oil change FORD MUSTANG 2003 User Guide

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DIAGNOSIS AND TESTING
Suspension System
Inspection and Verification
1. Road test. zVerify the customer's concern by performing a road test on a smooth road.
2. Inspect tires. zCheck the tire pressure with all normal loads in the vehicle and the tires cold. For
additional information, refer to the vehicle certification (VC) label.
z Verify that all tires are sized to specification.
z Inspect the tires for incorrect wear and damage.
3. Inspect chassis and underbody. zRemove any excessive accumulation of mud, dirt or road deposits from the chassis and
underbody.
4. Inspect for aftermarket equipment. zCheck for aftermarket changes to the steering, suspension, wheel and tire components
(such as competition, heavy duty, etc.) The specifications shown in this manual do not
apply to vehicles equipped with aftermarket equipment.
5. Inspect shock absorbers. All vehicles are equipped with gas- pressurized hydraulic shock absorbers. These shock
absorbers are not adjustable or refillable and cannot be repaired.
zOil Leak: A light film of oil (weepage) on the upper portion of the shock absorber is
permissible and is a result or correct shock lubrication. Weepage is a condition in which a
film of oil accumulates on the thin tube (body) and is normally noticed due to the
collection of dust in this area. If shock absorbers exhibit this weepage condition, they are
functional units and new shock absorbers should not be installed. Leakage is a condition
in which the entire shock absorber body is covered with oil and the oil will drip from the
shock absorber onto the pavement. If condition exists:
„Make sure fluid observed is not from sources other than the shock absorber.
„ Install a new shock absorber, if necessary.
z Vehicle Sag: Many times new shock absorbers are installed in an effort to solve a vehicle
sag concern. Shock absorbers by design are hydraulic damping units only and, unlike
suspension springs, do not support any suspension loads. Therefore, installing a new
shock absorber will not correct a vehicle sag concern.
z Installment in Pairs: In the past it was recommended that new shock absorbers be
installed in pairs if one unit became unrepairable. New shock absorbers no longer need
to be installed in pairs when only one unit is not repairable.
SECTION 204-
00: Suspension System — General Information 2003 Mustang Workshop Manual Visual Inspection Chart
Mechanical Klj . 1 ba
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Engines need oil to lubricate the following internal components:
zcylinder block cylinder walls
z pistons and piston, pin and rings (6102)
z intake and exhaust valve stems
z intake and exhaust valve guides
z all internal engine components
When the pistons move downward, a thin film of oil is left on the cylinder walls. As the vehicle is
operated, some oil is also drawn into the combustion chambers past the intake and exhaust valve
stem seals and burned.
The following is a partial list of conditions that can affect oil consumption rates:
zengine duty cycle
z operator driving habits
z ambient temperature
z quality and viscosity of the oil
Operation under varying conditions can frequently be misleading. A vehicle that has been run for
several thousand miles on short trips or in below- freezing ambient temperatures may have consumed
a "normal" amount of oil. However, when checking the engine oil level, it may measure up to the FULL
or MAX on the oil level dipstick due to dilution (condensation and fuel) in the engine crankcase. The
vehicle might then be driven at high speeds on the highway where the condensation and fuel boil off.
The next time the engine oil is checked, it may appear that a liter (quart) of oil was used in about 160
km (100 miles). This perceived 160 km (100 miles) per liter (quart) oil consumption rate causes
customer concern even though the actual overall oil consumption rate is about 2,400 km (1,500 miles)
per liter (quart).
Make sure the selected engine oil meets the current recommended API performance category with
SAE viscosity grade as shown in the vehicle Owner's Guide. It is also important that the engine oil is
changed at the intervals specified. Refer to the vehicle Owner's Guide.
Oil Pressure Test
1. Disconnect and remove the oil pressure sensor (9278) 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 chart in the appropriate engine section.
6. If the pressure is not within specification, check the following possible sources: zinsufficient oil
z oil leakage
z worn or damaged oil pump
z oil pump screen cover and tube (6622)
z excessive main bearing clearance Klj . 13 ba
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GENERAL PROCEDURES
Connecting Rod —
Cleaning
CAUTION: Do not use a caustic cleaning solution or damage to connecting rods can
occur.
