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316 Stainless Steel1/2 in. ODLeak-tight

Swagelok SS-810-3 Stainless Steel Swagelok Tube Fitting, Union Tee, 1/2 in. Tube OD

The Swagelok SS-810-3 is a 316 stainless steel union tee for 1/2 in. tube OD connections. It provides reliable, leak-tight three-way branching with high vibration resistance for demanding fluid systems.

Swagelok SS-810-3 Stainless Steel Swagelok Tube Fitting, Union Tee, 1/2 in. Tube OD

Swagelok SS-810-3 is a high-performance stainless steel union tee tube fitting, constructed from 316 stainless steel and designed for 1/2 in. tube OD connections across all three ports. This fitting enables precise three-way branching with exceptional leak-tight reliability and vibration resistance. Proven over 65 years of successful field application in extreme conditions, it is ideal for distributing flow in compact, high-performance fluid systems where safety and performance are critical.

Technical Specifications

SpecificationDetail
Body Material316 Stainless Steel
Connection 1/2/3 Size1/2 in.
Connection 1/2/3 TypeSwagelok® Tube Fitting
Bored ThroughNo
Flow RestrictorNo
Cleaning ProcessStandard Cleaning and Packaging (SC-10)
eClass (10.1)37020506
UNSPSC (13.0601)40183102

Performance and Design

Designed as a union tee, the SS-810-3 enables three-way tube branching with precise alignment. The Swagelok design provides a robust tube grip and strong vibration resistance, ensuring consistent sealing performance even in demanding environments.

Performance Reliability

The reliability of Swagelok tube fittings is documented in extensive public test reports, confirming their performance in high-pressure and extreme temperature applications.

Installation and System Safety

Proper selection and installation are essential for the safe, trouble-free performance of fluid systems.

Compatibility Notice

Do not mix or interchange Swagelok products or components with those of other manufacturers. Swagelok tube fitting end connections are not governed by the same industrial design standards as generic fittings, and intermixing can compromise system integrity.

System designers must consider material compatibility, adequate ratings, and proper maintenance when selecting components to ensure total system safety.