March 12, 20255 min read

Technical article

Types of Viscosity in Lubricating Oils and Their Equivalences

What is Viscosity in a Lubricating Oil? Viscosity is the resistance of a fluid to flow. In practical terms, it indicates how thick or thin an oil is. A lubricant with high viscosity is thicker and flows slowly, while one with low viscosity is thinner and flows more easily.

Types of Viscosity in Lubricating Oils and Their Equivalences
Viscosity is one of the most important factors in selecting lubricating oils, as it directly influences the performance, protection, and efficiency of equipment. Understanding the different types of viscosity and how they relate across various standards allows for informed decisions to optimize the operation of engines, hydraulic systems, and industrial gears.
In this article, we will explore the different ways to measure viscosity, their classifications, and the equivalences between international standards to facilitate the choice of the appropriate lubricant.
What is Viscosity in a Lubricating Oil?

Viscosity is the resistance of a fluid to flow. In practical terms, it indicates how thick or thin an oil is. A lubricant with high viscosity is thicker and flows slowly, while one with low viscosity is thinner and flows more easily.

This parameter is essential because it affects the lubricating film that protects the metal surfaces in contact. If the viscosity is too low, the lubricating film can be lost, causing wear and excessive friction. If it is too high, it increases resistance to movement, generating energy losses and overheating.

Types of Viscosity in Lubricating Oils

There are different ways to measure the viscosity of an oil, depending on the standard used and the application of the lubricant:

1. Kinematic Viscosity (cSt - Centistokes)

It is the most commonly used in the industry and is measured in centistokes (cSt) at 40°C and 100°C, according to the ISO 3104 standard. It determines the oil's ability to flow under the influence of gravity.

2. Dynamic or Absolute Viscosity (mPa·s - Centipoise, cP)

It is measured in millipascal-seconds (mPa·s) and represents the internal resistance of the oil to flow when an external force is applied. It is crucial in hydraulic lubrication and in high-demand engines.

3. Viscosity Index (VI - Viscosity Index)

It measures the variation of the oil's viscosity with temperature. A high viscosity index indicates that the oil maintains its properties better at extreme temperatures, which is vital in applications with wide thermal fluctuations.

4. Cold Viscosity (Brookfield mPa·s or CCS - Cold Cranking Simulator)

It determines the oil's ability to flow at low temperatures, crucial in applications where cold starting is a determining factor.

Viscosity Classification According to Different Standards

To facilitate the selection of the appropriate lubricant, different organizations have developed viscosity classification standards. Below are the most commonly used:

1. SAE Classification (Society of Automotive Engineers)

The SAE J300 is the most used classification for engine oils. It is divided into monograde and multigrade, where multigrade oils have a viscosity range suitable for both cold and hot temperatures.

Example: SAE 5W-30

  • "5W": Indicates the viscosity in cold. The lower the number, the better the flow at low temperatures.
  • "30": Indicates the viscosity at 100°C, reflecting the behavior in normal operation.

SAE Viscosity Table for Engines:

SAE GradeViscosity at 100°C (cSt)Viscosity at -30°C or -35°C (cP)
0W-205.6 – 9.3≤ 6200
5W-309.3 – 12.5≤ 6600
10W-4012.5 – 16.3≤ 7000
15W-5016.3 – 21.9≤ 7000

2. ISO VG Classification (International Organization for Standardization - ISO 3448)

Used in industrial systems, it defines oils according to their kinematic viscosity at 40°C.

ISO VG Viscosity Table:

ISO VGViscosity at 40°C (cSt)
3228.8 – 35.2
4641.4 – 50.6
6861.2 – 74.8
10090.0 – 110.0
150135.0 – 165.0
220198.0 – 242.0

Example of application:

  • ISO VG 32 and 46: In high-precision hydraulic systems.
  • ISO VG 100 and 150: In high-torque industrial gears and piston engines.
  • ISO VG 220 and above: For reducers and heavy machinery.
3. AGMA Classification (American Gear Manufacturers Association)

Specialized in industrial gear oils, it considers viscosity and the load supported.

Example of Equivalences:

AGMA GradeISO VGSAE Gear Oil
26875W
310080W
415090W
5220140W
6320250W

Equivalences Between Viscosity Standards

To facilitate conversion between classifications, references such as the following can be used:

SAE (Motor)ISO VGSAE (Gears)
5W-203275W
10W-304680W
15W-406885W
20W-5010090W

Conclusion

Viscosity is the key factor in selecting a lubricant, directly impacting performance, equipment lifespan, and energy efficiency in mechanical and industrial applications.

Understanding the differences between SAE, ISO VG, and AGMA classifications allows for the correct choice of lubricant, avoiding premature failures and maximizing the protection of engines, compressors, gears, and hydraulic systems.

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01What is "Types of Viscosity in Lubricating Oils and Their Equivalences" about?

Types of Viscosity in Lubricating Oils and Their Equivalences

02How does this relate to industrial lubrication?

This article covers practical guidance on industrial lubrication, with recommendations for industrial operations in Colombia.

03Where to buy industrial lubricants in Medellín?

Petrogrease S.A.S. distributes Shell, Mobil, Gulf, Chevron, Total, Petronas and other premium brands in Medellín with shipping across Colombia.

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