Why Temperature Affects Lubricants
Advanced Performance Services, Inc.
The primary physical characteristics of lubricants that are affected by temperature include viscosity, viscosity index, pour point and the base oil. Let’s deal with these individually and find out why temperature affects lubricants.
Viscosity
The viscosity of an oil has been said to be the most important consideration when selecting a lubricant. The viscosity of oil is its ability to flow or its internal resistance to flow.
For example, when an oil film forms between a bearing and a shaft, some of the oil’s molecules are attracted to the surface of the shaft, while other oil molecules are attracted to the bearing surface. This is called the shear rate and is directly affected by the oil’s viscosity and operating temperatures. A multi-grade oil with a lower (thinner) viscosity will generally have a higher potential shear rate, while a single viscosity oil will generally have a lower potential shear rate.
Since oil with a lower viscosity and high potential shear rate must still maintain a sufficient oil film, it is quite apparent that as temperatures rise, the oil film may fail and metal-to-metal contact may occur. If the oil’s viscosity is too high with a low potential shear rate, the internal resistance to flow will increase the temperature dramatically, causing an overheated condition, which can also cause a breakdown of the oil film and may cause oxidation of the oil. Therefore, it is critical that oils be selected by always taking the operating temperature of the equipment into account.
The most common term describing viscosity is kinematic viscosity, which is measured in centistokes (cSt) at 40 degrees C and 100degrees C, respectively. These specifications are always listed on oil company data sheets.
Pour Point
The pour point of an oil is defined as the lowest temperature at which a lubricant will flow. It is frequently and erroneously used as the oil viscosity selection criteria.
For example, let’s say an oil has a pour point of minus 30 degrees C. Most people assume that this means that the oil will flow to the bearings of the equipment even when the ambient temperature is at minus 30 degrees C. This is a fallacy. At best, this oil with a pour point of minus 30 degrees C and operating in an ambient temperature of minus 30 degrees C will merely churn at the oil pump until the churning causes an increase in the oil’s temperature. This in turn allows the oil’s viscosity to thin sufficiently so that it slowly begins to flow through the oil passages to the lubricated components.
Frequently, this process takes 5 to 10 minutes or more, during which severe damage can occur at various components, because the oil is actually too thick to flow. Do not select lubricants based on pour point alone.
Viscosity Index
The viscosity index (VI) of an oil is the term used to express an oil’s “resistance to viscosity change as the temperature changes.” For example, an oil that thins out (reduced viscosity) significantly as its temperature increases is said to have a low VI. An oil whose viscosity does not change significantly as it is heated up is said to have a high VI.
This temperature/viscosity relationship is the most critical and important consideration when selecting oils that will be operated in temperatures that change dramatically. Viscosity index is of particular importance when selecting oils for northern U.S. and western Canadian winters or high arctic operations.
Most industrial mineral lubricating oils that might be used in a manufacturing plant or production facility with controlled temperatures need only have VIs of 55B100. However, in an Alaskan mine facility or transportation operation, oils with VIs as high as 175 are available and may be necessary. Viscosity-index specifications are not always listed in oil company data sheets or specifications but should be.
Base Oil
The base oil should also be considered when selecting lubricants. Mineral-based (non-synthetic) oils have various bases depending upon their molecular and chemical structure. Base oils can be paraffinic, naphthenic or aromatic, and the selection process should take into account the type of base oil.
For example, naphthenic base oils have low natural VIs and may be selected for equipment where extreme temperatures do not affect operation. On the other hand, paraffinic base oils have natural VIs that are considerably higher than naphthenic types, making them desirable base stocks for lubricants used in outdoor applications. Fortunately, many of the natural mineral oils produced in North American oil fields are of the paraffinic type.
Click here to read more about Why Oil Goes Bad.
from Advanced Performance Services, Inc.
Related Articles
Preventive maintenance is a strategy that helps plan regular and routine maintenance to maximize the longevity of assets, equipment, and buildings. It also helps reduce the chances of unexpected equipment failures, costly unplanned downtimes and reactive maintenance. Businesses implement PM strategies by planning and scheduling maintenance activities based on real-time operational data using a computerized maintenance management system (CMMS).
