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Anti Static FIBC
Created with Pixso. 200g/M² Conductive PP Anti Static FIBC Bags With Conductive Film Structure For Powder Material Packaging

200g/M² Conductive PP Anti Static FIBC Bags With Conductive Film Structure For Powder Material Packaging

Brand Name: Cholly
Model Number: JSPK004
MOQ: 2000pcs
Price: Negotiable
Delivery Time: 10days
Payment Terms: T/T
Detail Information
Place of Origin:
CHINA
Name:
Conductive PP Anti Static FIBC Bags
Safe Working Load:
500KG
Bag Dimension:
100×100×63cm
Fabric Strength:
Warp ≥1850N / Weft ≥1850N
Material:
White Conductive PP Material
Fabric Weight:
200g/m²
Coating Structure:
Inner Coating
Filling Spout Size:
136×55cm
Lifting Loop Design:
4 Conductive Lifting Loops, 7×125cm
Conductive Film Size:
7×28cm / 3×30cm
UV Treatment:
UV 1%
Application:
Powder Material Packaging / Industrial Powder Packaging
Highlight:

Anti Static bulk fibc bags

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Powder Material Packaging PP bulk fibc bags

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200g/M2 pp woven fibc bags

Product Description

200g/m² Conductive PP Anti Static FIBC Bags with Conductive Film Structure for Powder Material Packaging

Product Overview

 

200g/m² Conductive PP Anti Static FIBC Bags are designed for industrial powders, chemical powders, and static-sensitive bulk materials requiring static control during packaging and handling processes.

During powder production, conveying, filling, and discharge, friction between particles and packaging materials may generate static charges.

The product adopts 200g/m² conductive PP material combined with conductive film structure, providing a packaging solution based on material performance and structural design.

It is suitable for industrial powder packaging, powder transportation, and bulk material handling applications requiring static management.

 

Powder Packaging Challenges

 

1. Powder Flow Generates Static Charge Accumulation

Powder materials have high flowability during production and packaging.

When powders pass through:

  • Conveying equipment;

  • Filling systems;

  • Discharge processes;

particle friction may generate static charges.

Standard FIBC bags mainly provide basic packaging functions, while static-sensitive powders require additional static control structures.

 

2. High-Speed Filling Creates Static Control Requirements

Modern powder packaging often uses automated production processes.

During high-speed filling, packaging systems need to meet:

  • Load requirements;

  • Filling efficiency;

  • Static management requirements.

3. Standard PP Packaging Lacks Conductive Structure Design

Traditional PP FIBC bags mainly rely on material strength for packaging functions.

However, powder applications require consideration of:

  • Conductive material selection;

  • Static discharge paths;

  • Structural connections.

Static Generation Factors

 

1. Material Transfer Creates Particle Friction

During powder transportation, particles continuously contact and separate.

This friction process may generate electrical charges.

Therefore, static-sensitive powder packaging requires conductive material design.

 

2. Powder Movement Influences Charge Accumulation

Powder flow conditions are affected by:

  • Conveying speed;

  • Filling method;

  • Material characteristics.

3. Packaging Structure Affects Static Control Performance

FIBC bags are not only transportation containers but also an important part of powder handling processes.

Material selection, structure design, and conductive components need to work together.

 

Conductive Structure Solution

 

1. 200g/m² Conductive PP Fabric Design

 

The product adopts white conductive PP material.

Material specification:

  • Fabric Weight: 200g/m²

Conductive PP material provides the foundation for static control powder packaging.

 

2. Integrated Conductive Film Structure

The product integrates conductive film structure.

The conductive film works together with conductive PP material to create a static control structure.

It is suitable for powder filling, transportation, and discharge processes.

 

3. Powder Filling and Discharge Compatibility

The FIBC structure can be designed according to powder handling requirements.

Options include:

  • Filling spout design;

  • Discharge structure;

  • Customized dimensions.

4. Reinforced Sewing for Bulk Packaging

 

The product adopts double chain stitching process.

Combined with conductive film reinforcement, it improves consistency in key connection areas.

It is suitable for industrial powder bulk packaging.

 

Technical Specifications

Parameter

Specification

Product Type

Conductive PP Anti Static FIBC Bags

Application

Powder Material Packaging

Safe Working Load

500KG

Material

White Conductive PP Material

Fabric Weight

200g/m²

Anti Static Structure

Conductive Film Structure

Coating Structure

Inner Coating

Fabric Strength

Warp ≥1850N / Weft ≥1850N

Sewing Process

Double Chain Stitching

Lifting Loop Design

Conductive Lifting Loop

Bag Dimension

100×100×63cm

Filling Spout Size

136×55cm

 

Powder Packaging Applications

 

1. Industrial Powder Processing

Suitable for:

  • Industrial powders;

  • Functional powders;

  • Bulk powder materials.

2. Chemical Powder Handling

Suitable for:

  • Chemical powders;

  • Industrial additives;

  • Powder raw materials.

3. Automated Powder Filling Systems

Suitable for:

  • Automatic filling lines;

  • Powder conveying systems;

  • Industrial packaging processes.

FAQ

 

Q1: Why are Conductive PP FIBC Bags suitable for powder materials?

Powder materials may generate static charges during movement and transportation.

Conductive PP materials and structures support applications requiring static control.

 

Q2: What is the function of conductive film in FIBC bags?

Conductive film helps form a static control structure.

It works together with conductive PP material and other conductive components.

 

Q3: Are these bags suitable for automatic powder filling systems?

Yes.

The structure can be customized according to:

  • Filling equipment;

  • Filling and discharge methods;

  • Packaging processes.

Q4: Can the FIBC structure be customized?

 

Yes.

Customization includes:

  • Bag dimensions;

  • Lifting loop design;

  • Filling and discharge structure;

  • Sewing solutions.