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Introducing Mobil Gargoyle Arctic SHC

Mobil Gargoyle Arctic

Operate at peak productivity

It takes proper maintenance to operate an industrial refrigeration system. Interruption of service or reduced system capacity can result in significant loss of production or products in storage. The Mobil Gargoyle Arctic SHC Series of synthetic refrigeration oils helps enable efficient, reliable operation and is suitable for use with a range of refrigerants commonly encountered in industrial applications.

Exceptional lubrication for multiple applications

Mobil Gargoyle Arctic SHC Series provides outstanding lubrication for compressors in industrial refrigeration systems as well as commercial, heat pump, and marine refrigeration systems ¯ using CFC (R12), HCFC (R22), ammonia (R717), and carbon dioxide (R744) refrigerants. This series includes a range of viscosity grades for use in reciprocating and rotary compressor designs, including screw compressors.

Features high oil film thickness in the presence of refrigerant

Mobil Gargoyle Arctic SHC Series offers improved antiwear protection for extended compressor life as well as better shaft sealing and reduced bearing fatigue, resulting in less unscheduled downtime. Outstanding viscometrics offer protection at high temperatures while a low pour point and the absence of wax enable operations at very low temperatures.

Benefit from excellent thermal, oxidative and chemical stability

Mobil Gargoyle Arctic SHC Series products have outstanding thermal and oxidative stability, which means potentially longer oil life, reduced drain intervals, and less maintenance. Excellent chemical stability from synthetic base oils offers reduced lacquer and deposit formation for longer filter life and reduced shaft-seal leakage.

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Mobil Gargoyle Arctic SHC Materials & Resources:

*The energy efficiency design is a trademark of Exxon Mobil Corporation. Energy efficiency relates solely to the fluid performance when compared with conventional reference oils of the same viscosity grade in gear applications. The technology used allows up to 3.6% efficiency compared with the reference when tested in a worm gearbox under controlled conditions. Efficiency improvements will vary based on operating conditions and applications.

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