A single collar thrust bearing is used to absorb the axial thrust generated by the propeller shaft and transmit it safely to the ship's hull.
Construction
- A thrust collar is forged integrally with the propeller shaft.
- Thrust pads (or shoes) lined with white metal are fitted on both sides of the thrust collar.
- The pads are mounted inside a strong bearing casing (housing).
- Each thrust pad is supported by a pivot or fulcrum at its back, allowing it to tilt slightly during operation.
- Lubricating oil is supplied between the rotating thrust collar and the stationary thrust pads.
- The lower part of the bearing housing is securely bolted to the ship's structure so that the propeller thrust is transmitted to the hull.
A single collar thrust bearing operates on the hydrodynamic lubrication principle.
Working Principle
- As the shaft rotates, lubricating oil is drawn between the rotating thrust collar and the stationary thrust pads.
- Due to the tilting action of the pads, a wedge-shaped oil film is formed.
- This oil wedge develops sufficient pressure to support the axial thrust load.
- The rotating collar and stationary pads remain separated by the pressurized oil film, preventing metal-to-metal contact.
- Thus, the propeller thrust is transmitted smoothly with minimum wear.
Thrust Transmission Path
Propeller → Shaft → Thrust Collar → Thrust Pads → Bearing Housing → Ship's Hull
The essential clearances of a thrust bearing are checked mainly by the following methods:
1. Feeler Gauge Method
This is the most common method used to measure the thrust pad clearance.
Procedure
- Remove the stopper.
- Remove all lubricating oil (L.O.) pipes and connections on the forward side.
- Push the thrust pad towards the thrust collar using a small screwdriver or crowbar.
- Insert a feeler gauge into the wear groove provided on the pad (normally 1 mm deep).
Interpretation
- If a 0.1 mm feeler gauge cannot be inserted, it indicates that the pad has worn by 0.9 mm.
- This shows that the thrust pad is excessively worn and should be replaced.
2. Shaft Axial Movement Method
Procedure
- Move the shaft axially using a hydraulic jack.
- Mount a dial gauge on the shaft.
- Continue moving the shaft until the thrust pads make contact with the thrust collar.
- The total movement indicated on the dial gauge represents the thrust clearance.
Significance of Thrust Clearance
- If the clearance is too large:
- Proper hydrodynamic lubrication cannot be achieved, resulting in poor load carrying capacity.
- If the clearance is too small:
- Lubricating oil flow becomes restricted.
- This causes overheating and may lead to wiping of the white metal lining of the thrust pads.