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Anti Static FIBC
Created with Pixso. Conductive Bulk Bags With Reinforced Sewing Structure For Chemical Powder Transportation

Conductive Bulk Bags With Reinforced Sewing Structure For Chemical Powder Transportation

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 Bulk Bags With Reinforced Sewing Structure
Material:
Conductive PP Material
Safe Working Load:
500KG/ Customized Capacity Available
Bag Dimension:
100×100×63cm / Customized Sizes Available
Fabric Strength:
Warp ≥1850N / Weft ≥1850N
Fabric Weight:
200g/m²
Coating Structure:
Inner Coating Available
Anti Static Structure:
Conductive Material Structure
Lifting Loop Design:
4 Loop Design / Customized Options
Sewing Process:
Reinforced Sewing / Double Chain Stitching
UV Treatment:
UV 1%
Application:
Chemical Powder Transportation
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Product Description

Conductive Bulk Bags with Reinforced Sewing Structure for Chemical Powder Transportation

 

Product Overview

 

Conductive Bulk Bags with Reinforced Sewing Structure are designed for chemical powders, industrial powders, and static-sensitive bulk materials requiring reliable transportation packaging.

During chemical powder transportation, FIBC bags experience multiple processes including filling, storage, handling, and long-distance logistics.

Besides supporting bulk material loading requirements, the packaging structure needs to consider mechanical forces, connection area stress, and static control requirements.

The product adopts conductive PP material structure combined with reinforced sewing design, providing an industrial packaging solution integrating structural reinforcement and static management.

 

Transportation Challenges

 

1. Long-Distance Logistics Requires Strong Packaging Structure

 

Chemical powders usually pass through multiple supply chain processes:

  • Factory filling;

  • Warehouse storage;

  • Logistics transportation;

  • Final unloading.

During transportation, FIBC bags may experience:

  • Material weight;

  • Handling impact;

  • Stacking pressure.

Therefore, packaging structures should match actual transportation conditions.

 

2. Powder Materials Need Static Control Consideration

 

Some chemical powders may generate static charges during filling, flowing, and transportation.

For static-sensitive materials, packaging design should consider:

  • Conductive materials;

  • Anti static structure;

  • Operating environment.

3. Sewing Quality Influences Structural Performance

 

Important FIBC load-bearing areas include:

  • Lifting loop connections;

  • Fabric joining areas;

  • Bottom structure.

These areas influence packaging performance during handling and transportation.

 

Reinforced Structure Design

 

1. Reinforced Sewing for Load-Bearing Areas

 

The product adopts reinforced sewing structure.

The design improves key areas including:

  • Bag connections;

  • Load-bearing positions;

  • Overall structural consistency.

2. Double Chain Stitching Process

 

The product adopts Double Chain Stitching process.

It is suitable for industrial bulk packaging applications including:

  • Chemical powder transportation;

  • Industrial material packaging;

  • Large-volume logistics.

3. Conductive Material Integration

 

The product uses Conductive PP Material.

The conductive structure supports chemical powder packaging applications requiring static control consideration.

The combination of material structure and sewing process provides a comprehensive transportation packaging solution.

 

Bulk Transportation Application Design

 

1. Designed for Chemical Powder Supply Chain

 

Suitable for:

  • Chemical raw materials;

  • Industrial powders;

  • Functional powder materials.

2. Compatible with Industrial Handling Operations

 

Suitable for:

  • Automatic filling;

  • Forklift handling;

  • Warehouse transfer.

3. Flexible Configuration Options

 

Customization options include:

  • Bag dimensions;

  • Loading capacity;

  • Lifting loop configuration;

  • Filling and discharge structure.

Technical Specifications

 

Parameter

Specification

Product Type

Conductive Bulk Bags with Reinforced Sewing Structure

Application

Chemical Powder Transportation

Material

Conductive PP Material

Fabric Weight

200g/m²

Safe Working Load (SWL)

500KG / Customized Capacity Available

Bag Dimensions

100×100×63cm / Customized Sizes Available

Fabric Strength

Warp ≥1850N / Weft ≥1850N

Sewing Process

Reinforced Sewing / Double Chain Stitching

Anti Static Structure

Conductive Material Structure

Lifting Loop Configuration

4 Loop Design / Customized Options

Coating Structure

Inner Coating Available

Filling & Discharge Structure

Customized Design Available

 

Application

 

This product is mainly used for chemical powder and industrial bulk material transportation applications, including chemical raw materials, industrial powders, functional powder materials, and static-sensitive bulk products.

It is suitable for factory filling, warehouse management, domestic and international logistics transportation.

By combining conductive material structure and reinforced sewing design, the product provides a packaging solution for structural reinforcement, static management, and bulk handling requirements.

 

FAQ

 

Q1: Why are reinforced sewing structures important for chemical powder transportation?

 

Reinforced sewing structures optimize critical FIBC connection areas.

During transportation, bags need to withstand material weight, handling forces, and logistics conditions.

 

Q2: Are conductive bulk bags suitable for chemical powders?

 

Suitability depends on specific material characteristics.

Consider:

  • Powder static sensitivity;

  • Operating environment;

  • Packaging process.

Q3: Can the capacity and size of FIBC bags be customized?

 

Yes.

Customization may include:

  • Safe Working Load;

  • Bag dimensions;

  • Lifting loop configuration;

  • Filling and discharge design.