Shell Alvania R3 Grease Datasheet Extra Quality !free! -

Shell Alvania R3 Grease is a lithium-based grease composed of a high-quality mineral oil, lithium soap, and additives. The grease is thickened with lithium soap, which provides excellent shear stability and resistance to softening under high temperatures. The base oil used is a high-viscosity index mineral oil, which ensures good lubricity and wear protection.

The grease provides excellent performance at temperatures up to +130°C, which significantly extends bearing life and reduces the frequency of lubrication cycles. shell alvania r3 grease datasheet extra quality

Shell Alvania R3 is a high-quality, lithium-hydroxystearate-thickened grease designed for general industrial and automotive applications. It belongs to Shell’s renowned Alvania family, which has set the standard for multi-purpose greases for over five decades. Shell Alvania R3 Grease is a lithium-based grease

The product formerly known as (or Alvania RL 3) has been rebranded as Shell Gadus S2 V100 3 . It is a premium-quality, high-performance multipurpose grease designed for industrial applications requiring a medium/hard consistency. 🛠️ Key Technical Specifications Test Method Typical Value NLGI Consistency Soap Type Lithium Hydroxystearate Base Oil Type Kinematic Viscosity @ 40°C Kinematic Viscosity @ 100°C 10–11 cSt Cone Penetration (Worked @ 25°C) 220–250 (0.1 mm) Dropping Point IP 396 / ASTM D566 180°C – 190°C Operating Temperature Range -30°C to +130°C 🌟 Performance Features Shell Gadus S2 V100 3 The grease provides excellent performance at temperatures up

For engineers and maintenance professionals seeking an "extra quality" solution, Shell Alvania R3 remains a benchmark in the industry. Its robust datasheet validates its capability to protect bearings against wear, heat, and moisture.

The grease previously known as (or simply Alvania R3) has been rebranded as Shell Gadus S2 V100 3 Go to product viewer dialog for this item.

Resists the formation of deposits caused by oxidation, extending bearing life in environments reaching up to +130°C .

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