| Brand Name: | SINOPACK |
| Model Number: | SINA26011 |
| MOQ: | 1000PCS |
| Price: | Negotiable |
| Delivery Time: | 30dAYS |
| Payment Terms: | T/T |
This 700kg Type C Conductive Chemical FIBC is designed for industrial chemical powders and granules where conductive structure and static-control requirements are important.
The bag measures 90 × 90 × 70cm and has 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.
Conductive film, red conductive lifting belts, a Type C conductive label, top filling and bottom discharge structures are integrated into the bag for chemical filling, handling and downstream discharge.
Problem
Some chemical powders and granules can generate static charge during filling, material flow, handling and discharge.
A conventional FIBC may provide sufficient mechanical packaging performance but may not include a defined conductive connection between different structural areas.
For Type C applications, buyers should therefore check not only whether the bag is described as “conductive,” but whether the body, lifting components, spouts and conductive elements form a continuous conductive path.
This FIBC combines 190gsm conductive coated fabric, conductive film, conductive lifting belts and conductive connections around the filling and discharge areas to form a Type C structure. Four red conductive lifting belts contain conductive yarns and are connected with the conductive bag structure, bringing the lifting system into the overall conductive path. The top filling and bottom discharge configuration also supports chemical powder and granule handling from filling through full-bag transfer and downstream unloading.
| Parameter | Specification |
|---|---|
| Product Type | 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 Material | Red Conductive Soft Belt, 50g/m |
| Conductive Film | Integrated in Key Structural Areas |
| Label | Type C Conductive Label |
The bag body, top and bottom use 190gsm white conductive coated fabric, with conductive film integrated into key structural and spout areas.
Four red conductive lifting belts contain conductive yarns and are connected with the bag's conductive structure.
The key point is not one isolated conductive material, but the continuous conductive connection between multiple parts of the FIBC.
The bag uses a φ36 × 75cm top filling structure and a φ55 × 70cm bottom discharge structure for centralized filling and downstream unloading of chemical powders or granules.
Four 5 × 148cm conductive lifting belts support full-bag lifting and transfer.
The product therefore supports a process including:
Filling → Full-Bag Handling → Storage / Transportation → Bottom Discharge
while maintaining the Type C conductive design throughout the packaging structure.
This Type C Conductive Chemical FIBC is mainly intended for industrial chemical powders, chemical granules, resin pellets, chemical additives and similar dry chemical materials where conductive packaging structures are required.
It is particularly relevant to industrial processes involving fixed filling equipment, full-bag lifting, warehouse storage, transportation and bottom discharge.
Actual suitability should be confirmed according to the material's electrostatic properties, dust environment, grounding conditions and applicable safety requirements.
Not every chemical material requires a Type C FIBC.
First confirm whether the process involves static-control requirements and whether the bag will be used with grounding.
Do not evaluate the product only by conductive fabric.
The body, lifting belts, filling and discharge areas and conductive film should be reviewed together for conductive continuity.
The current safe working load is 700kg.
If a different loading requirement is needed, the overall bag and lifting structure should be reviewed rather than changing only the load value.
The current top filling structure is φ36 × 75cm, while the bottom discharge structure is φ55 × 70cm.
These should be checked against the actual upstream and downstream equipment.
The practical use of a Type C FIBC depends on both the conductive bag structure and the on-site grounding arrangement.
Grounding points, operating procedures and applicable safety requirements should therefore be confirmed before use.