Union, G 1-1/2" RH, 1-1/2" NPT

Operating Specifications

Media

Water

Rotor Connection

G 1-1/2

Housing Connection

1-1/2

Water Max. Flow

252.8 l/min

Water Max. Pressure

10 bar

Water Max. Temperature

93 °C

557-000-198

  • Monoflow and Duoflow Design: This union provides versatility with both monoflow and duoflow design options, catering to various application needs and operational preferences.
  • Self-supported Rotating Union: Equipped with a self-supported rotating union, ensuring smooth rotation for reliable and efficient operation.
  • Radial Housing Connection: Features a radial housing connection, providing stability and facilitating easy integration into different systems.
  • Balanced Mechanical Seals: Incorporates balanced mechanical seals for each passage, contributing to an extended lifespan and reduced torque even under challenging operating conditions.
  • Keyed Rotor Seal: Designed with a keyed rotor seal, allowing for easy and quick replacement of sealing components, minimizing downtime and simplifying maintenance.
  • Easy and Quick Replacement of Sealing Components: Streamlined design for effortless and rapid replacement of sealing components, enhancing overall maintenance efficiency.
  • Ball Bearings Lubricated for Life: Utilizes ball bearings lubricated for life, reducing the need for frequent maintenance and ensuring consistent and reliable performance over time.
  • E.L.S. (Extended Life Service) Seal Combination: Features an E.L.S. seal combination suitable for extended life service, making it resilient in environments with poor water quality.
  • 3 Vent Holes: Provides three vent holes to ensure effective venting, preventing pressure buildup within the unit.
  • Forged Brass Housing and Stainless Steel Rotor: Constructed with a forged brass housing for durability and a stainless steel rotor for corrosion resistance, ensuring robust and reliable performance.
  • Special Options Include Threaded Vent Holes: Offers special options, including threaded vent holes, allowing for customization to meet specific operational requirements.
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