Sunday, 17 January 2016

LUBRICATION AND LUBRICANTS

BASIC FUNCTIONS OF LUBRICATIONS.

l  Reduce friction.
l  Reduce wear.
l  Reduce temperature rise.
l  Help cushion or absorb shock
l  Minimize corrosion.
l  Avoid contaminants by sealing out.

l  Flush out the contaminants.                           

                               TYPES OF LUBRICATION.

1)      Hydrodynamic Lubrication: In this, the bearing surfaces are separated by relatively thick layer of the lubricant to prevent the contact and stability thus achieved can be explained by the laws of fluid mechanics. This does not require the introduction of lubricant under pressure to separate the bearing surfaces, although, it is achieved by fluid dynamics.
2)      Hydrostatic Lubrication: In this, the lubricant is introduced between the bearing surfaces under pressure, where a very thick layer of lubricant is desired to minimize the friction to its lowest. This is done where velocities are very less or zero.
3)      Boundary Lubrication: When the thickness of the film becomes less due to factors such as drop in viscosity due to increase in oil temperature, less quantity of lubricating oil, increase of load onto the bearing, lessening of velocity of moving surfaces etc., a condition occurs wherein lubrication is bare and surfaces start rubbing with each other continually. This is called boundary layer lubrication.
  
             However, when the bearing surfaces are to be operated at slow speed and/or extreme temperature, solid film lubricants, such as fine graphite powder of molybdenum disulphide must be utilized because of drawbacks of mineral oil lubricant.


          
                             PROPERTIES OF LUBRICANTS.

1)      Viscosity: Viscosity indicates the relative fluidity of the lubricant. This property of lubricant indicates the fluidity at the temperature which is varying depending upon the operating temperature. It is the most important property referring to which manufacturers recommended the lubricant.
2)      Flash and fire points: Flash point refers to the temperature at which the vapors emitted from oil due to heating momentarily ignite in a flash. Fire point refers to the temperature at which vapors of heated oil catch fire and burn continuously. Fire point is higher than flash point. These properties are important from point of application of certain lubricating oils to specific operating temperatures.
3)      Pour point: This refers to the ability of the lubricant to flow at lower temperature. This is the temperature below which the lubricant looses its fluidity.
4)      Emulsification: Emulsification is the property where oil will get easily mixed with water and forms more or less stable emulsion. This is dangerous to the components as emulsification will lead to oxidization of oil in the presence of temperature and oxygen/air. Certain additives are added to break such emulsification of oil. Demulsification is the property wherein the oil does not get readily mixed up with water.
5)      Neutralization number: This refers to the acidity of oil. An increase in this number suggests increase in oxidation of oil.
6)      Foam: Foam is the property of oil to have air entrapped and is an undesirable property.
7)      Rust-proofness: Oil has an additional function of resisting rusting of components it is working with. It is desirable to have higher rust-proofness of oil.
8)      Corrosion resistance: Apart from avoiding rust, oil also must not corrode the components itself.