Contents Section: Mechanical All sections

Engine System - General Information Ford Focus ST III

Mechanical 28 illustrations ~6599 words

Specifications

ItemFill Capacity
Dye-Lite™ Gasoline Engine Oil Leak Detection Dye 164-R3700 (Rotunda)29.6 ml (1 oz.)

CAPACITIES

Engine Information

Note. When repairing engines, all parts must be contamination free. If contamination/foreign material is present when repairing an engine, premature engine failure may occur.

Note. Specifications show the expected minimum or maximum condition. Refer to the appropriate Engine article(s) for the specifications.

Note. If a component fails to meet the specifications, it is necessary to refinish it or install a new component. Wear limits are provided as an aid to determine if the component can be refinished. A new component must be installed when any component fails to meet specifications and cannot be refinished.

Note. This service information contains information, steps and procedures that may not be specific to this engine.

This service information covers general procedures and diagnosis and testing of the engine system, except for exhaust emission control devices, which are covered in the ENGINE CONTROLS - INTRODUCTION (EXCEPT DIESEL & HYBRID) .

The engine incorporates the following features: Refer to the appropriate Engine article(s) for the procedure.

  1. Crankcase ventilation or breather system
  2. Exhaust emission control system
  3. EVAP control system

Some engines incorporate a fail-safe cooling system. Refer to the appropriate Engine article(s) for the procedure.

The engine, fuel system, ignition system, emissions system and exhaust system all affect exhaust emission levels and must be maintained according to the maintenance schedule. Refer to the Scheduled Maintenance Guide.

Correct engine identification is required to order parts. Refer to the appropriate Engine article(s) for the procedure.

For complete vehicle and engine identification codes

Inspection and Verification - Engine Performance

Note. There are 2 diagnostic paths that can be followed depending on the type of engine concern. Carry out Inspection and Verification - Engine Performance or Inspection and Verification - NVH .

  1. Verify the customer concern.
  2. Visually inspect for obvious signs of mechanical or electrical damage.
  3. If an obvious cause for an observed or reported concern is found, correct the cause (if possible) before proceeding to the next step.
  4. If the cause is not visually evident, connect the scan tool to the DLC.
  5. If the scan tool does not communicate with the VCM : check the VCM connection to the vehicle. check the scan tool connection to the VCM. check for No Power To The Scan Tool, to diagnose no power to the scan tool. REFER to: «COMMUNICATIONS NETWORK»(/ford/focus-st/iii-2012-2015/remont/communication-devices/#module-communications-network-except-electric) .
  6. If the scan tool does not communicate with the vehicle: verify the ignition key is in the ON position. verify the scan tool operation with a known good vehicle. to diagnose no response from the PCM. REFER to: «COMMUNICATIONS NETWORK»(/ford/focus-st/iii-2012-2015/remont/communication-devices/#module-communications-network-except-electric) .
  7. Carry out the network test. If the scan tool responds with no communication for one or more modules, REFER to: «COMMUNICATIONS NETWORK»(/ford/focus-st/iii-2012-2015/remont/communication-devices/#module-communications-network-except-electric) . If the network test passes, retrieve and record continuous memory DTCs.
  8. Clear the continuous DTCs and carry out the self-test diagnostics for the PCM.
  9. If the DTCs retrieved are related to the concern, go to the DTC Chart. REFER to: «ELECTRONIC ENGINE CONTROLS»(/ford/focus-st/iii-2012-2015/remont/removal-installation/#electronic-engine-controls-20l-duratec-he) (2.0L Duratec-HE) . or REFER to: «ELECTRONIC ENGINE CONTROLS»(/ford/focus-st/iii-2012-2015/remont/removal-installation/#electronic-engine-controls-20l-ecoboost) (2.0L EcoBoost) .
  10. If no DTCs related to the concern are retrieved, GO to «Symptom Chart - Engine Performance»(/ford/focus-st/iii-2012-2015/remont/mechanical/#engine-system-general-information__symptom-chart-engine-performance) .

Inspection and Verification - NVH

  1. NVH symptoms should be identified using the diagnostic tools and techniques that are available. For a list of these techniques, tools, an explanation of their uses and a glossary of common terms, REFER to: «NOISE, VIBRATION AND HARSHNESS (NVH)»(/ford/focus-st/iii-2012-2015/remont/oem-general-information/#noise-vibration-harshness-except-electric) . Since it is possible that any one of multiple systems may be the cause of the symptom, it may be necessary to use a process of elimination type of diagnostic approach to pinpoint the responsible system.
  2. Verify the customer concern by operating the engine to duplicate the condition.
  3. Check the engine oil level and check the oil for contamination. Low engine oil level or contaminated oil are a common cause of engine noise. If the oil is contaminated, the source of the contamination must be identified and repaired as necessary.
  4. Visually inspect for obvious signs of mechanical damage.
  5. If the inspection reveals obvious concerns that can be readily identified, repair as necessary.
  6. If the cause is not visually evident, connect the scan tool to the DLC.
  7. If the scan tool does not communicate with the VCM : check the VCM connection to the vehicle. check the scan tool connection to the VCM. check for No Power To The Scan Tool, to diagnose no power to the scan tool. REFER to: «COMMUNICATIONS NETWORK»(/ford/focus-st/iii-2012-2015/remont/communication-devices/#module-communications-network-except-electric) .
  8. If the scan tool does not communicate with the vehicle: verify the ignition key is in the ON position. verify the scan tool operation with a known good vehicle. to diagnose no response from the PCM. REFER to: «COMMUNICATIONS NETWORK»(/ford/focus-st/iii-2012-2015/remont/communication-devices/#module-communications-network-except-electric) .
  9. Carry out the network test. If the scan tool responds with no communication for one or more modules, REFER to: «COMMUNICATIONS NETWORK»(/ford/focus-st/iii-2012-2015/remont/communication-devices/#module-communications-network-except-electric) . If the network test passes, retrieve and record continuous memory DTCs.
  10. Clear the continuous DTCs and carry out the self-test diagnostics for the PCM.
  11. If the DTCs retrieved are related to the concern, go to the DTC Chart. REFER to: «ELECTRONIC ENGINE CONTROLS»(/ford/focus-st/iii-2012-2015/remont/removal-installation/#electronic-engine-controls-20l-duratec-he) (2.0L Duratec-HE) . or REFER to: «ELECTRONIC ENGINE CONTROLS»(/ford/focus-st/iii-2012-2015/remont/removal-installation/#electronic-engine-controls-20l-ecoboost) (2.0L EcoBoost) .
  12. If no DTCs related to the concern are retrieved, continue the inspection and verification if a noise concern is related to the engine. For vibration concerns and noise concerns such as powertrain mounts, air intake system and starter GO to «Symptom Chart - NVH»(/ford/focus-st/iii-2012-2015/remont/mechanical/#engine-system-general-information__symptom-chart-nvh) .

In some cases, a noise may be a normal characteristic of that engine type. In other cases the noise may require further investigation. Comparing the noise to a similar year/model vehicle equipped with the same engine will aid in determining if the noise is normal or abnormal.

Once a customer concern has been identified as an abnormal engine noise, it is critical to determine the location of the specific noise. Use the EngineEAR/ChassisEAR or stethoscope (the noise will always be louder closer to the noise source) to isolate the location of the noise to one of the following areas.

  1. Fuel injector(s)
  2. Upper end of engine
  3. Lower end of engine
  4. Front of engine
  5. Rear of engine

Fuel injector noise

A common source of an engine ticking noise can be related to the fuel injection pump Gasoline Turbocharged Direct Injection (GTDI) engine or fuel injector(s). This is normal engine noise that can be verified by listening to another vehicle. If the injector noise is excessive or irregular, use the EngineEAR/ChassisEAR or stethoscope to isolate the noise to a specific fuel injector.

