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PalmettoModel Type D FIBC -Anti Static Bag

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About Our Anti-Static Bulk Bags Palmetto India proudly holds a selective manufacturing license for Crohmiq® fabric, allowing us to produce Type D Crohmiq Bulk Bags. Crohmiq® bags are crafted from static-dissipative materials, designed to control and prevent fire-initiating discharges without the need for manual grounding, thereby eliminating the risk of human error. The Crohmiq® static protective FIBC fabric effectively and safely dissipates charges into the atmosphere through a process known as corona discharge, ensuring the safety of employees working in proximity to the bags.

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  • Material: Crohmiq Static Protective PP Fabric
  • Construction: U-Panel, Circular, 4 Panel, or Baffle
  • Safety Factor: Up To 8:01
  • Safe Working Load: Up To 5,000lbs.
  • Liner: Up to 7 Layer Coextruded Barrier Film
  • Product Length: 12” – 56”
  • Product Width: 12” – 56”
  • Product Height: 12” – 56”
  1. 4 Panel – In line with industry standards, the 4-PANEL design entails the assembly of four individual panels, stitched together along the seams, with a single piece sewn along the bottom.
  2. U Panel – This construction method involves a single piece of fabric forming three sides, including two opposite sides and the bottom. Two additional sides are sewn into the larger piece to create the complete bag.
  3. Circular – In this construction approach, a single piece of fabric is responsible for shaping all four sides of the bag, with an additional piece sewn onto both the bottom and top.
  4. Baffle – Baffle bags incorporate extra pieces of fabric that are sewn across each corner, enabling the bag to maintain its square shape even when fully loaded.
  5. Net Baffle – A specific type of baffle bag designed with a net-like structure to facilitate the bag in maintaining its shape while still allowing for the flow of air or liquid during filling or discharge.
  6.  30% Extra Capacity – When using baffle bags, it’s possible to increase the bag’s capacity by up to 30% without changing its footprint. This additional volume not only improves stack stability but also maximises space efficiency during storage and transportation.