Double Coin RLB400
FEATURES AND BENEFITS
- Longer lasting tread life
- Stone retention prevention
- Upgraded load durability
OVERVIEW
The Double Coin RLB400 is a highway terrain, all season tire manufactured for commercial vehicles. It was made to be mounted on the vehicle's drive axle.
The tire promotes a lengthened tread life. It combines its tread pattern and the durable compound to extend the tire's usability significantly. The compound reduces the tread wear rate with its wear-resistant rubber materials. The symmetric ribbed tread pattern with the solid shoulder ribs, on the other hand, maintain the tire's contact with the road surface at all times. This allows the tire to evenly circulate the driving pressure along the tread area. In other words, the forces of acceleration, cornering and braking are equally spread out on the tire's surface which prevents irregular wear formations along the tread area. The slower even tread wear rate ensures a longer lasting usability.
The model also successfully avoids damage to the tread area and the tire's casing. The tread design features stone ejecting knobs located in the grooves. These knobs, along with the staggered center tread blocks, increase the tire's self-cleaning capability. They eliminate stones and rocks stuck between the tread elements while the tires are in motion. In this manner, they actively prevent stone retention from harming the tire's casing by drilling rocks into it. This decreases the tire's downtime and extends its service life.
The RLB400 features a special reinforced heavy-duty casing. Its internal structure is strengthened with steel belts to ensure its higher load handling capacity. This construction does not deform under the load and driving pressure and it maintains the tire's optimal shape during its performance. This allows the tire to upgrade the load handling and carrying durability, without allowing the ideal tire shape to deform under the pressure affecting the model. The better load durability guarantees the tire's versatile application.