Kumho 946S is a powerful winter tire designed specifically for use on small trucks or vans. The manufacturer of this tire is Kumho ("Kumho"). This Korean firm has been on the European market of automobile tires for over fifty years and has managed to recommend itself from the best side. This time, "Kumho", which is famous for its high-speed car tires, presents a model that is perfect for cargo transportation from one city to another. Firstly, this tire is designed for calm driving. Secondly, this massive tire surprisingly withstands the most difficult weather conditions. Wet, snowy, icy coatings - this is its element.
The tread of the Kumho 946S tire withstands the lowest temperatures. The unique composition of the rubber mixture that makes up its composition, and the aggressive pattern provide, respectively, driving stability, high resistance to wear, and quality contact with the surface of the winter road.
The abundant system of lamellas guarantees the directional stability of the vehicle while driving, and the zigzag continuous grooves effectively remove dirt, wet snow, and water from the contact area of the tire tread with the track.
This tire will be a good choice for winter tires for drivers who prefer non-aggressive driving, especially from regions with a harsh winter climate, of which there are many in Russia. An excellent option for the domestic consumer.
Distinctive features of the Kumho 946S tire
- Kumho 946S is a winter tire from a well-known Korean manufacturer, designed for light trucks and vans.
- The tire is designed for areas with a harsh winter climate and is designed for non-aggressive driving.
- The unique composition of the tire tread allows it to withstand the lowest temperatures.
- The tire has the "M+S" ("mud plus snow") marking, which means confident removal of dirt, wet snow, and water from the contact patch with the road surface, which is provided by three deep zigzag grooves.
- The design of the tread pattern is aggressive.
- The lamellar system contributes to high directional stability when moving.