Upper end engine noise

A common source of upper end engine noise (ticking, knocking or rattle) include the camshaft(s) and valve train. Upper end engine noise can be determined using the EngineEAR/ChassisEAR or stethoscope on the valve cover bolts. If the noise is loudest from the valve cover bolts, then the noise is upper end. The EngineEAR/ChassisEAR or stethoscope can be used to further isolate the noise to the specific cylinder bank and cylinder. Removal of the valve covers will be required to pinpoint the source of the noise.

Lower end engine noise

A common source of lower end engine noise (ticking or knocking) include the crankshaft, connecting rod(s) and bearings. Lower end noises can be determined by using the oil pan or lower cylinder block. If the noise is loudest from these areas, then the noise is lower end. If an engine noise is isolated to the lower end, some disassembly of the engine may be required to inspect for damage or wear.

Front of engine noise

A common source of noise from the front of the engine (squeal, chirp, whine or hoot) is the FEAD components. To isolate FEAD noise, carry out the Engine Accessory Test.

Some other noises from the front of the engine (ticking, tapping or rattle) may be internal to the engine. Use the EngineEAR/ChassisEAR or stethoscope on the engine front cover to determine if the noise is internal to the engine. Removal of the engine front cover may be necessary to inspect internal engine components.

Rear of engine noise

A common source of noise from the rear of the engine (knocking) is the flywheel/flexplate. Inspection of the flywheel/flexplate will be necessary.

Turbocharger noise (Gasoline Turbocharged Direct Injection (GTDI) engine)

A common source of noise is the turbocharger. Some whine or air rush noise is an acceptable condition.

  1. After the noise is localized, note the characteristics of the noise, including type of noise, frequency and conditions when the noise occurs and GO to «Symptom Chart - NVH»(/ford/focus-st/iii-2012-2015/remont/mechanical/#engine-system-general-information__symptom-chart-nvh) .

Symptom Chart - Engine Performance

SymptomPossible SourcesAction
Difficult startingInoperative or damaged ignition system Air or vacuum leak Inoperative or damaged fuel system Inoperative or damaged starting systemRefer to the appropriate Engine article(s) for the procedure. INTRODUCTION - GASOLINE MODELS
Damaged charging system/ batteryREFER to: CHARGING SYSTEM - 2.0L DURATEC-HE . or REFER to: CHARGING SYSTEM - 2.0L ECOBOOST .
Burnt valveINSTALL a new cylinder head. TEST the system for normal operation after the repair.
Worn pistonINSTALL a new piston. TEST the system for normal operation after the repair.
Worn piston ringsINSTALL new piston rings. TEST the system for normal operation after the repair.
Worn cylinderINSTALL a new cylinder block. TEST the system for normal operation after the repair.
Damaged head gasketINSTALL a new cylinder head gasket. TEST the system for normal operation after the repair.
Inoperative or damaged cooling systemRefer to the appropriate Engine article(s) for the procedure.
Fail-safe cooling invoked (if equipped)INTRODUCTION - GASOLINE MODELS
Poor idlingVacuum leaks Inoperative or damaged EGR systemRefer to the appropriate Engine article(s) for the procedure. INTRODUCTION - GASOLINE MODELS
Inoperative or damaged ignition systemRefer to the appropriate Engine article(s) for the procedure.
Inoperative or damaged cooling system Inoperative or damaged fuel systemRefer to the appropriate Engine article(s) for the procedure.
Fail-safe cooling invoked (if equipped)INTRODUCTION - GASOLINE MODELS
Incorrect valve clearanceADJUST valve clearance. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Incorrect valve-to-valve seat contactINSTALL a new cylinder head. TEST the system for normal operation after the repair.
Damaged head gasketINSTALL a new cylinder head gasket. TEST the system for normal operation after the repair.
Engine runs roughInoperative or damaged fuel system Air or vacuum leaks EGR system fault Inoperative or damaged cooling system Inoperative or damaged ignition systemRefer to the appropriate Engine article(s) for the procedure.
Fail-safe cooling invoked (if equipped)INTRODUCTION - GASOLINE MODELS
Burnt or sticking valveINSTALL a new valve. TEST the system for normal operation after the repair.
Weak or broken valve springINSTALL a new valve spring. TEST the system for normal operation after the repair.
Carbon accumulation in combustion chamberELIMINATE carbon buildup. TEST the system for normal operation after the repair.
Excessive oil consumptionLeaking oilREPAIR oil leakage. TEST the system for normal operation after the repair.
Blocked or restricted turbocharger oil drain pipeINSPECT the turbocharger drain pipe. REPAIR as necessary. TEST the system for normal operation after the repair.
Damaged or collapsed air intake hoses and tubesTighten hoses clamps. INSPECT for damage and REPAIR as necessary. TEST the system for normal operation after the repair.
Damaged exhaust or exhaust leaks at turbocharger housing or exhaust manifold.INSPECT for leaks. Leaks can be detected audibility or visually, by a discoloration caused by escaping hot exhaust gases. REPAIR as necessary. TEST the system for normal operation after the repair.
Turbocharger oil seals leakingCARRY OUT the Turbocharger Internal Oil Leak Test. REFER to: TURBOCHARGER . TEST the system for normal operation after the repair.
Inoperative PCV systemREPAIR or INSTALL new components as necessary. TEST the system for normal operation after the repair.
Incorrect oilCHANGE oil to correct specification. TEST the system for normal operation after the repair.
Worn valve stem sealINSTALL a new valve stem seal. TEST the system for normal operation after the repair.
Worn valve stem or valve guideINSTALL a new cylinder head. TEST the system for normal operation after the repair.
Sticking piston ringsINSTALL new piston rings. TEST the system for normal operation after the repair.
Worn piston ring grooveINSTALL a new piston and piston pin. TEST the system for normal operation after the repair.
Worn piston or cylinderINSTALL a new piston or cylinder block. TEST the system for normal operation after the repair.
Oil in coolantLeaking head gasket Damaged cylinder block Damaged cylinder headINSPECT the engine components. INSTALL new engine components as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Leaking oil coolerINSPECT the oil cooler and seal for damage. INSTALL new components as necessary. Refer to the appropriate Engine article(s) for the procedure.
Coolant in oilLeaking head gasket Damaged cylinder block Damaged cylinder headINSPECT the engine components. INSTALL new engine components as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Insufficient powerInoperative or damaged ignition system Air intake system blockage Lubrication system blockage Inoperative or damaged fuel systemRefer to the appropriate Engine article(s) for the procedure. INTRODUCTION - GASOLINE MODELS
Turbocharger turbine or compressor wheel damageINSPECT the turbocharger. CARRY OUT the Check for Free Rotation - Off Vehicle. REFER to: TURBOCHARGER . TEST the system for normal operation after the repair.
Damaged exhaust or exhaust leaks at turbocharger housing or exhaust manifoldINSPECT for leaks. Leaks can be detected audibility or visually, by a discoloration caused by escaping hot exhaust gases. REPAIR as necessary. TEST the system for normal operation after the repair.
Malfunctioning turbocharger bypass valveINTRODUCTION - GASOLINE MODELS
Oil level too highDRAIN oil to correct level.
Incorrect engine oilINSTALL correct specification engine oil. TEST the system for normal operation after the repair.
Excessive accessory drive belt loading Inoperative or damaged cooling systemRefer to the appropriate Engine article(s) for the procedure.
Fail-safe cooling invoked (if equipped)INTRODUCTION - GASOLINE MODELS
Damaged or plugged exhaust systemINSPECT exhaust system. TEST the system for normal operation after the repair.
Incorrect tire sizeREFER to: SUSPENSION SYSTEM .
Dragging brakesREFER to: BRAKE SYSTEM .
Slipping transmissionRefer to the appropriate Automatic Transmission article(s) for the procedure.
Slipping clutchRefer to the appropriate Manual Transmission article(s) for the procedure.
Incorrect valve clearanceADJUST valve clearance. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Worn or damaged valve tappetINSTALL a new valve tappet. TEST the system for normal operation after the repair.
Damaged valve guide Compression leakage at valve seat Seized valve stemINSTALL a new cylinder head assembly. TEST the system for normal operation after the repair.
Weak or broken valve springINSTALL a new valve spring. TEST the system for normal operation after the repair.
Worn or damaged camINSTALL a new camshaft. TEST the system for normal operation after the repair.
Damaged head gasketINSTALL a new head gasket. TEST the system for normal operation after the repair.
Cracked or distorted cylinder headINSTALL a new cylinder head assembly. TEST the system for normal operation after the repair.
Damaged, worn or sticking piston ring(s)INSTALL a new piston ring(s). TEST the system for normal operation after the repair.
Worn or damaged pistonINSTALL a new piston and piston pin. TEST the system for normal operation after the repair.
Engine emits excessive black smoke (black/blue/white)Clogged Air Cleaner (ACL) elementINSTALL a new ACL element. TEST the system for normal operation after the repair.
Incorrect type or grade of oilDRAIN and FILL with specified oil.
Blocked or restricted turbocharger oil drain pipeINSPECT the turbocharger oil drain pipe. REPAIR as necessary. TEST the system for normal operation after the repair.
Damaged/restricted or leaking turbocharger intake tube assemblyREPAIR or INSTALL a new tube as necessary. TEST the system for normal operation after the repair.
Engine wear (piston rings, valve guides)REPAIR as necessary. TEST the system for normal operation after the repair.
Plugged crankcase ventilation systemVisually INSPECT the crankcase ventilation system.
Turbocharger oil seals leakingCARRY OUT the Turbocharger Internal Oil Leak Test. REFER to: TURBOCHARGER . TEST the system for normal operation after the repair.

