Sub Product

UHMWPE Marine Fender Pads

UHMWPE marine fender pads are manufactured from premium ultra-high molecular weight polyethylene, tailored for long-term marine service. The material delivers powerful shock absorption to cushion intense impacts during vessel docking and mooring. Its slick low-friction surface stops hull paint and metal surfaces from scraping and abrasion, safeguarding boats, barges and pier structures. These pads withstand continuous erosion from seawater, brine mist and marine organisms without rust, rotting or aging, far outperforming steel and wooden bumpers. They stay stable under extreme temperature shifts and demand almost no regular maintenance.

Product details

UHMWPE Marine Fender Pads quotation details

UHMWPE marine fender pads are manufactured from premium ultra-high molecular weight polyethylene, tailored for long-term marine service. The material delivers powerful shock absorption to cushion intense impacts during vessel docking and mooring. Its slick low-friction surface stops hull paint and metal surfaces from scraping and abrasion, safeguarding boats, barges and pier structures. These pads withstand continuous erosion from seawater, brine mist and marine organisms without rust, rotting or aging, far outperforming steel and wooden bumpers. They stay stable under extreme temperature shifts and demand almost no regular maintenance.

  • Material: UHMWPE (Ultra High Molecular Weight Polyethylene)
  • Application: Marine fender systems, docks, piers, and port facilities
  • Size & Thickness: Customized dimensions available
  • Machining: Cutting, drilling, countersinking, and CNC machining supported
  • Customization: Shape, holes, and mounting design can be customized
  • MOQ: Flexible based on project requirements
  • Packaging: Export standard packaging
  • Lead Time: Depends on order quantity and customization details
  • Trade Terms: EXW, FOB, CIF available
  • Please provide pad dimensions, thickness, quantity, installation requirements, and drawings for an accurate quotation.