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Sintered Porous Metal Cylindrical Filters

Sintered Porous Metal Cylindrical Filters | Porous Metal Filter Elements

Sintered Porous Metal Cylindrical Filters are manufactured using powder metallurgy techniques, where calibrated metal powder is compacted and sintered at high temperature to form a seamless, rigid tube with a three-dimensional, interconnected pore structure. This results in a true depth filter medium, offering exceptional performance in harsh thermal and chemical environments where mechanical strength and filtration consistency are paramount.

Advantages of Sintered Porous Metal Cylindrical Filters

  • True Depth Filtration: Captures particles throughout the entire matrix wall thickness, offering high dirt-holding capacity.
  • Exceptional Strength & Durability: Withstands very high pressures (burst pressures), thermal shock, and mechanical vibration.
  • Extreme Temperature Resistance: Capable of continuous operation at temperatures exceeding 750°C (up to 900°C for specific alloys like Inconel).
  • Broad Chemical Compatibility: Performance depends on the selected powder alloy.
  • Excellent for Backpulse Cleaning: The rigid, porous structure is ideal for pulsed-jet cleaning systems.
 

Specification of Sintered Porous Metal Cylindrical Filters

  • Materials: Stainless steel (304, 316L) powder, Bronze, Nickel, Inconel 600/625, Hastelloy X.
  • Pore Size: Defined by mean pore diameter or bubble point test, typically ranging from 0.2 μm (sub-micron) to 100 μm.
  • Permeability: A critical parameter, ranging from 10 to over 300 L/min·cm² at a given pressure, inversely related to pore size and wall thickness.
  • Porosity: Typically 25% to 45%, influencing flow resistance and dirt capacity.
  • Dimensions: OD from 10 mm to 300 mm; Lengths from 20 mm to 1200 mm.
  • Operating Limits: Temperature up to 900°C; Pressure differentials often exceeding 50 bar, depending on grade and geometry.
 

Applications of Sintered Porous Metal Cylindrical Filters

  • Hot Gas & Steam Filtration: Combined cycle power plants, incinerator off-gases, process steam.
  • Catalyst Support & Recovery: Fixed-bed reactor internals, fluidized bed separators.
  • Fluidization & Aeration: Spargers, diffusers for bioreactors and wastewater treatment.
  • High-Temperature Chemical Processes: Ammonia production, reforming gases.
  • Nuclear Industry: Off-gas and coolant filtration.

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