Skip to main content

Crankshaft deflections


Crankshaft Deflections And Wear Down Gauge Readings

  • In order to prevent crankshaft failure and serious breakdowns, it is absolutely essential to maintain the main bearings of an engine in true alignment.
  •  The alignment must be checked as per the maker’s instructions, with the main bearing bridge gauge, and the crankweb deflection gauge. In taking these measurements, extreme care must be taken to see that the journal is bedding on its bearing.
  •  The thickness of the lower half main bearing shells must also be measured and recorded. If the reduction in thickness of individual bearing shells is not uniform then the differences will be a true record of misalignment.

A chart is provided by the engine manufacturer that gives the various tolerances which may be allowed.

Inspections : Cylinder Liner Gauging:

  • The gauging of the cylinder liners must also be taken and recorded on the appropriate form. Abnormal wear rate must be investigated and reported to the superintendent.
  • Cylinder Liners are high cost components, it is important to monitor the specific lube oil consumption and wear rates closely.
  • Other calibrations required by the engine manufacturers must be taken at the appropriate intervals.


Crankcase inspections:

  1. Crankcase inspections must be carried out at, or within, the manufacturers’ running hours.
  2. In the case of air starting systems the main air starting line is to be drained and completely vented.
  3. Before a crankcase inspection is carried out the turning gear must be engaged, indicator cocks or other cylinder pressure relief devices opened and the air or other starting arrangements must be isolated.
  4.  In the case of smaller medium speed engines and high speed engines without turning gear the starting arrangements must be isolated, and cylinder pressure relief devices opened. 
  5. Within the scope of diesel engines from high speed through medium speed to slow speed types, there are a wide variety of arrangements for the running gear and bearings, and all must be examined in accordance with manufacturers’ instructions, however the following checks are to be carried out:
  6. Sump drain grids for blockage, metal, or other impurities.
  7. If appropriate to the engine type a lubricating oil pressure test is to be carried out.
  8. The adequacy of the flow of oil from the bearings, its direction and pattern are to be carefully observed and compared with the manufacturers’ instructions. This test can provide positive indications towards locating faulty bearings.
  9. Take feeler clearances according to manufacturers’ instructions.
  10. As appropriate to the engine type and to “built-up” crankshafts the proof marks should be examined for correct alignment. The relevant Management Office must be informed if there is any doubt concerning proof marks.
  • The running gear such as the crankshaft, main bearings, bottom end bearings, top end bearings, guides, astern bars, etc., must be examined as every opportunity occurs, preferably as soon as the crankcase is safe to enter, after the "finished with engines" order is given.

    In carrying out this examination, attention must be given to the locking arrangements and tightness of all nuts, lubricating oil pipes, piston cooling pipes and glands, if fitted, oil drainage arrangements, drainage lines etc. A sharp look out must also be kept for any sign of white metal flakes or splinters as these are often evident if any bearings have "wiped" or tended to "run".

    Attention must also be given to crankshaft coupling bolts. At three monthly periods the tightness of these nuts must be tested with a light hammer and spanner, care being taken so that the coupling bolts are not unduly stretched. The welding of main bearing girders must be examined for signs of cracking. Maintenance performed on the main engine in the Maintenance Report Form
  • The chains and/or gearing driving the camshaft must also be examined. The chains must be kept at the proper tension. It is essential that the crankcase doors are always replaced between overhauling periods when in port to ensure that as little moisture as possible condenses in the crankcase. Care should be exercised to see that ventilators are not directed into the crankcase for the same reason. Crankcase pressure release doors which are fitted to each main engine crankcase should be inspected periodically and the diaphragm, where fitted, renewed if damaged.

  • The following instructions regarding the prevention of explosions and fires in crankcases are to be prominently displayed on the engine and all E/Os are to be familiar with them:

    Holding Down Bolts Inspections
  • The tightness of holding down bolts, particularly of main and auxiliary engines must be checked every three months.
  •  At the time they are examined the chocks should also be tested to ascertain that no movement or fretting has taken place. 
  • Special precautions are to be exercised when checking holding down bolts with resilient pads to ensure that the alignment is not distorted. It is also necessary to check these parts if the vessel has been in heavy weather.

  • Comments

    1. I read the above article and I got some different kind of information from your article about a mattress. It is a helpful article to enhance our knowledge for us. Thankful to you for sharing an article like this.Magneto Parts Suppliers

      ReplyDelete
    2. Thanks for publishing such great information. You are doing such a great job. This information is very helpful for everyone. Take a look at this Cat engine parts for sale. Thanks.

