Stainless Steel Fiber Paper

Stainless Steel Fiber Paper, also referred to as stainless steel felt, is a porous metallic material manufactured from fine 316L stainless steel fibers. Its interconnected fiber network combines electrical conductivity, mechanical durability, and corrosion resistance with efficient pathways for gas and liquid transport.

With customizable porosity from 30–85% and fiber diameters from 6–50 μm, the material can be selected or tailored to achieve the desired balance between permeability, surface area, strength, and mass transport.

Key Advantages

  • High Electrical Conductivity – Provides continuous conductive pathways for efficient electron transport.
  • Excellent Mechanical Durability – Maintains structural integrity under demanding operating conditions and offers good wear resistance.
  • Strong Corrosion Resistance – 316L stainless steel provides good resistance across a wide range of chemical environments.
  • High Porosity (30–85%) – Open pore structure supports effective gas/liquid flow and mass transfer.
  • Adjustable Fiber Diameter (6–50 μm) – Different fiber sizes enable control over permeability, surface area, and mechanical characteristics.
  • Flexible & Easy to Process – Can be cut, shaped, laminated, or integrated with other materials for customized experimental configurations.

Typical Applications

  • Electrochemical electrodes and catalyst supports
  • Gas and liquid diffusion layers
  • Water electrolysis research
  • Fuel cells and energy-conversion systems
  • Filtration and flow-through systems
  • Electrodeposition and catalytic applications
  • Advanced electrochemical and multiphase reaction research

Description

Stainless Steel Fiber Paper, also referred to as stainless steel felt, is a porous metallic material manufactured from fine 316L stainless steel fibers. Its interconnected fiber network combines electrical conductivity, mechanical durability, and corrosion resistance with efficient pathways for gas and liquid transport.

With customizable porosity from 30–85% and fiber diameters from 6–50 μm, the material can be selected or tailored to achieve the desired balance between permeability, surface area, strength, and mass transport.

Key Advantages

  • High Electrical Conductivity – Provides continuous conductive pathways for efficient electron transport.
  • Excellent Mechanical Durability – Maintains structural integrity under demanding operating conditions and offers good wear resistance.
  • Strong Corrosion Resistance – 316L stainless steel provides good resistance across a wide range of chemical environments.
  • High Porosity (30–85%) – Open pore structure supports effective gas/liquid flow and mass transfer.
  • Adjustable Fiber Diameter (6–50 μm) – Different fiber sizes enable control over permeability, surface area, and mechanical characteristics.
  • Flexible & Easy to Process – Can be cut, shaped, laminated, or integrated with other materials for customized experimental configurations.

Typical Applications

  • Electrochemical electrodes and catalyst supports
  • Gas and liquid diffusion layers
  • Water electrolysis research
  • Fuel cells and energy-conversion systems
  • Filtration and flow-through systems
  • Electrodeposition and catalytic applications
  • Advanced electrochemical and multiphase reaction research

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