Shell Alvania R3 Grease Datasheet Extra Quality ReviewThis article delivers a deep dive into the technical specifications, performance benchmarks, and application guidelines for the "Extra Quality" grade of Shell Alvania R3, ensuring you have the authoritative data needed to optimize your asset lifecycle. The "Shell Alvania R3" (often referred to in technical documentation as the RL3 grade) is a designed for reliable performance under a wide range of conditions. This public link is valid for 7 days and shares a thread, including any personal information you added. This link or copies made by others cannot be deleted. If you share with third parties, their policies apply. Can’t copy the link right now. Try again later. This piece is for informational purposes. Always verify with the official Shell Alvania R3 product datasheet before critical deployment. The stiff consistency prevents "churning" and excess heat generation in high-speed electric motor bearings. shell alvania r3 grease datasheet extra quality A datasheet provides numbers, but "extra quality" provides performance. The Shell Alvania R3 excels in the following critical areas: Note: Always consult the official Shell product guide for the most recent version. Below are the typical values for the standard grade. Frequently utilized in pump bearings where water resistance and high-temperature stability are vital. The heavier NLGI Grade 3 consistency makes this product ideal for specific mechanical setups where a stiffer grease layer is required to resist centrifugal forces or sealing demands. This article delivers a deep dive into the Despite the name change, the core chemistry and performance characteristics of the product have been maintained. It remains the same "extra quality" industrial grease that professionals have trusted for years. When you see references to Shell Alvania RL3 or Shell Alvania R3 in maintenance manuals or specifications, you can confidently substitute Shell Gadus S2 V100 3. With a dropping point typically above , this grease maintains its structure at high operating temperatures, preventing thermal run-away and bearing failure. Formulated to resist water washout, ensuring continuous lubrication even in damp environments. Shell Alvania R3 is a premium-quality, lithium soap-thickened grease formulated with high-viscosity index mineral base oils and advanced oxidation, rust, and anti-wear additives. Technical Property Test Method Typical Value / Specification 3 Thickener Type Lithium Soap Base Oil Type Kinematic Viscosity @ 40°C Kinematic Viscosity @ 100°C Cone Penetration, Worked (60 strokes) 220–250 (0.1 mm) Dropping Point 180°C (356°F) Operating Temperature Range -20°C to +135°C (-4°F to +275°F) ⚙️ Core Performance Benefits This link or copies made by others cannot be deleted Water washout is a leading cause of bearing failure. Shell Alvania R3 has excellent water resistance properties. It does not easily wash out of bearings, making it an ideal choice for marine applications, paper mills, or outdoor equipment exposed to the elements. : Resists the formation of deposits caused by oxidation at high temperatures and maintains consistency under mechanical stress to prevent leakage. Corrosion Protection Keep drums and pails tightly sealed when not in use to prevent dust contamination. The "extra quality" of a Shell product often comes from its reliability as a branded standard. While you should always flush the system if changing grease types, Alvania R3 is generally compatible with conventional lithium-based soaps. However, for optimal performance, avoid mixing with greases containing different thickener types (e.g., polyurea or aluminum complex) without consulting a lubrication engineer. 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. |
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