AMC MECANOCAUCHO® has developed a new range of SVT mounts, engineered for environments involving high temperatures and severe dynamic loads. These mounts are especially suited for applications where vertical vibrations are dominant and system stability is crucial.
Elastic stainless steel mesh for symmetrical behavior
The SVT mounts feature a pre-compressed stainless steel wire mesh that acts as the elastic element, delivering symmetrical response in both tension and compression. This makes them ideal for vertically dynamic environments, such as mobile machinery or vibration-prone installations.
Corrosion-resistant and mechanically robust
Each mount includes a carbon steel housing coated with polyurethane (PU), ensuring high mechanical strength and excellent resistance to corrosion. Additionally, an integrated safety device enables the mounts to absorb tensile loads and dynamic shocks while maintaining structural integrity.
Built-in damping and rapid stabilization
The tightly compacted stainless-steel mesh offers inherent damping capabilities, reducing resonance amplification and allowing for quick stabilization after impacts or transients. This property helps prolong equipment lifespan and ensures consistent performance.
Easy and secure installation
Designed for user-friendly installation, the SVT mounts allow for direct bolting and secure fixation in both compression and tension directions. The internal safety feature eliminates the need for external fail-safe systems, simplifying installation and reducing overall system costs.
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Typical applications
Thanks to their thermal resistance, tensile strength and anti-corrosion design, SVT mounts are well-suited for:
Industrial and marine engine exhaust systems
Railway and maritime equipment
Pumps, motors and generator sets
On-road transport operating in aggressive environments
Technical drawings
The following drawings show the SVT mounts in detail:
SVT-70
SVT-95
All these environments share one critical need: reliable anti-vibration solutions capable of maintaining performance under extreme conditions.