Good price online

products details

Created with Pixso. Home Created with Pixso. Products Created with Pixso.
FIBC Bulk Bag
Created with Pixso. 1.2 Ton Uncoated Mining Industry FIBC Bulk Bag With Four Lifting Loops

1.2 Ton Uncoated Mining Industry FIBC Bulk Bag With Four Lifting Loops

Brand Name: SINOPACK
Model Number: SINA26011
MOQ: 1000PCS
Price: Negotiable
Delivery Time: 30dAYS
Payment Terms: T/T
Detail Information
Place of Origin:
CHINA
Name:
Mining Industry FIBC Bulk Bag
Bag Size:
90 × 90 × 90 Cm
Specified Load Capacity:
1.2 Ton
Warp Fabric Strength:
≥1600 N
Weft Fabric Strength:
≥1600 N
Body Fabric:
180 G/m²
Loop Linear Weight:
50 G/m
Number Of Lifting Loops:
4
Loop Cutting Size:
7 × 145 Cm
Inner Liner:
100 × 100 × 135 Cm
Lifting-loop Strength:
≥18000 N
Body-panel Seam:
Outward-folded Double-needle Chain Stitch
Application:
Bulk Material Transport
Packaging Details:
1.1*1.1*1.3 PALLET
Supply Ability:
20000 pcs in one month
Highlight:

1.2 Ton FIBC Bulk Bag

,

1.2t FIBC Bulk Bag

,

1.2t jumbo bags fibc

Product Description

1.2 Ton Uncoated Mining Industry FIBC Bulk Bag with Four Lifting Loops

1. Product Description

This Mining Industry FIBC Bulk Bag is intended for the evaluation of compatible dry ore, screened mineral granules and other mining bulk materials.

The bag has nominal dimensions of 90 × 90 × 90 cm and a specified load capacity of 1.2 tons, or 1200 kg.

Its body uses 180 g/m² white uncoated fabric with minimum warp and weft strengths of 1600 N. Four soft side-seam lifting loops connect the bag to a suitable forklift or lifting system.

Lifting-strap strength is specified at ≥18000 N. The uncoated construction is intended for dry materials that do not require a verified waterproof, moisture-barrier or fine-powder containment layer.

Wet ore, fine powder, material containing free water and mineral products requiring long outdoor storage may need a liner, coated fabric or another protective configuration.

2. Specific Uses in the Mining Industry

Mining operation Specific FIBC use Main packaging consideration
After ore crushing Collect and transport crushed ore particles Sharp edges and filling impact
After mineral screening Separate materials by particle size Grade and batch identification
After drying Package minerals with controlled moisture Protection from renewed moisture exposure
Inside a processing plant Transfer material between screening, storage and feeding Loop and forklift compatibility
Sampling and small batches Package material awaiting testing or delivery Label and batch traceability
Mineral-product storage Store material by ore, grade or particle size Filled dimensions and floor conditions
Road transport Deliver material to processing plants or industrial users Weight control and weather protection
Downstream feeding Supply hoppers, crushers or mixing systems Bottom design and discharge control

Crushed and Screened Ore

Dry crushed and screened ore can be evaluated according to its bulk density, maximum particle size and edge profile.

Drop height should be controlled during filling. Large particles falling from excessive height can create concentrated impact at the bottom, while sharp edges may increase puncture and abrasion risks.

Dried Mineral Products

Minerals that have completed a drying process can be packed by grade, particle size or production batch.

Although the material leaves the process dry, the uncoated body does not provide a verified moisture barrier. A PE liner, coated fabric or closable top may be required where low moisture content must be maintained.

Internal Processing-Plant Transfer

The four-loop FIBC can be used to move compatible materials between processing areas, temporary storage and downstream equipment.

All four loops should be engaged during lifting. A filled bag should not be dragged using one loop, and forklift tines should be smooth and free from sharp edges.

3. Four-Loop Uncoated Construction

The bag uses four soft lifting loops with a listed specification of 7 × 145 cm and a linear weight of 50 g/m.

The loops run down the side seams and are sewn together with the bag body. This provides an extended attachment area along the side panels.

The production sheet specifies lifting-strap strength of ≥18000 N. The values from four loops must not be added together and converted directly into complete-bag capacity.

The body uses 180 g/m² uncoated fabric with minimum warp and weft strengths of 1600 N. These values provide separate requirements for the two principal woven directions.

The panels are joined with an outward-folded double-needle chain stitch. Actual seam performance also depends on stitch density, sewing thread, thread tension and loop-attachment quality.

Additional evaluation is required for:

  • Wet ore or material containing free water;
  • Fine mineral powder with leakage risk;
  • Large ore pieces with sharp edges;
  • Hygroscopic minerals requiring long-term protection;
  • Minerals classified as dangerous goods;
  • FIBCs intended for repeated lifting cycles.

4. Technical Specifications

Parameter Specification Technical note
Product type Uncoated Mining Industry FIBC For compatible dry mining materials
Specified load capacity 1.2 tons / 1200 kg Not independently a verified SWL
Nominal dimensions 90 × 90 × 90 cm Used for filling and storage review
Theoretical geometric volume Approximately 0.729 m³ Actual capacity requires a filling trial
Approximate bag weight 1.2 kg Supports packaging calculations
Fabric colour White Defines the body appearance
Fabric construction Uncoated No verified moisture-barrier layer
Fabric weight 180 g/m² Body-fabric specification
Warp strength ≥1600 N Longitudinal fabric requirement
Weft strength ≥1600 N Lateral fabric requirement
Number of loops Four Four-point lifting configuration
Loop specification 7 × 145 cm Cut or effective length requires confirmation
Loop linear weight 50 g/m Webbing configuration
Loop strength ≥18000 N Specified strap-strength requirement
Loop installation Side-seam construction Loops extend along the side panels
Body seam Double-needle chain stitch Panel-joining method
Label Blank label without company heading Label information can be specified
Packing Two bags per package Delivery-packing requirement

No 5:1 or 6:1 safety factor, UN approval, puncture test or waterproof result is provided in the available information.

These claims should not be added to the product page until the corresponding evidence is available.

5. How to Select a Mining Industry FIBC

Define the Material Condition

Confirm whether the mining material consists of lumps, granules, fine powder or wet ore. The standard uncoated construction is more relevant to verified dry granules.

Fine-powder leakage, moisture absorption or liquid seepage may require coated fabric, a PE liner or sift-resistant seams.

Provide Bulk Density and Particle Size

The 1.2-ton figure defines the target weight but does not establish the required volume.

Provide the material’s bulk density, minimum and maximum particle sizes and information about sharp edges. This information is needed to evaluate dimensions and fabric requirements.

Match the Filling and Discharge Equipment

The production sheet does not define a filling or discharge spout.

An open top, duffle top, filling spout, flat bottom or discharge spout should be selected according to the mine or processing plant equipment.

Check Forklift and Lifting Conditions

Provide the forklift tine width, thickness, length and spacing. Confirm that all four loops can engage the lifting equipment.

The listed 145 cm dimension should be confirmed as either webbing cutting length or installed effective length. It should not automatically be presented as loop height.

Define Use Cycles and Testing

For a single-trip FIBC, confirm the required safety factor. Repeat use requires cyclic lifting tests and an inspection procedure before every use.

Dangerous-goods transport requires the applicable UN packaging code, test report and compliant markings.