SYMPTOM CHART - ENGINE PERFORMANCE

Symptom Chart - NVH

SymptomPossible SourcesAction
Drone type noisePowertrain mount(s)CARRY OUT the Powertrain/Drivetrain Mount Neutralizing procedure. REFER to: Powertrain/Drivetrain Mount Neutralizing . TEST the system for normal operation after the repair.
Drumming noise - occurs inside the vehicle during idle or high idle, hot or cold. Very low-frequency drumming is very rpm dependentEngine vibration excites the body resonances inducing interior noiseCARRY OUT the Powertrain/Drivetrain Mount Neutralizing procedure. REFER to: Powertrain/Drivetrain Mount Neutralizing . TEST the system for normal operation after the repair.
Engine drumming noise - accompanied by vibrationPowertrain mount(s)CARRY OUT the Powertrain/Drivetrain Mount Neutralizing procedure. REFER to: Powertrain/Drivetrain Mount Neutralizing . TEST the system for normal operation after the repair.
Rattle - occurs at idle or at light acceleration from a stopPowertrain mount(s)CHECK the powertrain mounts for damage. INSTALL new mounts as necessary. For engine, Refer to the appropriate Engine article(s) for the procedure. For transaxle, Refer to the appropriate Automatic Transmission article(s) or Manual Transmission article(s) for the procedure. TEST the system for normal operation after the repair.
Whine/moan type noise - pitch increases or changes with vehicle speedPowertrain mount(s)CHECK the powertrain mounts for damage. INSTALL new mounts as necessary. For engine, Refer to the appropriate Engine article(s) for the procedure. For transaxle, Refer to the appropriate Automatic Transmission article(s) or Manual Transmission article(s) for the procedure. TEST the system for normal operation after the repair.
Clunk - occurs when shifting from PARK or between REVERSE and DRIVEPowertrain mountsCHECK the powertrain mounts for damage. INSTALL new mounts as necessary. For engine, Refer to the appropriate Engine article(s) for the procedure. For transaxle, Refer to the appropriate Automatic Transmission article(s) or Manual Transmission article(s) for the procedure. TEST the system for normal operation after the repair.
Idle speed is too highCHECK for the correct idle speed. TEST the system for normal operation after the repair.
Accessory drive bearing hoot - occurs at idle or high idle in cold temperatures of approximately 4°C (40°F) or colder at the first start of the dayAccessory drive idler or tensioner pulley bearing is experiencing stick/slip between ball bearings and the bearing raceCARRY OUT the Engine Cold Soak procedure. REFER to: NOISE, VIBRATION AND HARSHNESS (NVH) . PLACE the EngineEAR probe directly on the idler/ tensioner center post or bolt to verify which bearing is making the noise. INSTALL new parts as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Accessory drive belt noise, squeal or chirpingDefective/worn or incorrect accessory drive belt Misaligned pulley(s) Pulley runout Damaged or worn accessory drive component or idler Fluid contamination of the accessory drive belt or pulleys Damaged or worn accessory drive belt tensioner Damaged pulley groovesCARRY OUT the Engine Accessory Test. REFER to: NOISE, VIBRATION AND HARSHNESS (NVH) . INSPECT components and INSTALL new parts as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Clunking noiseCoolant pump has excessive end play or imbalanceCHECK the coolant pump for excessive end play. INSPECT the coolant pump for imbalance with the drive belt off. INSTALL a new coolant pump as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Whine/hum - occurs when unlocking the vehicle or opening the door with the engine off Gasoline Turbocharged Direct Injection (GTDI) onlyFuel pump moduleAcceptable condition. Fuel pump module turns on before engine starts to prime the fuel system.
Whine or moaning noiseAir intake systemCHECK the air cleaner and ducts for correct fit. INSPECT the air intake system for leaks or damage. REPAIR as necessary. TEST the system for normal operation after the repair.
Whistling noise - normally accompanied with poor idle conditionAir intake systemCHECK the air intake ducts, air cleaner, throttle body and vacuum hoses for leaks and correct fit. REPAIR or ADJUST as necessary. TEST the system for normal operation after the repair.
Turbocharger intake tube assembly leakingREPAIR or INSTALL a new tube as necessary. TEST the system for normal operation after the repair.
Loose connections or damage to air intake hoses and tubesTIGHTEN hose clamps. INSPECT for damage and REPAIR as necessary. TEST the system for normal operation after the repair.
Air leaks at turbine housing, blown joints or damaged exhaustINSPECT for leaks. Leaks can usually be detected audibility or visually, by a discoloration caused by escaping hot exhaust gases. REPAIR as necessary. TEST the system for normal operation after the repair.
Carbon build up in the turbine housingINSPECT the turbocharger. CARRY OUT the Check for Free Rotation - Off Vehicle. REFER to: TURBOCHARGER . TEST the system for normal operation after the repair.
Turbocharger imbalance due to foreign object/damageREPAIR as necessary. TEST the system for normal operation after the repair.
Turbine bearing failureINSPECT the turbocharger. CARRY OUT the Check for Free Rotation - Off Vehicle. REFER to: TURBOCHARGER . TEST the system for normal operation after the repair.
Inoperative turbocharger bypass valveINTRODUCTION - GASOLINE MODELS
Whine or air rush type noiseTurbochargerAcceptable condition. Some whine or air noise is common.
Chirp or whoosh soundTurbocharger bypass valveCHECK the turbocharger bypass valve. REPAIR as necessary. TEST the system for normal operation after the repair.
Hissing noise - occurs during idle or high idle that is apparent with the hood openVacuum leakUse the Ultrasonic Leak Detector/EngineEAR to locate the source. Scan the air intake system from the inlet to each cylinder intake port. DISCARD the leaking parts, and INSTALL a new component. TEST the system for normal operation after the repair.
Vehicles with a plastic intake manifoldAcceptable condition. Some plastic manifolds exhibit this noise, which is the effect of the plastic manifold.
Grinding noise - occurs during engine crankingIncorrect starter motor mountingINSPECT the starter motor for correct mounting. REPAIR as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Starter motorCHECK the starter motor. INSTALL a new starter motor as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Incorrect starter motor drive engagementINSPECT the starter motor drive for wear or damage. INSTALL a new starter motor as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair. INSPECT the flywheel/flexplate for wear or damage. INSTALL a new flywheel/flexplate as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Engine noise, front of engine - knocking noise from lower front of engineDamaged or separated crankshaft pulley/damperCHECK for obvious signs of damage or wobble during operation. INSTALL new as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Engine noise, front of engine - ticking, tapping or rattling noise from the front of the engineTiming drive componentsREMOVE the accessory drive belt. Refer to the appropriate Engine article(s) for the procedure. USE the EngineEAR to isolate the noise to the engine front cover. REMOVE the engine front cover and INSPECT the timing drive components. INSTALL new parts as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Engine noise, upper end - ticking noise near the fuel rail and intake manifoldFuel rail clip Fuel injectorCHECK for loose or damaged fuel rail clip(s). REPAIR as necessary. USE the EngineEAR to isolate the noisy injector(s). INSTALL a new injector(s) as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Fuel injection pump (GTDI only)This is a normal engine noise that can be verified by listening to another vehicle. If noise is excessive, REPAIR as necessary. TEST the system for normal operation after the repair.
