Mobil Rarus SHC 1024
Mobil Rarus SHC 1024 is formulated using wax-free synthetic hydrocarbon base fluids and advanced additive technology to provide outstanding resistance to oxidation, thermal degradation and deposit formation.
One of the key advantages of Mobil Rarus SHC 1024 is its exceptional oxidation and thermal stability. The formulation resists oil breakdown at high discharge temperatures, helping reduce sludge and carbon deposits while supporting extended oil drain intervals. This contributes to improved compressor cleanliness and reduced maintenance costs.
Mobil Rarus SHC 1024 also provides excellent wear protection and load-carrying capability. The lubricant helps protect bearings, gears and internal compressor components, ensuring reliable performance even in severe operating conditions. This supports longer equipment life and improved operational reliability.
Another important benefit is its high viscosity index and wide temperature performance. The oil maintains effective lubrication at both low and high operating temperatures, making it suitable for compressors operating under demanding thermal conditions.
Mobil Rarus SHC 1024 also offers excellent water separability and corrosion protection. The formulation helps reduce emulsion formation and carryover while protecting internal compressor components from rust and corrosion. This supports cleaner systems and improved filtration performance.
Mobil Rarus SHC 1024 is primarily recommended for rotary screw and vane air compressors, particularly those operating under severe conditions or with high discharge temperatures up to approximately 200°C. It is also suitable for compressors with a history of excessive oil degradation, multistage units and systems containing gears and bearings.
Physical characteristics include ISO VG 32 viscosity grade with a kinematic viscosity of approximately 31.5 mm²/s at 40°C and 5.7 mm²/s at 100°C. Mobil Rarus SHC 1024 has a viscosity index of approximately 127, a specific gravity of approximately 0.846 at 15°C, a flash point of approximately 245°C and a pour point of approximately −48°C, supporting reliable performance in severe-duty compressor applications.