Preventive maintenance is a strategy that helps plan regular and routine maintenance to maximize the longevity of assets, equipment, and buildings. It also helps reduce the chances of unexpected equipment failures, costly unplanned downtimes and reactive maintenance. Businesses implement PM strategies by planning and scheduling maintenance activities based on real-time operational data using a computerized maintenance management system (CMMS).
See More
In recent years, the tremendous growth of available technologies and the resulting trend towards component miniaturization and increased product reliability has challenged many companies to upgrade their current cleaning operations to satisfy the higher quality standards required by new product designs. Fluorescent cleaning non-destructive testing (FC/NDT) is a new integrated process that combines traditional cleaning methods with fluorescence-based inspection.
In recent years, the tremendous growth of available technologies and the resulting trend towards component miniaturization and increased product reliability has challenged many companies to upgrade their current cleaning operations to satisfy the higher quality standards required by new product designs. Fluorescent cleaning non-destructive testing (FC/NDT) is a new integrated process that combines traditional cleaning methods with fluorescence-based inspection.
See More
You may get the impression that implementing these steps will be costly and very difficult to achieve. The thing you need to bear in mind is: “You are already spending the money.” The only question is: “Are you getting the result from your pumping systems that you are looking for?” If you can create an environment that allows your entire team to become engaged in implementing these concepts, it will be the best investment you ever made.
You may get the impression that implementing these steps will be costly and very difficult to achieve. The thing you need to bear in mind is: “You are already spending the money.” The only question is: “Are you getting the result from your pumping systems that you are looking for?” If you can create an environment that allows your entire team to become engaged in implementing these concepts, it will be the best investment you ever made.
See More
A sophisticated signal processing technique can help to pinpoint bearing failure at an early stage. Chris Hansford, Managing Director at Hansford Sensors, explains. Experienced operators can often tell if a machine is not working properly, on the basis that is does not ‘sound right’. The same principle can be applied – using modern electronics – to identify the exact cause of the problem.
A sophisticated signal processing technique can help to pinpoint bearing failure at an early stage. Chris Hansford, Managing Director at Hansford Sensors, explains. Experienced operators can often tell if a machine is not working properly, on the basis that is does not ‘sound right’. The same principle can be applied – using modern electronics – to identify the exact cause of the problem.
See More
This column is likely to create a lot of reactions from the academia of reliability and maintenance management, and all comments are welcome. Reliability Centered Maintenance (RCM) has its place, but many times plants jump into training programs and attempt to implement RCM long before they are ready for it. This application makes RCM more of a trap, than a helpful tool to implement.
This column is likely to create a lot of reactions from the academia of reliability and maintenance management, and all comments are welcome. Reliability Centered Maintenance (RCM) has its place, but many times plants jump into training programs and attempt to implement RCM long before they are ready for it. This application makes RCM more of a trap, than a helpful tool to implement.
See More
For over 20 years, users of oil analysis have used the ISO cleanliness code to help determine solid contamination levels in both new and used oils. The current ISO standard for reporting cleanliness is ISO4406:99. Using this standard, analysts and end users alike have managed to establish cleanliness goals and develop key performance indicators (KPIs) with the expectation to allow for preemptive action to avoid early machine damage. While this has produced some success, relying specifically on the ISO cleanliness code as it is currently reported has its limitations.
For over 20 years, users of oil analysis have used the ISO cleanliness code to help determine solid contamination levels in both new and used oils. The current ISO standard for reporting cleanliness is ISO4406:99. Using this standard, analysts and end users alike have managed to establish cleanliness goals and develop key performance indicators (KPIs) with the expectation to allow for preemptive action to avoid early machine damage. While this has produced some success, relying specifically on the ISO cleanliness code as it is currently reported has its limitations.
See More
One common way of controlling the state-of-health of a piece of equipment is to monitor its vibration signature. High quality data is required, so using high-resolution analog-to-digital converters (ADCs) to acquire and digitize the analog vibration signal is a key enabler to the arena of predictive maintenance.
One common way of controlling the state-of-health of a piece of equipment is to monitor its vibration signature. High quality data is required, so using high-resolution analog-to-digital converters (ADCs) to acquire and digitize the analog vibration signal is a key enabler to the arena of predictive maintenance.
See More