Engine noise, upper end - ticking, knocking or rattle noise that occurs during idle or high idle during the first cold start of the day and may disappear as the engine warmsValve train noise (bled down lifter/lash adjuster)CARRY OUT the Valve Train Analysis . INSTALL new parts as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Engine noise, upper end - occurs mostly with a warm engine at light/medium accelerationWorn or damaged spark plugsREMOVE the spark plugs. INSPECT and INSTALL new as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Engine noise, upper end - rattling noise from the valve train. Worse when the engine is coldLow oil levelCHECK the oil level. FILL as necessary.
Thin or diluted oilINSPECT the oil for contamination. If the oil is contaminated, CHECK for the source. REPAIR as necessary. CHANGE the oil and filter. TEST the system for normal operation after the repair.
Low oil pressureCARRY OUT the Oil Pressure Test . If not within specifications, REMOVE the engine oil pan. Refer to the appropriate Engine article(s) for the procedure. INSPECT for a blocked oil pick up tube. TEST the system for normal operation after the repair.
Worn valve train componentsCARRY OUT the Valve Train Analysis . INSTALL new parts as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Worn valve guidesCARRY OUT the Valve Guide Inner Diameter procedure. REFER to: Valve Guide Inner Diameter .
Excessive runout of the valve seats on the valve faceINSPECT for abnormalities on the valve face and valve seat. INSTALL a new cylinder head assembly if abnormalities are found.
Engine noise, upper end - pinging noiseGasoline octane too lowVERIFY with customer the type of gasoline used. CORRECT as necessary. TEST the system for normal operation after the repair.
KS operationCHECK the KS operation. INSTALL a new KS. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Incorrect spark timingCHECK the spark timing. REPAIR as necessary. TEST the system for normal operation after the repair.
High operating temperatureINSPECT the cooling system for leaks. CHECK the coolant level. REFILL as necessary. CHECK the coolant for the correct mix ratio. DRAIN and REFILL as needed. VERIFY the engine operating temperature is within specifications. REPAIR as necessary. TEST the system for normal operation after the repair.
Spark plugCHECK the spark plugs. REPAIR or INSTALL new spark plugs as necessary. TEST the system for normal operation after the repair.
Catalytic converterCompare with a similar vehicle for what is acceptable noise.
Engine noise, lower end - ticking or knocking noise near the oil filter adapterOil pumpUSE the EngineEAR to verify the oil pump as the source of the noise at low rpm. REPAIR as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Engine noise, lower end - light knocking noise, also described as piston slap. Noise is most noticeable when the engine is cold with light to medium acceleration. The noise disappears as the engine warmsExcessive clearance between the piston and the cylinder wallCARRY OUT the Piston Diameter procedure. REFER to: Piston Diameter . Measure the cylinder bore diameter. Subtract the piston diameter from the cylinder bore diameter to find the piston-to-cylinder bore clearance. REFER to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for specifications.
Engine noise, lower end - light double knock or sharp rap sound. Occurs mostly with a warm engine at idle or low speeds in drive. Increases in relation to engine load. Associated with a poor lubrication historyExcessive clearance between the piston and the piston pinMEASURE the piston pin bore and the piston pin in 2 directions on each side. REFER to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for specifications.
Engine noise, lower end - light knocking noise. The noise is most noticeable when the engine is warm. The noise tends to decrease when the vehicle is coasting or in neutralExcessive clearance between the connecting rod bearings and the crankshaftCARRY OUT the Connecting Rod Bearing Journal Clearance procedure. REFER to: Connecting Rod Bearing Journal Clearance .
Engine noise, lower end - deep knocking noise. The noise is most noticeable when the engine is warm, at lower rpm and under a light load and then at floatWorn or damaged crankshaft main bearingsCARRY OUT the Crankshaft Main Bearing Journal Clearance procedure. REFER to: Crankshaft Main Bearing Journal Clearance .
Engine noise, rear of engine - knocking noise at rear of engineDamaged flywheel/flexplateINSPECT the flywheel/flexplate for wear or damage. INSTALL a new flywheel/flexplate as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Engine vibration - vibration felt at all timesExcessive engine pulley runoutCARRY OUT the Engine Accessory Test. REFER to: NOISE, VIBRATION AND HARSHNESS (NVH) . INSTALL a new engine pulley as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Damaged or worn accessory componentCARRY OUT the Engine Accessory Test. REFER to: NOISE, VIBRATION AND HARSHNESS (NVH) . REPAIR or INSTALL a new component as necessary. TEST the system for normal operation after the repair.
Engine vibration - at idle, a low-frequency vibration (5-20 Hz) or mild shake that is felt through the seat/ floorpanCylinder misfireUsing the scan tool, CARRY OUT the cylinder power balance and the relative compression test. REPAIR as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Engine or torque converter out of balanceVERIFY the torque converter to crankshaft pilot clearance is correct. REPAIR as necessary. RE-INDEX the torque converter on the flex plate by 120 degrees for a 3- bolt converter or 180 degrees for a 4-bolt converter. Refer to the appropriate Automatic Transmission article(s) for the procedure. TEST the system for normal operation after the repair.
Engine vibration - is felt with increases and decreases in engine rpmPowertrain mount(s)CHECK the powertrain mounts for damage. INSTALL new mounts as necessary. For engine, Refer to the appropriate Engine article(s) for the procedure. For transaxle, Refer to the appropriate Automatic Transmission article(s) or Manual Transmission article(s) for the procedure. TEST the system for normal operation after the repair.
Engine or transmission grounded to chassisINSPECT the powertrain/ drivetrain for correct clearances. REPAIR as necessary. TEST the system for normal operation after the repair.
Engine vibration - increases intensity as the engine rpm is increasedEngine out-of-balanceCARRY OUT the NERU Test. REFER to: NOISE, VIBRATION AND HARSHNESS (NVH) . ROTATE the torque converter, 120 degrees for 3- bolt or 180 degrees for 4- bolt. INSPECT the torque converter pilot outer diameter-to-crankshaft pilot inner diameter. REPAIR as necessary. Refer to the appropriate Automatic Transmission article(s) or for the procedure. TEST the system for normal operation after the repair.
Engine vibration - mostly at coast/neutral coast. Condition improves with vehicle accelerationCombustion instabilityCHECK the ignition system. INSTALL new components as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Engine vibration or shudder - occurs with light to medium acceleration above 56 km/h (35 mph)Worn or damaged spark plugsINSPECT the spark plugs for cracks, high resistance or broken insulators. INSTALL a new spark plug(s) as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Plugged fuel injectorREPAIR or INSTALL a new injector as necessary. Refer to the appropriate Engine article(s) for the procedure. TEST the system for normal operation after the repair.
Contaminated fuelINSPECT the fuel for contamination. DRAIN the fuel system and refill. TEST the system for normal operation after the repair.

SYMPTOM CHART - NVH

Component Tests

The following component tests are used to diagnose engine concerns.

Engine Oil Leaks

Note. If an overnight drive is done, the fan air or road air blast can cause erroneous readings.

