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Graphite Powder FIBC Bags
Created with Pixso. Four-Loop Graphite Powder FIBC Bags With 40 Cm Diamond Loop Stitching

Four-Loop Graphite Powder FIBC Bags With 40 Cm Diamond Loop Stitching

Brand Name: Cholly
MOQ: 2000pcs
Price: Negotiable
Delivery Time: 10days
Payment Terms: T/T, L/C
Detail Information
Place of Origin:
CHINA
Name:
Carbon Powder Bulk Bag
Material:
Coated PP Woven Fabric With PE Liner
Suitable Material:
Graphite Powder
Safe Working Load:
1 Ton
Bag Dimension:
95 × 95 × 125 Cm
Fabric Strength:
Warp ≥1650 N; Weft ≥1650 N
Fabric Weight:
Body 180 G/m² / Top & Bottom 160 G/m²
Coating Structure:
Uncoated Body With Internally Coated Filling And Discharge Spouts
Lifting Loop Design:
4 Cross-Corner Lifting Loops, 7 × 140 Cm, 45 G/m
Filling & Discharge:
Ø45 × 55 Cm Filling Spout / Ø35 × 45 Cm Discharge Spout
Inner Liner:
100 × 100 × 135 Cm Inner Liner With Top And Bottom Spouts
Additives:
1% UV Additive
Sewing Density:
9–12 Stitches Per 10 Cm
Custom Service:
Made To Order Based On Confirmed Bag And Spout Specifications
Application:
Bulk Bags For Graphite Powder Storage
Highlight:

Four Loop bulk fibc bags

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Carbon Powder bulk fibc bags

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Carbon Powder baffle fibc bag

Product Description

Four-Loop Graphite Powder FIBC Bags with 40 cm Diamond Loop Stitching

1. Product Focus: Loop-to-Body Connection Areas

These Four-Loop Graphite Powder FIBC Bags use four cross-corner lifting loops measuring 7 × 140 cm, with a specified webbing weight of 45 g/m. Each loop extends approximately 40 cm down the bag body in a diamond-shaped stitching pattern and is supported by a 14 × 20 cm reinforcement patch.

Instead of focusing primarily on bag dimensions or material flow, this product highlights how the lifting loops are connected to the body. When a filled FIBC is raised, the graphite powder load is transferred through the body fabric, sewn connection areas and loops to the forklift. The loop attachment areas are therefore important production-control points.

2. Construction of the 40 cm Diamond Stitching

The production sheet specifies that each loop is sewn approximately 40 cm downward from the top of the bag body in a diamond-shaped pattern. This provides a longer loop-to-body connection than a short attachment located only near the top seam.

The diagonal sewing lines connect the webbing and body fabric in multiple directions. Their function is to establish a continuous load-transfer area rather than simply increase the visible number of stitches.

The 40 cm value is a documented sewing length. Without finished-bag test data, it must not be used to claim a specific percentage improvement or a higher loading capacity.

3. Function of the 14 × 20 cm Reinforcement Patches

One 14 × 20 cm reinforcement patch is installed at each loop connection area, giving four patches per bag. The patches use 160 g/m² internally coated material.

When the bag is lifted, the webbing applies tension to the body connection. The additional fabric layer supports the attachment area so that the loop is not connected only to a single layer of body fabric.

The structural load path can be described as:

180 g/m² body fabric → 14 × 20 cm reinforced area → 40 cm diamond stitching → four cross-corner loops

The patch dimensions and sewing construction provide measurable production-inspection points. They do not replace finished-bag lifting tests or safety-factor verification.

4. Backstitching and Stitch-Density Control

In addition to the diamond-shaped sewing, the production requirements specify at least three backstitching passes at the loop ends and three passes at the top of the diamond pattern. Backstitching secures the ends of the seam and reduces the possibility of the stitching opening from its termination point.

The bottom of the diamond pattern is designed without a horizontal closing seam. Quality inspection should follow this documented construction rather than treating the absence of a bottom cross-seam as a sewing defect.

The general stitch density is specified as 9–12 stitches per 10 cm. Inspection of the loop areas should cover:

  • Symmetrical positioning of all four loops;
  • Twisting or folding of the webbing;
  • Continuity of the 40 cm diamond stitching;
  • Position of the reinforcement patches;
  • Backstitching at the specified seam ends;
  • Skipped stitches, broken threads or damaged body fabric.

These requirements support sewing-process consistency, but they do not justify absolute claims such as “never fails” or “completely safe.”

5. Lifting and Transfer Applications

These Graphite Powder FIBC Bags are intended for four-point forklift lifting during operations such as:

  • Moving filled graphite powder bags from a weighing station to a warehouse;
  • Transferring one-ton packaging units from production to temporary storage;
  • Short-distance movement between warehouse positions;
  • Lifting and positioning bags before transport loading;
  • Moving bags from the unloading area to a discharge station;
  • Suspending a bag above a receiving hopper for bottom discharge.

Before lifting, all four loops should be placed correctly on the forklift tines and checked for twisting. Fork spacing should match the bag dimensions and loop positions. A filled bag should not be lifted using only two of its four loops.

6. Specifications and Operating Limits

Specification Configuration
Rated load 1000 kg
Finished dimensions 95 × 95 × 125 cm
Body fabric 180 g/m² uncoated tubular double-warp fabric
Fabric strength Warp ≥1650 N; weft ≥1650 N
Number of loops Four
Loop design Cross-corner
Loop dimensions 7 × 140 cm
Loop weight 45 g/m
Reinforcement quantity Four patches
Reinforcement size 14 × 20 cm
Loop sewing length 40 cm downward along the body
Sewing pattern Diamond-shaped
Backstitching At least three passes at loop ends; three at diamond top
General stitch density 9–12 stitches per 10 cm
Main application Lifting, internal transfer and discharge positioning

The rated loading capacity remains 1000 kg. The 40 cm diamond stitching, reinforcement patches and backstitching form the loop connection structure, but they do not authorize loading above the documented rating.

No safety factor, cyclic lifting test or reusable classification is provided. The product should not be promoted as a 6:1 safety-factor or reusable FIBC without additional test evidence.