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Wedge Wire Resin Traps

Wedge Wire Resin Traps | Johnson Screen Resin Trap Strainer | Media Trap Filter

High-performance Wedge Wire Resin Traps for ion exchange resin and media retention. Non-clogging Johnson-type resin trap strainers with precise slot openings, high strength, and low pressure drop. Custom sizes available.

Description

Wedge Wire Resin Traps are high-performance filtration components designed to retain ion exchange resins, catalyst beads, activated carbon, and other granular media while allowing process fluids to pass through with minimal pressure drop. They are widely used in water treatment systems, chemical processing, power generation, and industrial filtration units.

Manufactured using precision V-profile (wedge) wire technology, resin traps provide accurate slot openings, excellent mechanical strength, and long service life under continuous operation. Compared with perforated plates or woven wire screens, wedge wire resin trap strainers offer non-clogging performance, higher open area, and superior backwash efficiency.

These products are often referred to as:

  • Johnson Screen Resin Traps
  • Wedge Wire Media Trap Filters
  • Resin Trap Strainers
  • Ion Exchange Resin Retainers

They are typically installed at outlets of pressure vessels, filter housings, resin columns, and media tanks to prevent media loss and protect downstream equipment.

Advantages

Precise Media Retention

  • Slot openings accurately control particle retention
  • Prevents resin beads and media from escaping
  • Suitable for fine resin sizes and mixed-bed systems

Non-Clogging Wedge Wire Design

  • V-shaped wire creates self-cleaning slot geometry
  • Reduces fouling and blinding compared to mesh screens
  • Maintains stable flow rates over long operating cycles

High Open Area & Low Pressure Drop

  • Open area up to 30–40%, significantly higher than perforated plates
  • Minimizes head loss and improves system efficiency

Exceptional Mechanical Strength

  • All-welded construction ensures rigidity and durability
  • Withstands high differential pressure and frequent backwashing

Corrosion & Chemical Resistance

  • Available in stainless steel and high-alloy materials
  • Suitable for aggressive chemicals, high temperature, and continuous service

Customizable Design

  • Diameter, length, slot size, end connections, and flange standards can be customized
  • Compatible with existing Johnson-type resin trap assemblies

Specification

Available Materials

  • Stainless Steel 304 / 304L
  • Stainless Steel 316 / 316L
  • Duplex Stainless Steel (2205, 2507)
  • Hastelloy, Inconel, Monel (on request)
  • Carbon Steel (with coating, for non-corrosive media)

 

Standard Technical Parameters

ParameterDescription
Product TypeWedge Wire Resin Trap / Resin Trap Strainer
Wire ProfileV-profile (wedge wire)
Support RodRound or wedge support rods
Slot Opening0.05 – 1.0 mm (custom available)
Open Area25% – 40%
Diameter50 – 600 mm (custom sizes available)
Length / HeightAccording to vessel or housing design
End ConnectionFlanged, threaded, welded, plate type
Manufacturing MethodFully welded, no adhesives
Surface FinishPickled, polished, or passivated

 

Typical Slot Size Selection (Resin Type Reference)

Media TypeTypical Slot Size
Ion Exchange Resin0.2 – 0.4 mm
Mixed Bed Resin0.15 – 0.3 mm
Activated Carbon0.3 – 0.6 mm
Catalyst BeadsCustomized

Applications

Wedge Wire Resin Traps are widely used across multiple industries where reliable media retention is critical:

Water Treatment & Purification

  • Ion exchange systems (softeners, demineralizers)
  • Mixed-bed polishing units
  • Industrial and municipal water treatment plants

Power Generation

  • Boiler feed water treatment
  • Condensate polishing systems
  • Nuclear and thermal power plants

Chemical & Petrochemical Processing

  • Catalyst retention in reactors
  • Chemical filtration systems
  • Corrosive process media handling

Food & Beverage Industry

  • Carbon filtration units
  • Beverage purification systems
  • Process water filtration

Pharmaceutical & Biotech

  • High-purity water systems
  • Media retention in clean process lines

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