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Engine System-General Information: Diagnosis Ford Escape I

Mechanical 4 illustrations ~1719 words

Inspection and Verification

  1. Verify the customer concern by operating the engine to duplicate the condition.
  2. Visually inspect for obvious signs of mechanical damage. Refer to the following chart. Visual Inspection Chart Mechanical Engine coolant leaks Engine oil leak Fuel leaks Damaged or severely worn parts Loose mounting bolts, studs and nuts
  3. If the inspection reveals obvious concerns that can be readily identified, repair as necessary.
  4. If the concerns remain after the inspection, determine the symptoms. GO to «SYMPTOM CHART»(ref-204610-S11856581602005111200000) .

Symptom Chart

ConditionPossible SourcesAction
Difficult startingDamaged ignition system.Refer to the IGNITION SYSTEMS for the procedure. REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Damaged fuel system.Refer to SYSTEM & COMPONENT TESTING - EEC-V - GASOLINE . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Damaged starting system.Refer to STARTERS . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Damaged charging system/battery.REFER to GENERATORS & REGULATORS .
Burnt valve.INSTALL a new valve.
Worn piston.INSTALL a new piston.
Worn piston rings.INSTALL new piston rings.
Worn cylinder.REPAIR or INSTALL a new cylinder block.
Damaged head gasket.INSTALL a new head gasket.
Damaged cooling system.Refer to ENGINE COOLING . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV.
Poor idlingVacuum leaks.Repair as necessary.
Malfunctioning or damaged ignition system.Refer to VACUUM DIAGRAMS - TRUCKS . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Malfunctioning or damaged fuel system.Refer to SYSTEM & COMPONENT TESTING - EEC-V - GASOLINE . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Damaged valve tappet or lash adjuster.INSTALL a new valve tappet or lash adjuster.
Damaged valve tappet guide or lash adjuster.INSTALL a new valve tappet guide or valve tappet.
Incorrect valve-to-valve seat contact.REPAIR or INSTALL a new valve or valve seat.
Damaged head gasket.INSTALL a new head gasket.
Abnormal combustionMalfunctioning or damaged fuel system.Refer to SYSTEM & COMPONENT TESTING - EEC-V - GASOLINE . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Malfunctioning or damaged ignition system.Refer to SYSTEM & COMPONENT TESTING - EEC-V - GASOLINE . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Malfunctioning or damaged air intake system.Refer to SYSTEM & COMPONENT TESTING - EEC-V - GASOLINE . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Damaged valve tappet or lash adjuster.INSTALL a new valve tappet or lash adjuster.
Damaged valve tappet guide or valve tappet.INSTALL a new valve tappet guide or valve tappet.
Burnt or sticking valve.REPAIR or INSTALL a new valve.
Weak or broken valve spring.INSTALL a new valve spring.
Carbon accumulation in combustion chamber.ELIMINATE carbon buildup.
Excessive oil consumptionLeaking oil.REPAIR oil leakage.
Malfunctioning PCV system.REPAIR or INSTALL new necessary components.
Worn valve stem seal.INSTALL a new valve stem seal.
Worn valve stem or valve guide.INSTALL a new valve and valve guide.
Sticking piston rings.REPAIR or INSTALL new piston rings.
Worn piston ring groove.INSTALL a new piston and piston pin.
Worn piston or cylinder.REPAIR or INSTALL a new piston or cylinder block.
Engine noiseLeaking exhaust system.REPAIR exhaust leakage.
Incorrect drive belt tension.REFER to SPECIFICATIONS & DRIVE BELT ROUTING .
Malfunctioning generator bearing.Refer to GENERATORS & REGULATORS .
Malfunctioning water pump bearing.REFER to ENGINE COOLING .
Malfunctioning or damaged cooling system.REFER to ENGINE COOLING .
Malfunctioning or damaged fuel system.Refer to SYSTEM & COMPONENT TESTING - EEC-V - GASOLINE . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Loose timing chain/belt (6268).ADJUST or INSTALL a new timing chain/belt.
Damaged timing chain tensioner (6L266).INSTALL a new timing chain tensioner.
Excessive main bearing clearance.CAUTION: Remove the cylinder heads before removing the crankshaft. Failure to do so can result in engine damage. ADJUST clearance or INSTALL a new crankshaft main bearing (6333).
Seized or heat damaged crankshaft main bearing.INSTALL a new crankshaft main bearing.
Excessive crankshaft end play.INSTALL a new thrust bearing or crankshaft (6303).
Heat damaged connecting rod bearing (6211).INSTALL a new connecting rod bearing or connecting rod (6200).
Excessive connecting rod bearing clearance.INSTALL a new connecting rod bearing.
Damaged connecting rod bushing (6207).INSTALL a new connecting rod bushing.
Worn cylinder.REPAIR or INSTALL a new cylinder block (6010).
Worn piston (6108) or piston pin (6135).INSTALL a new piston or piston pin.
Damaged piston rings.INSTALL new piston rings.
Bent connecting rod.INSTALL a new connecting rod.
Malfunctioning valve tappet (6500) or lash adjuster.INSTALL a new valve tappet or lash adjuster.
Excessive valve tappet or lash adjuster clearance.ADJUST clearance or INSTALL a new valve tappet guide or valve tappet.
Broken valve spring (6513).INSTALL a new valve spring.
Excessive valve guide clearance.ADJUST clearance or INSTALL a new valve guide (6510) or valve.
Insufficient powerMalfunctioning or damaged ignition system.Refer to SYSTEM & COMPONENT TESTING - EEC-V - GASOLINE . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Malfunctioning or damaged fuel system.Refer to SYSTEM & COMPONENT TESTING - EEC-V - GASOLINE . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Malfunctioning or damaged air intake system.Refer to SYSTEM & COMPONENT TESTING - EEC-V - GASOLINE . REFER to SELF-DIAGNOSTICS - EEC-V - GASOLINE & NGV .
Damaged or plugged exhaust system.INSPECT exhaust system.
Incorrect tire size.Repair as necessary.
Dragging brakes.REFER to BRAKE SYSTEM - GENERAL INFORMATION .
Slipping transmission.Refer to the appropriate TRANSAXLE/TRANSMISSION article.
Malfunctioning valve tappet or lash adjusterINSTALL a new valve tappet or lash adjuster.
Damaged valve tappet guide or valve tappet.INSTALL a new valve tappet guide or valve tappet.
Compression leakage at valve seat.REPAIR or INSTALL a new valve, valve seat or cylinder head (6049).
Seized valve stem.INSTALL a new valve.
Weak or broken valve spring.INSTALL a new valve spring.
Worn or damaged camshaft.INSTALL a new camshaft.
Damaged head gasket (6051).INSTALL a new head gasket.
Cracked or distorted cylinder head.INSTALL a new cylinder head.
Damaged, worn or sticking piston ring (s).REPAIR or INSTALL a new piston ring(s).
Worn or damaged piston.INSTALL a new piston and piston pin.
CAUTION
Remove the cylinder heads before removing the crankshaft. Failure to do so can result in engine damage.

