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6L6N21AY-CV

Silnik pomocniczy (zespół prądotwórczy) · Silniki pomocnicze

Dane techniczne ze źródeł producenta lub towarzystwa · jeszcze niesprawdzone ręcznie
1 410 kWMoc
6Cylindry
210 mmŚrednica cylindra
290 mmSkok

Yanmar Marine 6L6N21AY-CV — Common Rail, 6 cyl × 210mm bore, 1500 rpm, MGO/HFO, 1410 kW.

Dane techniczne

Dane techniczne.dane referencyjne — niezweryfikowane

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KonfiguracjaL
Obroty (1/min)1500
Rodzaj paliwaMGO/HFO
TechnologiaCommon Rail
Moc (kW)1410
Inspekcja

Szczegóły inspektora ✓ zweryfikowane

Typowe problemy

  • Fuel System Contamination/Degradation: Critical for Common Rail, especially with HFO. Issues with fuel quality, purifier efficiency, water ingress, or microbial growth leading to injector fouling, high-pressure pump wear, and filter clogging.
  • Common Rail Injector Failure: Due to high pressures (up to 2000+ bar), precise tolerances, and sensitivity to fuel quality. Can lead to poor combustion, high exhaust temperatures, and potential cylinder damage.
  • Turbocharger Bearing Wear/Fouling: Particularly when operating on HFO, exhaust gas can cause fouling on the turbine side. Lube oil quality and timely maintenance are critical for bearing life.
  • Lube Oil Contamination/Degradation: HFO combustion byproducts, water ingress, or improper purification can lead to increased wear, bearing damage, and reduced engine life. High TBN depletion is common.
  • Cylinder Liner/Piston Ring Wear: Accelerated wear due to poor combustion, abrasive particles in fuel/lube oil, or inadequate lubrication, especially prevalent with HFO operation.
  • Automation and Control System Faults: Common Rail engines rely heavily on sophisticated electronics. Sensor failures, wiring issues, or ECU malfunctions can cause erratic operation, alarms, or unexpected shutdowns.
  • Cooling System Issues: Fouling of heat exchangers (lube oil cooler, jacket water cooler, charge air cooler) leading to reduced cooling efficiency and potential overheating. Leaks in piping or pumps are also common.

Lista kontrolna przeglądu

  • Fuel System Integrity: Check for leaks (especially high-pressure lines), verify filter differential pressures, fuel temperature control, and purifier performance. Confirm proper fuel changeover procedures are followed.
  • Exhaust Gas Temperatures (EGTs): Monitor individual cylinder EGTs for deviations (> +/- 30°C from average) indicating combustion issues (injector, valve, or compression problems).
  • Lube Oil System: Check pressure, temperature, and level. Inspect for leaks. Review recent oil analysis reports for TBN, viscosity, water content, wear metals, and insolubles.
  • Common Rail Components: Visually inspect the high-pressure pump for leaks. Listen for abnormal noises from injectors. Check for consistent fuel return line flow.
  • Turbocharger: Check for abnormal noise, excessive axial/radial play (if accessible), air filter condition, and cleanliness of compressor/turbine sides. Inspect for oil leaks from bearings.
  • Crankcase Breather/Relief Valves: Ensure they are clear, free from obstruction, and functioning correctly. Check for excessive blow-by, which can indicate piston ring wear.
  • Safety Devices: Functionality check of overspeed trip, low lube oil pressure shutdown, high cooling water temperature shutdown, and emergency stop buttons. Verify alarm setpoints.
  • Vibration and Noise: Listen for abnormal knocking, rattling, or excessive vibration from engine mounts, coupling, or driven machinery. Use vibration monitoring equipment if available.
  • General Cleanliness and Housekeeping: Indicates overall maintenance standards and helps in early detection of leaks, loose fittings, or potential hazards.
  • Cooling System: Check jacket water and charge air cooler temperatures, pressures, and flow. Inspect for leaks, signs of corrosion, or fouling in heat exchangers.

Interwały serwisowe

Daily/Weekly ChecksVisual checks, LO level, fuel filter DP, cooling water levels, EGTs, general engine room rounds.
250-500 Running HoursLube oil change, Lube oil filter elements renewal.
1000-2000 Running HoursFuel filter elements renewal (all stages), Air filter cleaning/renewal, Valve clearance check/adjustment, Charge air cooler water side cleaning.
4000-6000 Running HoursFuel injector overhaul/replacement, Turbocharger inspection (bearings, cleaning), Cylinder head valve seat inspection (if EGTs indicate issues), Main bearing inspection (visual, if accessible).
8000-12000 Running HoursCylinder head overhaul (valves, springs, seats, guides), Piston crown/skirt inspection, Piston ring renewal, Connecting rod bearing renewal, Fuel pump inspection (low pressure side).
24000-36000 Running HoursMajor Overhaul (complete engine disassembly, inspection, renewal of liners, pistons, bearings, crankshaft alignment check, cylinder head complete overhaul, fuel pump overhaul, turbocharger overhaul).

