Q2 (16 Marks) Engine Construction & Components 🔥 Repeated 5x in exams
MEP • Written Exam

(a) During an inspection it is noticed that tie rods of certain main engine units have become slack, state with reasons the possible cause of this. (5)

(b) Explain how correct tension is restored and the risk of future slackness minimized (5)

(c) A tie rod has fractured and cannot be replaced immediately, State with reasons the course of action to be adopted in order to allow the engine to be operated without further damage (6)

Appeared In: Aug 2026Mar 2025Jul 2024Dec 2023Oct 2022

Verified Model Answer (Text Solution)

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Exam Ready
Part (a)

Possible Causes of Slack Tie Rods:

  • Over time, the high-tensile steel tie rod can experience creep, a time-dependent deformation under sustained load. This gradual elongation reduces the initial tension.
  • Repeated cycles of gas pressure and engine vibration can induce fatigue in the tie rod material. Microscopic cracks can develop, leading to a reduction in effective length and consequently, preload loss.
  • Incorrect tightening during installation or maintenance can result in insufficient initial tension. This is often the root cause of premature slackness.
  • Settlement or movement of the engine foundation can induce stresses that relieve the tension in the tie rods. This is especially true if the foundation is not properly designed or maintained.
  • Corrosion at the threads or under the nut can weaken the connection, effectively inducing slackness.
  • Hidden damage (e.g. cracking) to the tie rod itself can lead to apparent slackness as the rod's effective length is altered.
Part (b)

Restoring Correct Tension:

  • Thoroughly clean the tie rod threads, nuts, and landing areas to remove dirt or fretting dust.
  • Ensure the pinching screws and main bearing jack bolts (if fitted) are slackened before retightening.
  • Apply the correct lubricant as recommended by the manufacturer to ensure smooth tightening without additional stress points.
  • Use the hydraulic pump and jacks to apply tension to the tie rods according to the manufacturer's specified stages, sequence, and hydraulic pressures.
  • Measure the elongation of the tie rod after tightening and compare it with the manufacturer’s recommended values.
  • Tighten the pinching screws and main bearing jack bolts after completing the tie rod tightening.

Minimizing Future Slackness:

  • Regularly monitor tie rod tension and inspect for signs of fretting, slackness, or brown dust.
  • Follow the manufacturer’s tightening procedure and PMS schedule for maintenance.
  • Maintain engine operation within the specified load, temperature, and speed limits to prevent excessive stress or vibrations.
  • Conduct routine inspections of running gear alignment, foundation bolts, and vibration dampers to ensure proper operation and minimise structural movement.

Tightening sequence:

Part (c)

Likely Effects on the Engine if it Operates with Slack Tie Rods:

  • Slack tie rods result in uneven loading of the engine on the transverse girder, leading to crankshaft misalignment. This misalignment can damage bearings and cause uneven wear on other engine components.
  • The relative movement between the engine structure caused by slack tie rods leads to fretting, a type of surface wear that occurs due to microscopic vibrations.
  • Fretting can cause accelerated wear on the crosshead guide, cylinder liner, and stuffing box due to misalignment.
  • The overall alignment of the engine and running gear can be compromised, impacting performance and potentially leading to damage.
  • Excessive vibration of the engine may lead to failure of the components, which may be even extended to failure of turbocharger bearings
  • The vibrations can further loosen foundation bolts and chocks, exacerbating the problem.
  • In severe cases, slack tie rods can lead to damage of the bedplate, frame, and entablature, requiring costly repairs.
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