, alumina and similar industrial powders.

Actual suitability should still be confirmed according to electrostatic properties, dust conditions, hazardous characteristics, grounding requirements and applicable regulations.

FAQ

1. What can be customized on a Type C Chemical FIBC?

Bag dimensions, filling and discharge structures, lifting configuration, conductive connections, labels, document pouches, printing and closing components can be confirmed according to the project.

2. Why is project-based selection important for chemical FIBCs?

Chemical materials differ in density, flowability, dust behavior and electrostatic properties, while packaging equipment also differs between facilities.

One fixed configuration therefore cannot automatically suit every application.

3. Is a Type C FIBC suitable for every chemical powder?

No.

Suitability depends on material electrostatic properties, dust conditions, grounding arrangements and applicable safety or regulatory requirements.