      ReplyDelete
    3. Thanks for publishing such great information. You are doing such a great job. This information is very helpful for everyone. Take a look at this Cat engine parts for sale. Thanks.

      ReplyDelete
    4. Thanks for publishing such great information. You are doing such a great job. This information is very helpful for everyone. Take a look at this Cat engine parts for sale. Thanks.

      ReplyDelete
    5. Thanks for publishing such great information. You are doing such a great job. This information is very helpful for everyone. Take a look at this Cat engine parts for sale. Thanks.

      ReplyDelete
    6. Thanks for publishing such great information. You are doing such a great job. This information is very helpful for everyone. Take a look at this Cat engine parts for sale. Thanks.

      ReplyDelete
    7. Thanks for publishing such great information. You are doing such a great job. This information is very helpful for everyone. Take a look at this Cat engine parts for sale. Thanks.

      ReplyDelete
    8. Thanks for publishing such great information. You are doing such a great job. This information is very helpful for everyone. Take a look at this Cat engine parts for sale. Thanks.

      ReplyDelete
    9. Thanks for publishing such great information. You are doing such a great job. This information is very helpful for everyone. Take a look at this Cat engine parts for sale. Thanks.

      ReplyDelete
    10. Thanks for publishing such great information. You are doing such a great job. This information is very helpful for everyone. Take a look at this Cat engine parts for sale. Thanks.

      ReplyDelete
    11. The delightful article you have posted here. This is a good way to increase our knowledge.paint protection Continue sharing this kind of articles, Thank you.

      ReplyDelete
    12. I generally want quality content and this thing I found in your article. It is beneficial and significant for us. Keep sharing these kinds of articles, Thank you.mazda engines

      ReplyDelete
    13. Wow, this article is awesome wish to see more like this. Thanks for sharing such information. You can check this out too industrial shredder machine . Thank you.

      ReplyDelete
    14. I generally check this kind of article and I found your article which is related to my interest. Tractor Spare Parts Online Genuinely it is good and instructive information. Thankful to you for sharing an article like this.

      ReplyDelete

    Post a Comment

    If you have any doubts.Please let me know

    Popular posts from this blog

    Differences between MC/MC-C and ME/ME-C engines

    The electrohydraulic control mechanisms of the ME engine replace the following components of the conventional MC engine: Chain drive for camshaft Camshaft with fuel cams, exhaust cams and indicator cams Fuel pump actuating gear, including roller guides and reversing mechanism Conventional fuel pressure booster and VIT system Exhaust valve actuating gear and roller guides Engine driven starting air distributor Electronic governor with actuator Regulating shaft Engine side control console Mechanical cylinder lubricators. The Engine Control System of the ME engine comprises: Control units Hydraulic power supply unit Hydraulic cylinder units, including: Electronically controlled fuel injection, and Electronically controlled exhaust valve activation Electronically controlled starting air valves Electronically controlled auxiliary blowers Integrated electronic governor functions Tacho system Electronically controlled Alpha lubricators

    Main engine interlocks

    Interlocks are provided so that the engine can be started or reversed only when certain conditions have been fulfilled. When there is a remote control of engines, it is essential to have interlocks. This reduces the possibility of engine damage and any hazards to the operating personnel. Turning gear Interlock . This device prevents the engine from being started if the Turning gear is engaged. Running Direction Interlock . This prevents the fuel from being supplied if the running direction of the engine does not match the Telegraph. Starting Air Distributor in end position . This prevents starting from taking place if the shifting of the Distributor has not been completed. Main Lube. oil pressure, Piston cooling pressure, Jacket water pressure, and important parameters must be above the required minimum. Auxiliary Blower Interlock . The Auxiliary Blower is provided in case of Constant pressure turbo charging. Air Spring pressure Interlock . In case of the present generation

    Why is a man hole door elliptical in shape?

    Any opening in a pressure vessel is kept to a minimum and for a man entry an elliptical hole  is lesser in size than the corresponding circular hole. More over it is prime concern to have a  smoothed generous radius at the corners to eliminate stress concentration. Hence other  geometrical shapes like rectangle and square are ruled out.  To compensate for the loss of material in the shell due to opening, a doubler ring has to be  provided around the opening. The thickness of the ring depends on the axis length along the  dirrection in which the stresses are maximum and the thickness of the shell. It is important to  align the minor axis along the length of the vessel, as the stress in this direction is  maximum. Longitudinal stress: Pd/2t where P= pressure inside the vessel, d= diameter of the arc, t=  thickness of the shell plating  Circumferential stress: Pd/4t  More over a considerable material and weight saving is achieved as minor is along the  direction of maximum stress.