AZENIS FK510
SUMMER ULTRA HIGH PERFORMANCE
Falken's latest generation ultra high performance summer tyres, the AZENIS FK510 is designed for drivers of premium vehicles looking for excellent grip and outstanding performance. 4D Nano Design enables Falken engineers to optimize new high-performance compounds at the molecular level, enhancing both wear and wet weather traction.
Featuring hybrid undertread materials, the FK510 delivers confidence-inspiring handling and stability, The FK510 covers a wide range of today's luxury sport vehicles, including staggered applications, and is available in sizes ranging from 17" to 22" inch.
AZENIS FK510 - RUNFLAT
RUNFLAT TYRE TECHNOLOGY
Runflat Tyres have reinforced sidewalls that reduce deformation if the tyre sustains damage or a puncture; they can thus continue to be driven for at least a further 80 km at a maximum speed of 80 km/h.
Falken Runflat Tyres combine this 'limp-home' mode with top performance in all areas. Incidentally, manufacturers specify that Runflat Tyres must be used with a tyre pressure monitoring system because the tyres are so effective that drivers may not actually notice their tyre has a puncture.
AZENIS RT615K
With its world-spec construction and advanced compound for street and track use, the RT615K confidently maintains grip both in street and track conditions.
Through its proprietary technology, the motorsports inspired 8/32nd tread design and solid center rib provide significant traction and sustains strong grip in dry conditions.
FEATURES & BENEFITS
Massive Sport Side Shoulder Blocks Deliver motorsports level grip and unsurpassed durability.
Varible Shoulder Depth Design Helps reduce tread block squirm and promote long lasting wear uniformity.
Solid Center Rib Significantly reduces wheel spin by reducing contact patch void ratio under heavy acceleration.
High Tension Carcass Increases handling response and high speed stability.
Steel Belts Offer greater tread rigidity, superior grip and high speed stability.
Joint-less Nylon Cap Ply Increases durability at high speeds and promotes long lasting even wear.
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ZIEX ZE912
The Ziex ZE912features large sipes encasing the tread, coupled with high volume circumferential grooves that deliver hydroplane resistance for improved wet weather performance, while its hybrid-asymmetric pattern produces better dry performance.
FEATURES & BENEFITS
Infinite Sipe Sequence Increases traction in winter months while improving over all grip.
Treadwear Indicators Take the guesswork out of tire rotations with reliable indicators that are built into the tyres themselves.
High Angle Variable Cross Grooves Increase tread stability while effectively evacuating water away from the contact area.
High Tension Carcass Increases handling response and high speed stability.
Steel Belts Have a stronger steel cord, and offer better performance.
Joint-less Nylon Cap Ply Increases durability at high speeds and promotes long lasting even wear.
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ZIEX ZE914 ECORUN - ZE914EC RUNFLAT TYRE
PERFORMANCE AND ECONOMY
The Ziex ZE914 Ecorun is the next generation, high-performance tyre made for New Zealand roads. Engineered for performance and cost saving fuel efficiency, the low rolling resistance compound offers more mileage and better wet braking.
The tyre features as asymmetric tread pattern with four straight and wide circumferential grooves for hydroplane resistance. The high-rigidity rib construction provides good wet and dry braking stability. Slots and sipes can be found throughout the tyre, optimised for even tread wear, comfort and traction.
ZIEX ZE310R ECORUN - HIGH PERFORMANCE
THE LATEST IN HIGH PERFORMANCE
- Long Life
- Excellent Noise Level
- Excellent Handling
- Ride Comfort
FEATURES & BENEFITS
High Performance Profile - Wide straight grooves.
Cutting-Edge Pattern Design - Optimized block rigidity distribution. Adopt new pattern with a larger number of blocks.
Advanced Casing Design - More circular profile for improved sidewall flexibility.
Tread Compound - New multi-functionalized p increases silica distribution and the bonding points between silica and the polymer.
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