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Nickel Sulfate FIBC Bag
Created with Pixso. 93 X 93 X 105 Cm Nickel Sulfate FIBC Bag For 1 Ton Bulk Packaging

93 X 93 X 105 Cm Nickel Sulfate FIBC Bag For 1 Ton Bulk Packaging

Brand Name: Cholly
MOQ: 2000pcs
Price: Negotiable
Delivery Time: 10days
Payment Terms: T/T, L/C
Detail Information
Place of Origin:
CHINA
Name:
Nickel Sulfate FIBC Bag
Material:
Coated PP Woven Fabric With PE Liner
Suitable Material:
Nickel Sulfate
Safe Working Load:
1 Ton
Bag Dimension:
93 × 93 × 105 Cm
Fabric Strength:
Warp ≥1760 N / Weft ≥1760 N
Fabric Weight:
Body 180 G/m² / Top & Bottom 190 G/m²
Coating Structure:
Externally Coated Woven Fabric With PE Inner Liner
Lifting Loop Design:
4 Cross-Bottom Lifting Loops, 7 Cm Wide, Approx. 45 Cm Loop Height
Filling & Discharge:
Ø45 × 60 Cm Filling Spout / Ø45 × 45 Cm Discharge Spout
Inner Liner:
200 × 340 Cm PE Liner, Approx. 90 μm
Additives:
1% UV Additive / 2% Anti-Static Additive
Sewing Density:
9–12 Stitches Per 10 Cm
Custom Service:
Custom Size, Spout, Liner And Printing Available
Application:
Bulk Packaging
Highlight:

1 Ton fibc bulk container bag

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Nickel Sulfate fibc bulk container bag

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Nickel Sulfate fibc sack

Product Description

93 × 93 × 105 Cm Nickel Sulfate FIBC Bag For 1 Ton Bulk Packaging

Why Bag Dimensions Matter in 1 Ton Nickel Sulfate Packaging

FIBC dimensions affect more than the amount of material that can be filled. They also influence pallet compatibility, filling-equipment clearance, warehouse footprint, forklift access, and transportation-space utilization.

This nickel sulfate FIBC has finished dimensions of 93 × 93 × 105 cm and a specified load of 1000 kg. Whether this size can accommodate one tonne of a specific nickel sulfate material must still be verified using its bulk density, filling height, bag expansion, and required headspace.

How the 93 × 93 cm Base Affects Packaging Layout

Pallet Compatibility

The nominal 93 × 93 cm base can be matched with commonly used square pallets. When centered on a 110 × 110 cm pallet, the unexpanded nominal footprint would leave approximately 8.5 cm on each side.

An FIBC can expand after filling, so an actual filled sample should be used to confirm:

  • Whether the bag extends beyond the pallet edges;
  • Whether the pallet completely supports the bag bottom;
  • Whether the discharge spout is compressed against the pallet;
  • Whether sufficient fork-entry space remains available;
  • Whether the filled bag’s center of gravity stays within the supported area.

Warehouse Footprint

The nominal 93 × 93 cm base occupies approximately 0.865 m². This value can support an initial estimate of storage positions, but warehouse planning should not be based solely on the empty-bag dimensions.

Additional space is needed for filled-bag expansion, pallet edges, forklift aisles, and package inspection. For extended storage, the maximum dimensions of a filled sample should be used.

Side-by-Side Placement

The square base supports regular side-by-side placement on pallets, warehouse floors, or inside transportation units. Filled bags should not be compressed excessively against one another because lateral pressure can change the bag shape and displace the spouts, lifting loops, or liner.

Where a customer has specific requirements for rack size, container quantity, or bags per row, the available length, width, and height should be provided.

What the 105 cm Height Means for One-Tonne Filling

Filling Volume

Based on the 93 × 93 × 105 cm rectangular envelope, the approximate theoretical geometric volume is:

0.93×0.93×1.05≈0.91 m30.93 times 0.93 times 1.05 approx 0.91 text{m}^3

An FIBC is not a rigid rectangular container. Its usable volume is affected by the circular woven body, top and bottom construction, material settlement, and required filling headspace. The approximate 0.91 m³ figure should therefore be used only for preliminary evaluation.

The target filling weight can be estimated using:

Filling weight=Effective filling volume×Material bulk densitytext{Filling weight}=text{Effective filling volume}timestext{Material bulk density}

The actual bulk density of the nickel sulfate should be provided before confirming whether the 105 cm height can accommodate the target weight without overfilling.

Stability After Filling

The 105 cm height and 93 cm base width create a relatively compact profile rather than a tall, narrow bag. However, these dimensions alone do not prove a specified level of stacking or shape stability.