Typowe granice zużycia

Cylinder Liner BoreMax wear limit typically 0.6 - 0.8 mm from nominal diameter. Max taper and ovality limits typically 0.15 - 0.2 mm.
Piston Ring End Gap (Top Ring)Max limit 1.0 - 1.5 mm (new gap typically 0.3 - 0.5 mm).
Crankshaft DeflectionMax allowable deviation between adjacent throws typically < 0.05 mm.
Main Bearing ClearanceMax allowable 0.15 - 0.25 mm (new typically 0.10 - 0.15 mm).
Connecting Rod Bearing ClearanceMax allowable 0.15 - 0.25 mm (new typically 0.08 - 0.12 mm).
Valve Seat RecessionMax 0.8 - 1.2 mm from cylinder head surface.
Turbocharger Rotor PlayAxial play max 0.15 - 0.25 mm; Radial play max 0.3 - 0.5 mm (specific to turbocharger model).

Zakresy są typowe dla tej klasy konstrukcyjnej. Decydujące są zawsze dokumenty producenta dla danego numeru seryjnego.

Krytyczne części zamienne

  • Common Rail Injector Assembly: At least one complete set or critical components (nozzle tips, control valves) due to their sensitivity and high operating pressures.
  • Fuel Filter Elements: Full sets for all stages (primary, secondary, high-pressure pump filters) as fuel quality issues are common with HFO.
  • Lube Oil Filter Elements: Full set, as lube oil cleanliness is paramount for engine longevity.
  • High-Pressure Fuel Pump Spares: Seals, O-rings, or a complete pump if budget allows, given the critical nature of the Common Rail system.
  • Turbocharger Cartridge / Bearing Kit: Essential for quick repair of a critical component affecting engine performance and efficiency.
  • Sensors: Critical temperature, pressure, and speed sensors for engine control and safety systems (e.g., crank position sensor, common rail pressure sensor).
  • Gasket/O-ring Kit: For common maintenance tasks and potential leak repairs (e.g., cylinder head cover, fuel system, cooling system).
  • Starter Motor / Solenoid: Or critical repair parts, as starting reliability is crucial for auxiliary engines.

Bezpieczeństwo

  • High-Pressure Fuel Leaks: Common Rail systems operate at extremely high pressures (up to 2000+ bar). A pinhole leak can create an invisible jet capable of penetrating skin, causing severe injury or death. Also, a significant fire hazard.
  • Hot Surfaces: Exhaust manifold, turbocharger, and other engine components operate at high temperatures, posing severe burn risks. Ensure proper insulation and guarding are maintained.
  • Rotating Machinery: Flywheel, shaft couplings, and fan belts present entanglement and crushing hazards. Ensure all guards are in place, securely fastened, and maintained.
  • Crankcase Explosions: Although less common with modern engines, accumulation of oil mist in the crankcase can ignite. Ensure crankcase relief valves are functional, and blow-by is monitored to prevent this rare but catastrophic event.
  • Electrical Hazards: High voltage components for starting and control systems. Ensure proper lockout/tagout procedures are followed during maintenance and that electrical connections are secure and insulated.

Przegląd klasyfikacyjny

A class surveyor will typically focus on the engine's overall condition, safety systems, and documentation. Key checks include: 1. Safety Devices: Verification of overspeed trip, low lube oil pressure trip, high cooling water temperature trip, and emergency stops. Calibration certificates and functionality checks. 2. Fuel System Integrity: Inspection for leaks, proper lagging/spray shields for high-pressure fuel lines, and fire safety arrangements (quick closing valves, fire detection). 3. Exhaust System: Condition of insulation, expansion bellows, and exhaust gas piping to prevent fire hazards and ensure integrity. 4. Crankcase Relief Valves: Inspection for freedom of movement and proper sealing. 5. Governor and Control System: Functionality check, stability, and response to load changes, especially for Common Rail systems. 6. General Condition & Maintenance: Overall cleanliness, absence of leaks, proper securing of components, and review of engine room logbooks, maintenance records, and oil analysis reports. 7. Load Test: Often required during special surveys or after major overhauls, to demonstrate the engine's ability to take and maintain full load. 8. Vibration Analysis: Assessment of engine vibration levels. 9. Documentation: Verification of engine certificates, maintenance manuals, and spare parts lists.

Szacowana trwałość: 24,000 - 36,000 hours before major overhaul (complete engine strip-down and renewal of major components). With proper maintenance and timely overhauls, the total operational life can exceed 100,000 hours.

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