The Saint-Gobain BarbLock Ultra-Secure Retainer provides a reliable, durable solution for securing tubing to hose barbs, designed for easy installation and leak-free performance. This innovative retainer system uses a unique three-piece locking mechanism to ensure tubing and hose barbs remain securely engaged, preventing accidental disconnection even under pressure. Ideal for use with tubing sizes ¼" to 3/8", it offers a superior alternative to cable ties, eliminating crimps and tube distortion while maintaining a uniform 360-degree radial crimp for a robust seal.
Product Features
- Easy to install, three-piece locking mechanism ensures the tubing and hose barb won't disengage
- Safe to use with pressures up to 140 psi or upper pressure limit of tubing
- An excellent alternative to securing tubing and hose barbs with cable ties — no more crimps or tube distortion
- BarbLock assemblies provide uniform 360-degree radial crimping for a leak-free, durable seal
- The BarbLock assembly consists of three pieces: sleeve, collet, and barbed fittings
- Installation: slide sleeve and collet onto tubing, insert barbed fitting, prelock with "click," then lock using BarbLock tool
- Once assembled, the BarbLock assembly can only be unlocked with the removal tool
Benefits
- Provides a secure, leak-proof connection that resists disconnection under pressure
- Prevents tubing damage and distortion commonly caused by cable ties and crimps
- Durable design ensures longevity and reliable performance in demanding applications
- Simple, tool-assisted installation reduces assembly time and error
- Ideal for industries requiring secure fluid or gas transfer with pressure resistance
Why Choose the Saint-Gobain BarbLock Ultra-Secure Retainer?
Designed to deliver maximum security and ease of use, the Saint-Gobain BarbLock Ultra-Secure Retainer is the go-to solution for tubing connections that demand a leak-free and robust seal. Its innovative locking mechanism and uniform crimping system outperform traditional methods, making it essential for fluid and gas systems requiring high reliability and pressure resistance.