Actual stability depends on:

  • Uniform distribution of nickel sulfate inside the bag;
  • Alignment between the filling outlet and bag center;
  • Material settlement or cone formation;
  • Lateral expansion after filling;
  • Complete and level pallet support;
  • Lateral compression during storage or transportation.

Filled-Shape Control

The filling quantity should match the material bulk density and available bag volume. Overfilling can place pressure on the top construction, make the filling spout difficult to close, and increase lateral expansion. Underfilling may leave the bag loose and affect pallet placement or discharge.

The filling equipment should be aligned above the center of the bag. Equipment clearance should account for the 105 cm body height, Ø45 × 60 cm filling spout, and approximately 45 cm lifting-loop height.

Dimension Checks at Each Packaging Stage

Packaging Stage Dimension-Related Concern What to Confirm
Filling Whether the 105 cm body fits the filling station Filling-outlet height, spout-connection space, and loop-suspension height
Filling Whether the theoretical 0.91 m³ envelope accommodates the target weight Bulk density, effective filling volume, and required headspace
Temporary storage Lateral expansion after filling Maximum filled width, floor condition, and spacing between bags
Forklift handling Complete support for the 93 × 93 cm base Pallet dimensions, fork spacing, entry direction, and center of gravity
Warehousing Compatibility with the designated storage position Filled dimensions, pallet footprint, aisle width, and vertical clearance
Warehousing Compression during side-by-side placement Bags per row, spacing, and inspection access
Truck or container loading Use of the available transportation space Internal dimensions, pallet layout, door height, and load restraint
Transportation Shape changes caused by vibration and settlement Material settlement, bag expansion, and pallet support

Main Specifications

Parameter Specification
Product Nickel Sulfate FIBC Bag
Finished dimensions 93 × 93 × 105 cm
Specified load 1000 kg
Theoretical rectangular envelope Approximately 0.91 m³
Body construction Circular woven PP body
Body fabric 180 g/m² white externally coated PP woven material
Top and bottom panels 190 g/m² white externally coated material
Fabric strength Warp ≥1760 N; weft ≥1760 N
Lifting structure Four cross-bottom lifting belts
Lifting-belt width 7 cm
Loop height Approximately 45 cm
Filling spout Ø45 × 60 cm
Discharge spout Ø45 × 45 cm
Inner liner 200 × 340 cm PE liner, approximately 90 μm
UV additive 1%
Anti-static additive 2%

When This Size Is Suitable

The Material Bulk Density Is Known

The 93 × 93 × 105 cm configuration is suitable when the actual bulk density of the nickel sulfate has been provided and the target weight can be filled within the bag’s usable volume.

A Square Pallet Is Used

This size is suitable for filling, temporary storage, and forklift transfer on a square pallet. The pallet should completely support the filled bag bottom and allow for actual bag expansion.

Filling-Station Height Is Limited

The 105 cm body height can suit filling stations where the available space below the equipment is controlled. The filling spout, lifting loops, and suspension arrangement must also be included in the clearance calculation.

Regular Warehouse Placement Is Required

The nominal 93 × 93 cm base supports preliminary planning for storage positions and side-by-side placement. The final layout should use the maximum filled width and actual pallet footprint.

Top Filling and Bottom Discharge Are Required

The bag has a Ø45 × 60 cm top filling spout and a Ø45 × 45 cm bottom discharge spout. It is suitable for processes where material enters from equipment above the bag and is discharged into downstream equipment from the bottom.

The Filled Package Fits the Transportation Space

This size is suitable when the truck, container, or internal transportation unit can accommodate the filled bag and pallet. Loading quantities should be calculated from the maximum filled dimensions rather than the nominal 93 × 93 × 105 cm size alone.

Dimensions to Confirm Before Ordering

1. Material Bulk Density

Provide the actual bulk density of the nickel sulfate in its packaging condition. Powder, crystals, and different particle sizes may have different packing characteristics.

2. Target Load

Confirm whether the target net weight is 1000 kg and specify the permitted filling tolerance. The target weight must be evaluated together with usable volume.

3. Pallet Dimensions

Provide the pallet length, width, height, construction, and forklift-entry direction. Confirm that the pallet can fully support the filled bag bottom.

4. Filling-Equipment Outlet Height

Measure the available distance from the floor or pallet surface to the filling outlet. Include the 105 cm body height, 60 cm filling spout, and approximately 45 cm lifting-loop height in the clearance assessment.

5. Warehouse Space

Confirm the storage-position width, depth, vertical clearance, aisle dimensions, and side-by-side placement requirements. Allow for filled-bag expansion rather than using nominal dimensions alone.

6. Transportation Method

Specify whether the bag will be moved by internal forklift, road freight, rail, or sea container. Provide the internal vehicle or container dimensions, loading direction, and pallet-layout requirements.