SYMPTOM CHART

Compression Test - Compression Gauge Check

  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 such as the Compression Tester 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 five compression strokes and record the highest reading. Note the approximate number of compression strokes required 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 percent of the highest reading. Refer to the COMPRESSION PRESSURE LIMIT CHART.

Compression Test - Interpreting Compression Readings

  1. If compression improves considerably, piston rings are faulty.
  2. If compression does not improve, valves are sticking or seating incorrectly.
  3. If two 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 that the lowest reading is within 75 percent of the highest reading.

Oil Consumption Test

Once all of the previous conditions are met, carry out an 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 quart (liter) 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-minute 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 1 quart (liter) to complete the normal oil fill. Restart the engine and allow it to idle for 2 minutes. Shut the engine down.
  4. After a 5-minute 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 dipstick 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 miles) or weekly, using the revised marks as drawn. Remind the customer that the engine needs a minimum 5-minute drainback 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 quart (liter) has been used, record the vehicle mileage. The mileage driven between the 2 readings should not be less than 1,500 miles. 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.

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 performed. 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.

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 hydraulic lash adjuster or hydraulic lash adjuster (HLA) 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 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 (5230), kinked tail pipe 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.
  16. 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 (2005), the unit will not function correctly. Always fix vacuum leaks.

Oil Pressure Test

  1. Disconnect and remove the oil pressure sensor from the engine.
  2. Connect the Oil Pressure 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»(ref-204610-S14256135672005111200000) chart in the appropriate engine section.
  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

Piston Inspection Procedure

CAUTIONDo not use a caustic cleaning solution or a wire brush to clean the pistons or damage can occur.

Scheme 3

Scheme 3

Scheme 4

Scheme 4
  1. Clean and inspect the (1) ring lands, (2) skirts, (3) pin bosses 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. Use the Piston Ring Groove Scraper to clean the piston ring grooves. Make sure the oil ring holes are clean.

Piston - Pin to Bore Diameter

  1. Measure the piston pin bore diameter in 2 directions on each side. Verify the diameter is within specification. If out of specification, install new components as necessary. For 2.0L Zetec engine procedure see appropriate section in «ENGINE - 2.0L ZETEC»(ref-204616) . For 3.0L (4V) engine procedure see appropriate section in «ENGINE - 3.0L (4V)»(ref-204613) .

Scheme 5

Scheme 5: Piston - Diameter
  1. Measure the piston diameter 90 degrees from the piston pin and 42 mm down from the top of the piston at the point indicated. For 2.0L Zetec engine procedure see appropriate section in «ENGINE - 2.0L ZETEC»(ref-204616) . For 3.0L (4V) engine procedure see appropriate section in «ENGINE - 3.0L (4V)»(ref-204613) . If out of specification, install new components as necessary. For 2.0L Zetec engine procedure see appropriate section in «ENGINE - 2.0L ZETEC»(ref-204616) . For 3.0L (4V) engine procedure see appropriate section in «ENGINE - 3.0L (4V)»(ref-204613) .