Q9 (16 Marks) Materials & Testing 🔥 Repeated 2x in exams
MEKG • Written Exam

State with reasons, how cracking in EACH of the following locations is caused, rectified and avoided:

(a) 'A' Frames

(b) Bed plate longitudinal girders

(c) Bed plate transverse girders

Appeared In: Jun 2023Apr 2018

Verified Model Answer (Text Solution)

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(i) A-Frame

Cause of Cracking:

  • Stress concentration due to sharp changes in section.
  • Incorrect preparation of plate edges.
  • Welding root faults, like lack of penetration.
  • Engine overload or excessive crosshead force.
  • Vibrations and twisting.
  • Loose tie bolts or termination of horizontal stringers.

Avoidance Measures:

  • Use a monoblock structure for the A-frame to provide structural rigidity.
  • Avoid sharp changes in section to reduce stress concentration.
  • Address manufacturing defects with proper treatment.
  • Make the guides integral with the A-frame or manufacture separately from cast iron. Perform regular inspections and checks on tie bolt tightness. Ensure engine operates within specified load, temperature, and pressure limits.

Rectification of Cracks:

  • Conduct visual inspections and non-destructive testing (Dye-Penetration Test, Magnetic Particle Test) to locate cracks.
  • If necessary, drill and tap the crack to prevent its spread.
  • With shore assistance and class approval, remove the crack and repair it with metal welding, using similar or superior material.
  • Pre- and post-heat treatments may be required for proper metal integration.

(ii) Bedplate Longitudinal Girder

Cause of Cracking:

  • Manufacturing defects such as welding faults.
  • Imbalanced engine loads.
  • Incorrect tension of fastenings, like holding-down bolts and tie bolts.
  • Excessive vibration, which may be due to improper operation of vibration dampers.

Avoidance Measures:

  • Ensure constructional strength to provide sufficient rigidity for various forces.
  • Prevent sharp changes in section, which can increase stress concentration.
  • Eliminate manufacturing defects with proper heat treatments and welding techniques.
  • Operate the engine within specified load, temperature, and pressure limits.
  • Regularly inspect and maintain all fastenings.

Rectification of Cracks:

  • Perform visual and non-destructive testing to locate and assess the extent of the crack.
  • Drill and tap the crack if needed to control propagation.
  • If shore assistance is available, perform grinding and welding repair under class approval, followed by pre- and post-heat treatments to maintain material integrity.

(iii) Bedplate Transverse Girder

Cause of Cracking:

  • Cylinder overload, often from excessive power output, causing high stress.
  • Misalignment of the crankshaft, which can lead to uneven loading.
  • Material defects and high residual stresses in welded areas.
  • Deformation of the tank top due to pressurization or overheating.

Avoidance Measures:

  • Build the bedplate with M.S. plates and cast steel cross girders, assembled and welded for longitudinal and transverse strength.
  • Reinforce longitudinal strength by constructing bedplate sides as box girders.
  • Use cast steel cross girders under the main bearing for transverse strength.
  • Place resin cast chocks between the bedplate and tank top to absorb shocks and stresses.

Maintenance and Rectification:

  • Perform monthly checks on bolt tension and engine load.
  • Regularly measure and maintain crankshaft alignment.
  • Check and adjust main bearing jack bolt tension.
  • In cases of cracks, follow inspection and repair protocols similar to those for the A-frame and longitudinal girders, including pre- and post-heat treatments where necessary.
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