Note. When diagnosing engine oil leaks, the source and location of the leak must be positively identified prior to repair.

Prior to carrying out this procedure, clean the cylinder block, cylinder heads, valve covers, oil pan and flywheel/flexplate with a suitable solvent to remove all traces of oil.

Engine Oil Leaks - Fluorescent Oil Additive Method

Use the 12 Volt Master UV Diagnostic Inspection Kit to carry out the following procedure for oil leak diagnosis.

  1. Add 29.6 ml (1 oz) of gasoline engine oil dye to a minimum of 0.47L (1/2 qt) and a maximum of 0.95L (1 qt) engine oil and fill through the engine oil fill. Thoroughly premix the gasoline engine oil dye or it will not have enough time to reach the crankcase, oil galleries and seal surfaces during this particular 15 minute test. The additive must be mixed well with oil and added through the oil fill. Check the level on the oil level indicator to determine what amount of oil to premix. If it is in the middle of the crosshatch area or below the full mark, use 0.95L (1 qt). If it is at the full mark, use 0.47L (1/2 qt).
  2. Run the engine for 15 minutes. Stop the engine and inspect all seal and gasket areas for leaks using the UV Leak Detector Kit. A clear bright yellow or orange area will identify the leak. For extremely small leaks, several hours may be required for the leak to appear.
  3. At the end of test, make sure the oil level is within the upper and lower oil indicator marks. Remove oil as necessary if it registers above the full mark.

Leakage Points - Underhood

Examine the following areas for oil leakage

  1. Valve cover gaskets
  2. Cylinder head gaskets
  3. Oil cooler, if equipped
  4. Oil filter adapter
  5. Engine front cover
  6. Oil filter adapter and filter body
  7. Oil level indicator tube connection
  8. EOP switch

Leakage Points - Under Engine, With Vehicle on Hoist

Examine the following areas for oil leakage

  1. Oil pan gaskets
  2. Oil pan sealer
  3. Engine front cover gasket
  4. Crankshaft front seal
  5. Crankshaft rear oil seal
  6. Oil filter adapter and filter body
  7. Oil cooler, if equipped

Leakage Points - With Transmission and Flywheel/Flexplate Removed

Examine the following areas for oil leakage

  1. Crankshaft rear oil seal
  2. Rear main bearing cap parting line
  3. Flexplate mounting bolt holes (with flexplate installed)
  4. Pipe plugs at the end of oil passages

Compression Test

  1. Make sure the oil in the crankcase is of the correct viscosity and at the correct level and that the battery is correctly charged. Operate the vehicle until the engine is at normal operating temperature. Turn the ignition switch to the OFF position, then remove all the spark plugs.
  2. Set the throttle plates in the wide-open position.
  3. Install a compression gauge in the No. 1 cylinder.
  4. Install an auxiliary starter switch in the starting circuit. With the ignition switch in the OFF position, and using the auxiliary starter switch, crank the engine a minimum of 5 compression strokes and record the highest reading. Note the approximate number of compression strokes necessary to obtain the highest reading.
  5. Repeat the test on each cylinder, cranking the engine approximately the same number of compression strokes.

Compression Test - Test Results

The indicated compression pressures are considered within specification if the lowest reading cylinder is at least 75% of the highest reading. Refer to the Compression Pressure Limit Chart .

Scheme 1

Scheme 1: Compression Pressure Limit Chart

If one or more cylinders reads low, squirt approximately one tablespoon of engine oil meeting Ford specification on top of the pistons in the low-reading cylinders. Repeat the compression pressure check on these cylinders.

Compression Test - Interpreting Compression Readings

  1. If compression improves considerably, piston rings are worn or damaged.
  2. If compression does not improve, valves are sticking or not seating correctly.
  3. If 2 adjacent cylinders indicate low compression pressures and squirting oil on each piston does not increase compression, the head gasket may be leaking between cylinders. Engine oil or coolant in cylinders could result from this condition. Use the Compression Pressure Limit Chart when checking cylinder compression so the lowest reading is within 75% of the highest reading.

Cylinder Leakage Detection

When a cylinder produces a low reading, use of a cylinder leakage tester will be helpful in pinpointing the exact cause.

The leakage tester is inserted in the spark plug hole, the piston is brought up to TDC on the compression stroke, and compressed air is admitted.

Once the combustion chamber is pressurized, the leakage tester gauge will read the percentage of leakage. Leakage exceeding 20% is excessive.

While the air pressure is retained in the cylinder, listen for the hiss of escaping air. A leak at the intake valve will be heard in the Throttle Body (TB). A leak at the exhaust valve can be heard at the tailpipe. Leakage past the piston rings will be audible at the PCV connection. If air is passing through a blown head gasket to an adjacent cylinder, the noise will be evident at the spark plug hole of the cylinder into which the air is leaking. Cracks in the cylinder block or gasket leakage into the cooling system may be detected by a stream of bubbles in the radiator.

Excessive Engine Oil Consumption

Nearly all engines consume oil, which is essential for normal lubrication of the cylinder bore walls and pistons and rings. Determining the level of oil consumption may require testing by recording how much oil is being added over a given set of miles.

Customer driving habits greatly influence oil consumption. Mileage accumulated during towing or heavy loading generates extra heat. Frequent short trips, stop-and-go type traffic or extensive idling, prevent the engine from reaching normal operating temperature. This prevents component clearances from reaching specified operating ranges.

The following diagnostic procedure may be utilized to determine internal oil consumption. Make sure that the concern is related to internal oil consumption, and not external leakage, which also consumes oil. Verify there are no leaks before carrying out the test. Once verified, the rate of internal oil consumption can be tested.

A new engine may require extra oil in the early stages of operation. Internal piston-to-bore clearances and sealing characteristics improve as the engine breaks in. Engines are designed for close tolerances and do not require break-in oils or additives. Use the oil specified in the Owner's Literature. Ambient temperatures may determine the oil viscosity specification. Verify that the correct oil is being used for the vehicle in the geographic region in which it is driven.

Basic Pre-checks

  1. For persistent complaints of oil consumption, interview the customer to determine the oil consumption characteristics. If possible, determine the brand and grade of oil currently in the oil pan. Look at the oil filter or oil-change station tags to determine if Ford-recommended maintenance schedules have been followed. Make sure that the oil has been changed at the specified mileage intervals. If vehicle mileage is past the first recommended drain interval, the Original Equipment Manufacturer (OEM) production filter should have been changed.
  2. Ask how the most current mileage was accumulated. That is, determine whether the vehicle was driven under the following conditions: Extended idling or curbside engine operation Stop-and-go traffic or taxi operation Towing a trailer or vehicle loaded heavily Frequent short trips (engine not up to normal operating temperature) Excessive throttling or high engine-rpm driving
  3. Verify that there are no external leaks. If necessary, review the diagnostic procedure under «Engine Oil Leaks»(/ford/focus-st/iii-2012-2015/remont/mechanical/#engine-system-general-information__engine-oil-leaks) .
  4. Inspect the crankcase ventilation system for: disconnected hoses at the valve cover or TB. loose or missing valve cover fill cap. missing or incorrectly seated engine oil level indicator. incorrect or dirty PCV valve. a PCV valve grommet unseated in the valve cover (if so equipped).
  5. Inspect for signs of sludge. Sludge affects PCV performance and can plug or restrict cylinder head drainback wells. It can also increase oil pressure by restricting passages and reducing the drainback capability of piston oil control rings. Sludge can result from either excessive water ingestion in the crankcase or operation at extremely high crankcase temperatures.
  6. Inspect the air filter for dirt, sludge or damage. A hole in the filter element will allow unfiltered air to bypass into the air induction system. This can cause premature internal wear (engine dusting), allowing oil to escape past rings, pistons, valves and guides.
  7. If the engine is hot or was recently shut down, wait for a minimum 5-minutes for 2.0L GDI or minimum 10-minutes for 2.0L GTDI to allow the oil to drain back. Ask the customer if this requirement has been followed. Adding oil without this wait period can cause an overfill condition, leading to excessive oil consumption and foaming which may cause engine damage.
  8. Make sure the oil level indicator (dipstick) is correctly and fully seated in the indicator tube. Remove the oil level indicator and record the oil level.

