VERLIMBER (VR) is a range of premium grade vibration isolation materials used for low pressure applications.
The range includes VR16, VR27 and VR38 and is produced from high quality polyurethane using an innovative blown expansion method. Farrat Verlimber provides excellent low frequency vibration isolation whilst withstanding high repeated strains without loss of performance. This allows very high levels of acoustic performance to be achieved in lightweight structures.
- Load range: up to 0.27 N/mm² (SLS)
- Vertical Natural Frequency: down to 8Hz
- Average Damping Ratio ζ: 5 – 12%
- Standard Sheet Size: VR16, VR27: 2000 x 1000 mm, VR38: 1000 x 500 mm
Why choose Farrat Verlimber (VR16, VR27, VR38)?
- High resilience with very good low frequency isolation and damping performance.
- Excellent for repeated compression cycle applications (up to 40% strain)
- Long working lifetime (>60 years)
- Waterproof and non-absorbing
- Fire properties comply with EN ISO 11925-2 Class-E and DIN 4102 B2
- Can be supplied as full sheets, cut to size pads and strips (including holes and slots if required) according to the customer’s requirements.
- Full area mat
- VFT Systems (low frequency isolation of ground floor slabs)
- Lateral / perimeter isolation
- Soil pressure lateral restraint
- Movement joints
- Anti-vibration pads for lightweight equipment
High Performance Sound Insulation
- Lightweight Partition Isolation
- Timber frame supports
- Anti-vibration pads for lightweight equipment
- Floating floors in marine / luxury yachts
- Sports flooring
Industrial and Power Generation Equipment
- Full area Isolated Foundations
- Anti-vibration pads for lightweight equipment
- HVAC & Heat pumps etc
- Medial devices
General
- Bespoke low-load isolation pads and strips
Other applications
- Rail (Track)
- Rail (Rolling stock)
- White goods
- Electronics
- Footwear
Note: these applications are a guide based on typical examples that we see regularly. The ideal material will depend on the specific characteristics and constraints of your application.