A concave PTFE Inside Diameter (ID) seal and a PTFE spring-energized face seal, or an elastomeric O-ring, seated in an insulating
laminate and permanently bonded to a high-strength core
The VCS-ID (Inside Diameter) Seal introduces an internal, machined PTFE seal at the bore of the existing VCS design platform. The use of
a patented interlocking mechanism ensures an extremely tight seal at the bore and resistance to effects from internal pressure or aggressive
media. The interlocking mechanism is intentionally designed to be approximately 0.100” larger than the pipe ID.
During installation/loading, the interlocking mechanism will compress to a final state that is slightly larger than the pipe ID. This reduces
cavitation in the piping, reduces flange erosion and helps prevent microbiologically induced corrosion (MIC), while not affecting any line
Additionally, the PTFE interlocking mechanism creates a longer effective isolating distance than the standard platform.Traditional VCS
gaskets leave the steel core exposed to the media. This increases the likelihood of the formation of an electrically conductive bridge
between the flange face and steel core of the gasket, especially if the media contains conductive particles that lead to sediment build-up in
the pipeline. Because the thickness of the inner PTFE seal is the same as the gasket thickness, the formation of an electrical bridge caused
by conductive sediment build-up between the gasket steel core and the flange face is eliminated. Further, PTFE is not hygroscopic, so it
does not have a tendency to absorb water, making it even more attractive as front line defense in electrical isolation. This unique design
helps solve problems where hydrotested lines may no longer isolate.
Our patented interlocking mechanism is “dual locking” to provide a secure seal that won’t dislodge during handling, transport or installation.
The “dual locking” feature creates a positive lock in both vertical and radial directions.
The interlocking mechanism also eliminates the need for exotic metal gasket core material because it breaks the metal-to-metal path.
Obtaining exotic metals can cause long lead times and extra expense that are eliminated with the use of a VCS-ID seal.
Another benefit of the VCS-ID seal is that PTFE doesn’t have an affinity for water absorption, installations where electrical isolation testing is
performed shortly after hydro-test are less likely to be c orrupted.The VCS-ID does not require any more torque than the standard VCS,
making installation simple using the same specification charts.