| Brand Name: | Cholly |
| Model Number: | JSPK004 |
| MOQ: | 2000pcs |
| Price: | Negotiable |
| Delivery Time: | 10days |
| Payment Terms: | T/T |
Conductive Lifting Loop Design Anti Static FIBC Bags for Industrial Bulk Material Handling
Product Overview
Conductive Lifting Loop Design Anti Static FIBC Bags are designed for industrial bulk material handling applications requiring both lifting performance and static control structure.
FIBC bags need to support not only material loading requirements but also factory transfer, warehouse operations, and logistics transportation.
The product adopts conductive PP material structure with conductive lifting loop design, providing a packaging solution suitable for industrial bulk handling and static-sensitive materials.
It is suitable for industrial raw materials, bulk materials, and applications requiring conductive packaging structures.
Bulk Material Handling Requirements
1. Lifting Operations Require Reliable Load Structure
After loading materials, FIBC bags are mainly handled through lifting loops.
During operation, material weight is transferred to:
Lifting loops;
Connection areas;
Bag structure.
Therefore, loop design and stitching structure are important factors for practical handling applications.
2. Different Logistics Environments Require Suitable Loop Design
Industrial bulk materials usually go through:
Factory internal transfer;
Warehouse movement;
Transportation loading and unloading.
Different environments require different loop configurations.
3. Static-Sensitive Materials Require Integrated Handling Design
For static-sensitive materials, packaging needs to consider not only mechanical handling but also:
Conductive materials;
Conductive components;
Static control paths.
Conductive Lifting Loop Design
1. Conductive Lifting Loop Configuration
The product is equipped with 4 conductive soft material lifting loops.
Loop specifications:
Quantity: 4 loops
Size: 7×125cm
The conductive lifting loops work together with the bag structure to support static control applications.
2. Reinforced Connection Structure
During lifting operations, connection areas carry the main load.
The product adopts double chain stitching with conductive structural design to improve consistency in key connection areas.
3. Load Transfer Design
A proper lifting structure transfers material weight through:
Lifting loops → Connection areas → Bag structure
The selection should consider loading weight, handling equipment, and operating environment.
Conductive Packaging Structure
1. Conductive PP Material Support
The product uses white conductive PP material.
Material specification:
Fabric Weight: 200g/m²
Conductive PP material provides the foundation for static control packaging applications.
2. Integrated Anti Static Structure
The product combines:
Conductive PP material;
Conductive lifting loops;
Conductive components.
Creating a packaging structure for static-sensitive material handling.
3. Industrial Handling Compatibility
The product is designed with a 500KG safe working load.
The structure can be matched according to:
Handling equipment;
Lifting method;
Packaging requirements.
Technical Specifications
|
Parameter |
Specification |
|---|---|
|
Product Type |
Conductive Lifting Loop Anti Static FIBC Bags |
|
Application |
Industrial Bulk Material Handling |
|
Safe Working Load |
500KG |
|
Material |
White Conductive PP Material |
|
Fabric Weight |
200g/m² |
|
Lifting Loop Design |
4 Conductive Lifting Loops |
|
Loop Size |
7×125cm |
|
Anti Static Structure |
Conductive Material Structure |
|
Coating Structure |
Inner Coating |
|
Sewing Process |
Double Chain Stitching |
|
Fabric Strength |
Warp ≥1850N / Weft ≥1850N |
|
Bag Dimension |
100×100×63cm |
Application Scenarios
1. Industrial Bulk Material Handling
Suitable for:
Industrial raw materials;
Bulk materials;
Large-volume transportation.
2. Warehouse Transfer Operations
Suitable for:
Factory internal transfer;
Warehouse management;
Material movement.
3. Static Sensitive Material Logistics
Suitable for:
Static-sensitive industrial materials;
Applications requiring conductive packaging structures.
Selection Guide
1. Select Loop Design Based on Handling Method
Consider:
Forklift handling;
Lifting equipment;
Manual operation.
2. Select Conductive Structure Based on Material Requirements
Evaluate:
Material static sensitivity;
Operating environment;
Packaging process.
3. Confirm Specifications Based on Loading Requirements
Consider:
Loading weight;
Transportation distance;
Storage conditions.