Seal Fast Aluminum Reducing Cam And Groove Coupling CR Female Coupler x Shank (3 Inch x 2 Inch 2 Inch x 1 Inch Transitions Industrial Fluid Transfer)

Only 1 left
SKU: CR3020AL
Regular price $31.99 USD

SIZE

Seal Fast Aluminum Reducing Cam and Groove Coupling Type CR

The Seal Fast Type CR reducing cam and groove coupling provides a seamless transition from larger hose diameters to smaller ones, optimizing fluid transfer efficiency across industrial systems. Engineered with a lightweight corrosion-resistant aluminum body, it features a female camlock coupler on one end and a secure hose shank adapter on the other. This quick-connect fitting minimizes downtime and ensures a reliable connection for water, fuel, and chemical transfer applications.

Best Used For:

  • Industrial Fluid Transfer: Adapting larger supply lines to smaller equipment inlets in chemical and water transport systems.
  • Agricultural Irrigation Setups: Connecting varying hose diameters securely across farm irrigation lines and pumping networks.
  • Municipal Water Management: Facilitating rapid, leak-proof hose transitions during municipal drainage and maintenance operations.

Key Performance & Safety Features

  • Aluminum Construction: Lightweight and corrosion-resistant for rugged environments.
  • Female Coupler x Hose Shank: Compatible with camlock systems and flexible hose assemblies.
  • Reducing Design: Adapts larger hose to smaller diameter connections.
  • Quick-Connect Efficiency: Speeds up hose changes and minimizes downtime.
  • Multiple Sizes Available: Choose from 3/2-inch or 2/1-inch options to match your setup.

What's Included

  • (1) Seal Fast Aluminum Type CR Reducing Cam and Groove Coupling (Size selected at checkout)

Technical Specifications

Brand Seal Fast
Style Reducing C Female Coupler x Shank
Material Aluminum
Available Sizes 3/2 inches (CR3020AL), 2/1 inches (CR2010AL)

Pro-Tip: Always secure the hose shank with proper industrial clamps and inspect the internal gasket seal before locking the cam arms to prevent pressure leaks.