Detailed Pre-checks

  1. Check the thermostat opening temperature to make sure that the cooling system is operating at the specified temperature. If it is low, internal engine parts are not running at specified internal operating clearances.
  2. Verify the spark plugs are not oil saturated. Oil leaking into one or more cylinders will appear as an oil soaked condition on the plug. If a plug is saturated, a compression check may be necessary at the conclusion of the oil consumption test.

Oil Consumption Test

  1. Drain the engine oil and remove the oil filter. Install a new manufacturer-specified oil filter. Make sure the vehicle is positioned on a level surface. Refill the oil pan to a level one liter (quart) less than the specified fill level, using manufacturer-specified oil.
  2. Run the engine for 3 minutes (if hot) or 10 minutes (if cold). Allow for a minimum 5-minutes for 2.0L GDI or minimum 10-minutes for 2.0L GTDI drainback period and then record the oil level shown on the oil level indicator. Place a mark on the backside of the oil level indicator noting the oil level location.
  3. Add the final one liter (quart) to complete the normal oil fill. Restart the engine and allow it to idle for 2 minutes. Shut the engine down.
  4. After a minimum 5-minutes for 2.0L GDI or minimum 10-minutes for 2.0L GTDI drainback period, record the location of the oil level again. Mark the oil level indicator with the new oil level location. (Note: Both marks should be very close to the MIN-MAX upper and lower limits or the upper and lower holes on the oil level indicator. These marks will exactly measure the engine's use of oil, with a one quart differential between the new marks.) Demonstrate to the customer that the factory-calibrated marks on the oil level indicator are where the oil should fall after an oil change with the specified fill amount. Explain however, that this may vary slightly between MIN-MAX or the upper and lower holes on the oil level indicator.
  5. Record the vehicle mileage.
  6. Advise the customer that oil level indicator readings must be taken every 320 km (200 mi) or weekly, using the revised marks as drawn. Remind the customer that the engine needs a minimum 5-minutes for 2.0L GDI or minimum 10-minutes for 2.0L GTDI drainback period for an accurate reading and that the oil level indicator must be firmly seated in the tube prior to taking the reading.
  7. When the subsequent indicator readings demonstrate a full liter (quart) has been used, record the vehicle mileage. The mileage driven should not be less than 2, 414 km (1, 500 mi). The drive cycle the vehicle has been operated under must be considered when making this calculation. It may be necessary to have the customer bring the vehicle in for a periodic oil level indicator reading to closely monitor oil usage.

Post Checks, Evaluation and Corrective Action

  1. If test results indicate excessive oil consumption, carry out a cylinder compression test. The cylinder compression test should be carried out with a fully charged battery and all spark plugs removed. See the «Compression Pressure Limit Chart»(/ford/focus-st/iii-2012-2015/remont/mechanical/#engine-system-general-information) for pressure range limits.
  2. Compression should be consistent across all cylinders. Refer to the «Compression Test»(/ford/focus-st/iii-2012-2015/remont/mechanical/#engine-system-general-information__compression-test) . If compression tested within the specifications found in this service information, the excessive oil consumption may be due to wear on the valve guides, valves or valve seals.
  3. A cylinder leak detection test can be carried out using a cylinder leakage detector. This can help identify valves, piston rings, or worn valve guides/valve stems, inoperative valve stem seals or other related areas as the source of oil consumption.
  4. If an internal engine part is isolated as the root cause, determine if the repair will exceed cost limits and proceed with a repair strategy as required.
  5. Once corrective action to engine is complete and verifying that all pre-check items were eliminated in the original diagnosis, repeat the «Oil Consumption Test»(/ford/focus-st/iii-2012-2015/remont/mechanical/#engine-system-general-information__oil-consumption-test) as described above and verify consumption results.

Intake Manifold Vacuum Test

Bring the engine to normal operating temperature. Connect the Vacuum/Pressure Tester to the intake manifold. Run the engine at the specified idle speed.

The vacuum gauge should read between 51-74 kPa (15-22 in-Hg) depending upon the engine condition and the altitude at which the test is conducted. Subtract 4.0193 kPa (1 in-Hg) from the specified reading for every 304.8 m (1, 000 feet) of elevation above sea level.

The reading should be steady. If necessary, adjust the gauge damper control (where used) if the needle is fluttering rapidly. Adjust the damper until the needle moves easily without excessive flutter.

Intake Manifold Vacuum Test - Interpreting Vacuum Gauge Readings

A careful study of the vacuum gauge reading while the engine is idling will help pinpoint trouble areas. Always conduct other appropriate tests before arriving at a final diagnostic decision. Vacuum gauge readings, although helpful, must be interpreted carefully.

Most vacuum gauges have a normal band indicated on the gauge face. The following are potential gauge readings. Some are normal; others should be investigated further.

The following are potential gauge readings. Some are normal; others should be investigated further.

Scheme 2

Scheme 2: Intake Manifold Vacuum Test - Interpreting Vacuum Gauge Readings
  1. NORMAL READING: Needle between 51-74 kPa (15-22 in-Hg) and holding steady.
  2. NORMAL READING DURING RAPID ACCELERATION AND DECELERATION: When the engine is rapidly accelerated (dotted needle), the needle will drop to a low reading (not to zero). When the throttle is suddenly released, the needle will snap back up to a higher than normal figure.
  3. NORMAL FOR HIGH-LIFT CAMSHAFT WITH LARGE OVERLAP: The needle will register as low as 51 kPa (15 in-Hg) but will be relatively steady. Some oscillation is normal.
  4. WORN RINGS OR DILUTED OIL: When the engine is accelerated (dotted needle), the needle drops to 0 kPa (0 in-Hg). Upon deceleration, the needle runs slightly above 74 kPa (22 in-Hg).
  5. STICKING VALVES: When the needle (dotted) remains steady at a normal vacuum but occasionally flicks (sharp, fast movement) down and back about 13 kPa (4 in-Hg), one or more valves may be sticking.
  6. BURNED OR WARPED VALVES: A regular, evenly-spaced, downscale flicking of the needle indicates one or more burned or warped valves. Insufficient valve clearance will also cause this reaction.
  7. POOR VALVE SEATING: A small but regular downscale flicking can mean one or more valves are not seating.
  8. WORN VALVE GUIDES: When the needle oscillates over about a 13 kPa (4 in-Hg) range at idle speed, the valve guides could be worn. As engine speed increases, the needle will become steady if guides are responsible.
  9. WEAK VALVE SPRINGS: When the needle oscillation becomes more violent as engine rpm is increased, weak valve springs are indicated. The reading at idle could be relatively steady.
  10. LATE VALVE TIMING: A steady but low reading could be caused by late valve timing.
  11. IGNITION TIMING RETARDING: Retarded ignition timing will produce a steady but somewhat low reading.
  12. INSUFFICIENT SPARK PLUG GAP: When spark plugs are gapped too close, a regular, small pulsation of the needle can occur.
  13. INTAKE LEAK: A low, steady reading can be caused by an intake manifold or Throttle Body (TB) gasket leak.
  14. BLOWN HEAD GASKET: A regular drop of fair magnitude can be caused by a blown head gasket or warped cylinder head-to-cylinder block surface.
  15. RESTRICTED EXHAUST SYSTEM: When the engine is first started and is idled, the reading may be normal, but as the engine rpm is increased, the back pressure caused by a clogged muffler, kinked tailpipe or other concerns will cause the needle to slowly drop to 0 kPa (0 in-Hg). The needle then may slowly rise. Excessive exhaust clogging will cause the needle to drop to a low point even if the engine is only idling.

