Carlisle Ground Force 400 Ultra
FEATURES AND BENEFITS
- Various terrain grip
- All season performance
- Enhanced durability
- Extended tread life
OVERVIEW
The Carlisle Ground Force 400 Ultra is an all season tire manufactured for industrial vehicles.
The model sports an aggressive tread design. Its thick lateral lugs interlock at the center of the footprint, maintaining consistent surface contact, which is ideal for hard industrial surfaces. The open shoulders, the high void ratio, and the staggered design allow the model to remove snow, mud, and rocks from the footprint. This self-cleaning ability enhances traction and allows better forward motion on softer terrains, including mud and gravel. Moreover, the all season compound keeps the rubber flexible and operational across the seasons, regardless of dry, wet, and snowy conditions. As such, the tire is perfect for worksite, mining, and construction environments.
The model easily preserves its shape. This is achieved with the constant surface traction of the interlocking lugs and the sturdier construction. The bias-ply structure of the tire provides the necessary strength to withstand greater loads with ease. The tread design and the internal reinforcement help the tire ensure optimal pressure circulation across the footprint, averting pressure accumulation on sensitive tread areas. They also preserve structural integrity, increasing its resistance to deformation under heavy weights. As a result, the ideal tire shape offers improved balance during the specific off-road performance.
The Carlisle Ground Force 400 Ultra is a longer-lasting tire. The self-cleaning ability minimizes the chance of tread damage. Its damage resistance is also increased, thanks to the thicker sidewalls that protect the tire from patchy tread wear. The deeper starting tread adds more rubber to the model to be worn off during the performance. The optimal surface contact and pressure distribution give the model even wear while driving. These features together guarantee the model’s service life is prolonged extensively.