Technical Strength
Krut places great emphasis on research and development and technological collaboration.
Master core technologies
It excels particularly in metal‑based technologies and conducts additive‑technology research for automotive manufacturers worldwide.
“Polymer Anti-Wear” Technology (PAR)
The refined base oil employs a proprietary PAR (Polymer Anti-Wear) technology, ensuring that the lubricant maintains a stable viscosity under both low‑temperature and high‑temperature conditions, thereby delivering optimal lubrication performance and protecting the engine from wear.
NATOR technology
A proprietary eco‑friendly additive technology, developed through in-depth analysis of global road and vehicle conditions, leverages advanced core manufacturing processes to significantly enhance energy efficiency, reduce energy consumption, and meet the worldwide demands for energy conservation, emissions reduction, and sustainable development.
MET microelectrode technology
The micro‑electricity generated by friction guides the soft metal, whose ductility can repair mating surfaces, making the component’s surface progressively smoother with continued use. The coefficient of friction approaches zero, reducing wasted energy lost to friction and thereby achieving fuel savings and enhanced power output.
REM Rare Earth Metal Element Technology
A detergency and dispersant for rare-earth metal elements, it effectively inhibits the formation of carbon deposits and soot in the combustion chamber. Rare-earth‑based anti-wear additives are ferromagnetic, enabling them to adsorb minute metal debris; they do not adhere to cylinder walls and are removed by the oil filter during circulation, thereby reducing wear on critical heavy‑load components and the engine’s auxiliary systems.
Graphene Nanotechnology
Graphene is a novel nanomaterial that is both ultra-thin and exceptionally strong. When applied to metal surfaces, it forms a thin yet robust, wear‑resistant protective layer with remarkable lubricating properties. Additionally, graphene exhibits excellent high‑temperature stability and thermal conductivity, helping to mitigate oil consumption in vehicles and ensuring the engine maintains optimal performance.