When vacuum leaks are indicated, search out and correct the cause. Excess air leaking into the system will upset the fuel mixture and cause concerns such as rough idle, missing on acceleration or burned valves. If the leak exists in an accessory unit such as the power brake booster, the unit will not function correctly. Always fix vacuum leaks.

Oil Pressure Test

  1. Disconnect and remove the EOP switch from the engine.
  2. Connect the EOP Gauge to the oil pressure sender oil galley port.
  3. Run the engine until normal operating temperature is reached.
  4. Run the engine at the specified rpm and record the gauge reading.
  5. The oil pressure should be within specifications, refer to the specification chart in the appropriate «ENGINE - 2.0L DURATEC-HE»(/ford/focus-st/iii-2012-2015/remont/mechanical/#engine-20l-duratec-he) or «ENGINE - 2.0L ECOBOOST»(/ford/focus-st/iii-2012-2015/remont/mechanical/#engine-20l-ecoboost) .
  6. If the pressure is not within specification, check the following possible sources: Insufficient oil Oil leakage Worn or damaged oil pump Oil pump screen cover and tube Excessive main bearing clearance Excessive connecting rod bearing clearance Chain tensioner leak

Valve Train Analysis

The following component tests are used to diagnose valve train concerns.

Valve Train Analysis - Engine Off, Valve Cover Removed

Check for damaged or severely worn parts and correct assembly. Make sure correct parts are used with the static engine analysis as follows.

Valve Train Analysis - Camshafts and Valve Tappets

  1. Check for broken or damaged parts.
  2. Check for loose mounting bolts on camshaft caps.
  3. Check for worn or damaged valve tappets.

Valve Train Analysis - Valve Springs, Valve Tappets Removed

  1. Check for broken or damaged parts.

Valve Train Analysis - Valve Spring Retainer and Valve Spring Retainer Keys, Valve Tappets Removed

  1. Check for correct seating of the valve spring retainer key on the valve stem and in valve spring retainer.
  2. Check for correct seating on the valve stem.

Valve Train Analysis - Valves and Cylinder Head, Valve Tappets Removed

  1. Check for plugged oil drain back holes.
  2. Check for worn or damaged valve tips.
  3. Check for missing or damaged valve stem seals or guide-mounted valve stem seal.
  4. Check for missing or worn valve spring seats.

Valve Train Analysis - Camshaft Lobe Lift

Check the lift of each camshaft lobe in consecutive order and make a note of the readings.

Scheme 3

Scheme 3: Valve Train Analysis - Camshaft Lobe Lift
  1. Remove the spark plugs. Refer to the appropriate «ENGINE IGNITION - 2.0L DURATEC-HE»(/ford/focus-st/iii-2012-2015/remont/ignition-system/#engine-ignition-20l-duratec-he) or «ENGINE IGNITION - 2.0L ECOBOOST»(/ford/focus-st/iii-2012-2015/remont/ignition-system/#engine-ignition-20l-ecoboost) .
  2. Install the Dial Indicator Gauge with Holding Fixture so the rounded tip of the dial indicator is on top of the camshaft lobe and on the same plane as the valve tappet.
  3. Rotate the crankshaft using a breaker bar and socket attached to the crankshaft pulley retainer bolt. Rotate the crankshaft until the base circle of the camshaft lobe is reached.
  4. Zero the dial indicator. Continue to rotate the crankshaft until the high-lift point of the camshaft lobe is in the fully raised position (highest indicator reading).
  5. To check the accuracy of the original dial indicator reading, continue to rotate crankshaft until the base circle is reached. The indicator reading should be zero. If zero reading is not obtained, repeat Steps 2 through 5.
  6. If the lift on any lobe is below specified service limits, install a new camshaft and valve tappets.
  7. Install the spark plugs. Refer to the appropriate «ENGINE IGNITION - 2.0L DURATEC-HE»(/ford/focus-st/iii-2012-2015/remont/ignition-system/#engine-ignition-20l-duratec-he) or «ENGINE IGNITION - 2.0L ECOBOOST»(/ford/focus-st/iii-2012-2015/remont/ignition-system/#engine-ignition-20l-ecoboost) .

Bearing Inspection

  1. Cratering - fatigue failure Spot glazing - incorrect seating Scratching - dirty engine oil Base exposed - poor lubrication Both edges worn - journal damaged One edge worn - journal tapered or bearing not seated

Scheme 4

Scheme 4

Connecting Rod Bearing Journal Clearance

Note. Refer to the appropriate ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

Scheme 5

Scheme 5: Connecting Rod Bearing Journal Clearance
  1. Remove the connecting rod bearing cap and connecting rod bearing.
  2. Position a piece of Plastigage across the bearing surface.
  3. Install and tighten to specifications, then remove the connecting rod bearing cap.
  4. Measure the Plastigage to get the connecting rod bearing journal clearance. The Plastigage should be smooth and flat. A changing width indicates a tapered or damaged connecting rod or connecting rod bearing.

Scheme 6

Scheme 6

Crankshaft Main Bearing Journal Clearance

Note. Refer to the appropriate ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

Scheme 7

Scheme 7: Crankshaft Main Bearing Journal Clearance
  1. Remove the crankshaft main bearing cap and crankshaft main bearing.
  2. Position a piece of Plastigage across the crankshaft main bearing surface.
  3. Install and tighten to specifications, then remove the crankshaft main bearing cap.
  4. Measure the Plastigage to get the crankshaft main bearing clearance. The Plastigage should be smooth and flat. A changing width indicates a tapered or damaged crankshaft or crankshaft bearing.

Scheme 8

Scheme 8

Cylinder Block Core Plug Replacement

SPECIAL TOOL(S) / GENERAL EQUIPMENT 100-001 Slide Hammer

Scheme 9

Scheme 9: Cylinder Block Core Plug Replacement
NameSpecification
Threadlock and Sealer TA-25WSK-M2G351-A5

MATERIALS SPECIFICATIONS

All core plugs

  1. Using the Slide Hammer and a commercially available body dent puller attachment or commercially available freeze plug puller remove the core plug. Special Tool(s) : 100-001 (Slide Hammer)
  2. Inspect the core plug bore for any damage that would interfere with the correct sealing of the plug. If the core plug bore is damaged, bore for the next oversize plug. Cup-type
  3. Coat the cup-type core plug and bore lightly with sealant and install the core plug using a freeze plug installer. Remove the excess sealant after installation. Material : Threadlock and Sealer / TA-25 (WSK-M2G351-A5) Expansion-type
  4. Coat the expansion-type core plug and bore lightly with sealant and install the core plug using a freeze plug installer. Remove the excess sealant after installation. Material : Threadlock and Sealer / TA-25 (WSK-M2G351-A5)

Cylinder Block Distortion

Feeler Gauge

SPECIAL TOOL(S) / GENERAL EQUIPMENT

Note. Refer to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

  1. Use a Straightedge and a Feeler Gauge Set to inspect the cylinder block for flatness. General Equipment : Feeler Gauge

Scheme 10

Scheme 10

Cylinder Bore Taper

Note. Refer to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

  1. Measure the cylinder bore at the top, middle and bottom of piston ring travel in 2 directions as indicated. Verify the cylinder bore is within the wear limit. The difference indicates the cylinder bore taper. If the cylinder bore taper does not meet specification, bore the cylinder to the next oversize limit.

Scheme 11

Scheme 11

Cylinder Head Distortion

Feeler Gauge

SPECIAL TOOL(S) / GENERAL EQUIPMENT

Note. Refer to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

  1. Using a Straightedge and a Feeler Gauge Set, inspect the cylinder head for flatness in the sequence shown in illustration. General Equipment : Feeler Gauge

Scheme 12

Scheme 12

Exhaust Manifold Cleaning and Inspection

Feeler Gauge

SPECIAL TOOL(S) / GENERAL EQUIPMENT

  1. Clean the exhaust manifold using a suitable solvent. Use a plastic scraping tool to clean the gasket sealing surfaces.
  1. Using the Straightedge and a Feeler Gauge Set, check the exhaust manifold sealing surface for warpage. If the warpage is greater than 0.76 mm (0.0299 in), install a new exhaust manifold. General Equipment : Feeler Gauge

Scheme 13

Scheme 13

Piston Diameter

Note. Refer to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

  1. Measure the piston diameter 90 degrees from the piston pin and 41 mm (1.61 in) down from the top of the piston at the point indicated.

