Industry News

Porous 316L Stainless Steel Disc Filters

2025-03-31

Porous 316L stainless steel disc filters are high-performance filtration components made from sintered stainless steel powder or fiber. These filters feature a uniform porous structure, providing excellent mechanical strength, corrosion resistance, and thermal stability. They are widely used in applications requiring precise filtration, high-temperature resistance, and durability.  

1.Functions  

- Filtration & Separation: Effectively removes solid particles, contaminants, and impurities from gases and liquids.  

- Flow Control: Regulates fluid flow and pressure in various industrial applications.  

- Gas Diffusion: Ensures uniform gas distribution in aeration and diffusion systems.  

- Backwash Capability: Can be cleaned and reused through backflushing or ultrasonic cleaning, extending service life.  

2.Advantages

- Superior Corrosion Resistance: Made of 316L stainless steel, resistant to acids, alkalis, and harsh chemicals.  

- High Temperature Tolerance: Can withstand extreme temperatures up to 600°C without deformation.  

- Excellent Mechanical Strength: Rigid structure resists pressure and impact, ensuring durability.  

- Precise Filtration: Offers a wide range of pore sizes (0.1–100 microns) for customized filtration needs.  

- Reusability & Cost-Effectiveness: Easy to clean and maintain, reducing long-term operational costs.  

- Uniform Porosity: Provides consistent and efficient filtration performance.  


3.Applications 

-Chemical & Petrochemical Industry: Filtration of corrosive liquids, solvents, and high-temperature gases.  

- Pharmaceutical & Biotechnology: Sterilization filtration of medical gases and liquids.  

- Food & Beverage Processing: Purification of water, oils, and beverages.  

- Aerospace & Automotive: Fuel and hydraulic system filtration.  

- Water Treatment: Used in desalination, wastewater treatment, and ultra-pure water systems.  

- Gas & Air Filtration: Employed in industrial gas purification, aeration, and catalyst recovery.  



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