Cat C18 ACERT Marine Propulsion
The Caterpillar C18 ACERT is a medium‑speed, 6‑cylinder, 4‑stroke diesel engine delivering up to ~1 200 kW at 1 000–1 500 rpm, known for its high power density and electronic fuel control.
Engine Specifications
Inspector Detail
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Common issues
- Injector wear and fouling, leading to poor combustion, increased fuel consumption, and exhaust smoke.
- Turbocharger fouling (carbon buildup) or bearing wear, resulting in reduced boost pressure and engine power.
- Heat exchanger fouling (raw water side) or corrosion, causing elevated engine coolant temperatures.
- Sensor faults (e.g., oil pressure, coolant temperature, boost pressure, exhaust gas temperature) leading to inaccurate readings and potential derating.
- Coolant leaks from hoses, clamps, or heat exchanger end caps, compromising cooling system integrity.
- Fuel system contamination (water, particulates) leading to premature filter clogging and injector issues.
- Exhaust manifold cracks or gasket leaks, causing heat loss, reduced turbo efficiency, and potential fire hazard.
- Excessive engine vibration due to misfiring, worn mounts, or propeller imbalance.
Inspection checklist
- Visually inspect for any fluid leaks (oil, fuel, coolant) around the engine, hoses, and connections.
- Check engine oil level and condition (color, presence of water/fuel).
- Inspect fuel filters (primary and secondary) for signs of water or excessive particulate accumulation.
- Examine the turbocharger for excessive axial and radial shaft play, unusual noises, and signs of oil leakage.
- Check all drive belts (alternator, raw water pump) for proper tension and condition (cracks, fraying).
- Inspect the raw water pump impeller for wear or damage (if accessible without major disassembly).
- Verify proper operation of all engine alarms and safety shutdowns (e.g., low oil pressure, high coolant temperature, overspeed).
- Monitor engine parameters (oil pressure, coolant temperature, exhaust gas temperature, boost pressure, fuel pressure) during operation for deviations from normal.
- Inspect exhaust system for leaks, cracks, and integrity of thermal lagging.
- Check engine mounts for signs of deterioration, cracking, or excessive movement.
Service intervals
| Engine Oil & Filter Replacement | 250-500 hours or annually, whichever comes first (depending on oil analysis and duty cycle) |
| Fuel Filter Replacement (Primary & Secondary) | 250-500 hours or annually |
| Valve Lash Adjustment | 500-1000 hours |
| Cooling System Inspection & Coolant Sample | 250 hours |
| Coolant Replacement | 2000-4000 hours or every 2 years (with ELC coolant) |
| Air Filter Element Inspection/Replacement | Inspect every 250 hours, replace as needed (typically 500-1000 hours) |
| Raw Water Pump Impeller Inspection/Replacement | Annually or every 500 hours |
| Injector Inspection/Testing | 2000-4000 hours or as indicated by performance issues/fuel analysis |
Typical wear limits
| Turbocharger Shaft Axial Play | < 0.15 mm (0.006 in) |
| Turbocharger Shaft Radial Play | < 0.25 mm (0.010 in) |
| Valve Lash (Cold) - Intake | 0.38 mm (0.015 in) |
| Valve Lash (Cold) - Exhaust | 0.76 mm (0.030 in) |
| Crankshaft Deflection (Web Deflection) | < 0.05 mm (0.002 in) across any web (general indicator, requires specific measurement points) |
| Engine Oil Pressure (Hot, Rated RPM) | Typically 350-550 kPa (50-80 psi) |
Ranges are typical for this design class. Always confirm against the manufacturer documentation for your serial number.
Critical spares
- Full set of fuel filters (primary and secondary)
- Engine oil filters
- Raw water pump impeller and gasket kit
- Drive belts (alternator, raw water pump)
- Common O-rings and gaskets (e.g., fuel line seals, heat exchanger end cap gaskets)
- Spare engine sensor (e.g., coolant temperature, oil pressure)
- Air filter element
- Emergency stop button/switch
Safety
- High-pressure fuel lines: Risk of fuel spray injury if lines are compromised while engine is running or pressurized.
- Hot surfaces: Exhaust manifold, turbocharger, and other engine components operate at high temperatures, posing burn hazards.
- Rotating machinery: Belts, pulleys, and flywheel present entanglement hazards when engine is running.
- Electrical hazards: Live electrical components and wiring can cause shock if not properly isolated during inspection/maintenance.
- Exhaust gases: Carbon monoxide and other toxic gases require proper ventilation in the engine room.
Class survey
A class surveyor will typically focus on: verification of engine logbook entries and maintenance records; operational testing of emergency stops and overspeed protection; functionality of engine alarms and safety devices; integrity of fuel lines (including double-walled where required) and shut-off valves; condition of exhaust system lagging and absence of leaks; security of engine foundation bolts; general cleanliness of the engine room and absence of oil/fuel accumulation; proper operation of the governor and load response; and overall engine performance during a sea trial or dockside load test to ensure compliance with regulatory and classification society requirements.
Components & Design
Component data being added…
Technical Data
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Common failures & inspection points
Service & Maintenance
Scheduled Cat service includes oil and filter replacement, valve lash, injector and cooling system checks.
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