The process involves injecting a polyurethane liquid into a pneumatic tire, which then cures to a solid, resilient material. This replaces the air within the tire with a dense, closed-cell polymer. For example, equipment operating in construction or mining environments often utilize this procedure to mitigate downtime caused by punctures and flats.
Employing this technique yields significant advantages in specific operational contexts. Machines benefit from increased stability due to the consistent tire pressure simulation, eliminating pressure checks and inflation maintenance. Historically, it has been adopted across sectors where tire failure results in substantial economic consequences, highlighting its role in enhancing operational efficiency and safety.