Scheme 14

Scheme 14

Piston Inspection

  1. Clean and inspect the (1) ring lands, (2) pin bosses, (3) skirts and the (4) tops of the pistons. If wear marks, scores or glazing is found on the piston skirt, check for a bent or twisted connecting rod.
  2. Using a Piston Ring Groove Scraper, clean the piston ring grooves.

Scheme 15

Scheme 15

Piston Ring End Gap

Feeler Gauge

SPECIAL TOOL(S) / GENERAL EQUIPMENT

Note. Refer to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

  1. Use a piston without rings to push a piston ring in a cylinder to the bottom of ring travel.
  2. Using the Feeler Gauge Set measure the top piston ring end gap and the second piston ring end gap General Equipment : Feeler Gauge

Scheme 16

Scheme 16

Piston Selection

Note. Refer to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

  1. NOTE: The cylinder bore must be within the specifications for taper and out-of-round before fitting a piston. Measure the cylinder bore in 2 directions. Select a piston size based on the cylinder bore.
  2. Choose the piston with the correct paint color or specific size grade.

Valve Guide Inner Diameter

Note. Refer to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

  1. NOTE: Valve guides tend to wear in an hourglass pattern. The ball gauge can be inserted into the combustion chamber side of the valve guide, if necessary. Use a ball gauge to determine the inside diameter of the valve guides in 2 directions at the top, middle and bottom of the valve guide. Measure the ball gauge with a micrometer. If the valve guide is not within specifications, install a new cylinder head assembly.

Scheme 17

Scheme 17

Valve Stem Diameter

Note. Refer to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification.

  1. Measure the diameter of each intake and exhaust valve stem at the points shown in illustration. Verify the diameter is within specification.

Scheme 18

Scheme 18

Flywheel Inspection

SPECIAL TOOL(S) / GENERAL EQUIPMENT 100-002 Holding Fixture with Dial Indicator Gauge 303-103 Holding Tool, Flywheel TKIT-2009TC-F

Scheme 19

Scheme 19: Flywheel Inspection

Note. Do not clean the dual mass flywheel with any kind of fluid, use a dry cloth only or damage to the dual mass flywheel may occur.

Note. Do not clean the gap between the primary and secondary mass. Only clean the bolt connection surface and the clutch surface or damage to the flywheel may occur.

Scheme 20

Scheme 20

Scheme 21

Scheme 21

Scheme 22

Scheme 22

Scheme 23

Scheme 23

Scheme 24

Scheme 24

Scheme 25

Scheme 25

Scheme 26

Scheme 26

Scheme 27

Scheme 27

Scheme 28

Scheme 28
  1. With the dual mass flywheel installed on the engine, inspect the dual mass flywheel surface for scoring, cracks, discoloration or damage. If any of these conditions exist, install a new dual mass flywheel.
  2. Inspect the dual mass flywheel friction control plate for damage or melting. If any of these conditions exist, install a new dual mass flywheel.
  3. Place a reference mark on the secondary mass of the dual mass flywheel.
  4. Using light hand pressure, rotate the secondary mass clockwise to the end of the freeplay. Place a reference mark on the primary mass of the dual mass flywheel, in line with the reference mark on the secondary mass.
  5. Using light hand pressure, rotate the secondary mass counterclockwise to the end of the freeplay. Place a second reference mark on the secondary mass of the dual mass flywheel, in line with the reference mark on the primary mass.
  6. Measure the rotational freeplay between the 2 reference marks on the secondary mass of the dual mass flywheel. If the rotational freeplay exceeds 19 mm (0.750 in), install a new dual mass flywheel.
  7. Install the Special Tool(s) : 303-103 (Holding Tool, Flywheel)
  8. Using a suitable long screwdriver or bar, firmly rotate the secondary mass clockwise. The secondary mass should begin to engage the internal spring past the freeplay movement of 19 mm (0.750 in) maximum. The secondary mass should continue to rotate and engage the internal spring with increasing spring pressure. If the secondary mass does not rotate, install a new dual mass flywheel.
  9. Using a suitable long screwdriver or bar, firmly rotate the secondary mass counterclockwise. The secondary mass should begin to engage the internal spring past the freeplay movement of 19 mm (0.750 in) maximum. The secondary mass should continue to rotate and engage the internal spring with increasing spring pressure. If the secondary mass does not rotate, install a new dual mass flywheel.
  10. Remove the dual mass flywheel and place it on a firm and level surface.
  11. Using the Dial Indicator Gauge with Holding Fixture, inspect the dual mass flywheel hub bushing for wear. Special Tool(s) : 100-002 (Holding Fixture with Dial Indicator Gauge) Place a dial indicator gauge at a point on the outer upper surface of the secondary mass. Using light hand pressure, press downward at the opposite point on the outer upper surface of the secondary mass and note the deflection on the dial indicator gauge. Repeat this measurement at 120 degree intervals around the dual mass flywheel and note any deflection. If the deflection exceeds 1.5 mm (0.060 in) at any point, install a new dual mass flywheel.
  12. Verify that the 2 engine dowel pins are correctly installed and are not damaged, install new dowel pins as necessary. Inspect the crankshaft flange for residual thread locking compound or rust, and clean as necessary.
  13. Loosely install the dual mass flywheel.
  14. Install the Special Tool(s) : 303-103 (Holding Tool, Flywheel)
  15. Torque : 112 Nm
  16. Remove the Special Tool(s) : 303-103 (Holding Tool, Flywheel)

Powertrain/Drivetrain Mount Neutralizing

Note. Refer to the ENGINE - 2.0L DURATEC-HE or ENGINE - 2.0L ECOBOOST for the specification and procedure for special instructions on loosening and tightening mount fasteners.

  1. With the vehicle in NEUTRAL, position it on a hoist. Refer to: «JACKING AND LIFTING - OVERVIEW»(/ford/focus-st/iii-2012-2015/remont/hoistjack/#jacking-lifting-except-electric) .
  2. Loosen, but do not remove, the powertrain/drivetrain mount fasteners.
  3. Lower the vehicle.
  4. Start the vehicle and move it in forward 0.6 m (1.97 ft) - 1.2 m (3.94 ft). Then move the vehicle in reverse the same distance.
  5. Raise and support the vehicle.
  6. Tighten the powertrain/drivetrain mount fasteners.
  7. Lower the vehicle.
  8. Test the system for normal operation.

See also:
IDENTIFICATION CODES - VEHICLES BUILT FROM: 11-JUNE-2012
COMMUNICATIONS NETWORK
ELECTRONIC ENGINE CONTROLS
ELECTRONIC ENGINE CONTROLS
NOISE, VIBRATION AND HARSHNESS (NVH)
CHARGING SYSTEM - 2.0L DURATEC-HE
TURBOCHARGER
SUSPENSION SYSTEM
BRAKE SYSTEM
ENGINE - 2.0L DURATEC-HE
ENGINE - 2.0L ECOBOOST
ENGINE IGNITION - 2.0L DURATEC-HE
ENGINE IGNITION - 2.0L ECOBOOST
JACKING AND LIFTING - OVERVIEW
Inspection and Verification - NVH
Symptom Chart - Engine Performance
Symptom Chart - NVH
Powertrain/Drivetrain Mount Neutralizing
Valve Train Analysis
Oil Pressure Test
Valve Guide Inner Diameter
Piston Diameter
Connecting Rod Bearing Journal Clearance
Crankshaft Main Bearing Journal Clearance
Compression Pressure Limit Chart
Engine Oil Leaks
Compression Test
Oil Consumption Test