1. NOTE: The connecting rod large end is a matched set. The connecting rod cap must be
installed on the original connecting rod in the original position. Do not reverse the cap. Parts are
not interchangeable.
Mark and separate the parts and clean with solvent. Clean the oil passages.
SECTION 303-
00: Engine System — General Information 2003 Mustang Workshop Manual Klj . 1 ba
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SPECIFICATIONS
SECTION 303-
01A: Engine — 3.8L 2003 Mustang Workshop Manual General Specifications
Item Specification
Lubricants and Sealants
SAE 5W-
20 Premium Synthetic Blend Motor Oil
XO- 5W20- QSP WSS-
M2C153- H Gasket and Trim Adhesive F3AZ-19B508-
AA ESE-
M2G52- A Pipe Sealant with Teflon® D8AZ-19554-
A WSK-
M2G350- A2 Silicone Gasket and Sealant F7AZ-19554-
EA WSE-
M4G323- A4 Metal Surface Cleaner F4AZ-19A536-
RA WSE-
M5B392- A Engine
Displacement 3.8L
Number of cylinders 6
Bore 96.8325 mm (3.81 in)
Stroke 86.0 mm (3.39 in)
Firing order 1-4-2-5-3-
6 Oil pressure (hot 2,500 rpm) 40-
125 psi Oil capacity 5 quarts w/filter change
Compression ratio —
Cylinder Head and Valve Train
Cylinder head gasket surface flatness 0.18 mm (0.007 in)
Combustion chamber volume 61.5-
64.5 cc Valve arrangement (front to rear) —
Valve guide bore diameter 7.015-
7.044 mm (0.276- 0.277 in) Valve stem diameter —
intake 6.955-
6.988 mm (0.2738- 0.2751 in) Valve stem diameter —
exhaust 6.929-
6.962 mm (0.2728- 0.2741 in) Valve stem diameter —
oversize (intake) 9.075-
9.055 mm (0.3573- 0.3565 in) Valve stem diameter —
oversize (exhaust) 9.063-
9.043 mm (0.3568- 0.3560 in) Valve stem diameter —
oversize (intake) 9.456-
9.436 mm (0.3723- 0.3715 in) Valve stem diameter —
oversize (exhaust) 9.444-
9.424 mm (0.3718- 0.3710 in) Valve stem-
to-guide clearance — intake 0.020-
0.069 mm (0.045- 0.090 in) Valve stem-
to-guide clearance — exhaust 0.038-
0.083 mm (0.0015- 0.0033 in) Valve head diameter —
intake 47.27 mm (1.86 in)
Valve head diameter —
exhaust 37.1 mm (1.46 in)
Valve face runout 0.05 mm (0.002 in)
Valve face angle 45.675 degrees
Valve seat width 1.5-
2.0 mm (0.06- 0.08 in) Valve seat runout (T.I.R.) 0.076 mm (0.003 in) Klj . 1 ba
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DIAGNOSIS AND TESTING
Engine Cooling
Inspection and Verification
WARNING: Never remove the pressure relief cap while the engine is operating or when the
cooling system is hot. Failure to follow these instructions can result in damage to the cooling
system or engine or personal injury. To avoid having scalding hot coolant or steam blow out of
the degas bottle when removing the pressure relief cap, wait until the engine is cooled, then
wrap a thick cloth around the pressure relief cap and turn it slowly. Step back while the
pressure is released from the cooling system. When you are sure all the pressure has been
released, turn and remove the pressure relief cap (still with a cloth).
CAUTION: Check the coolant level, engine oil and transmission fluid, top off the coolant if
needed. If there is engine coolant in the engine oil or transmission fluid, the cause must be
corrected and oil/fluid changed or major component damage may occur.
1. Verify the customer's concern by operating the engine to duplicate the condition.
2. Inspect to determine if any of the following mechanical or electrical concerns apply.
SECTION 303-
03A: Engine Cooling 2003 Mustang Workshop Manual Special Tool(s)
Pressure Tester
014-
R1072 or equivalent 73III Automotive Meter
105-
R0057 or equivalent Worldwide Diagnostic System
(WDS)
418-
F224,
New Generation STAR (NGS)
Tester
418- F052, or equivalent scan
tool Battery/Anti-Freeze Tester
014- R1060 or equivalent Klj . 1 ba
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Page 1852 of 4378

3.
NOTE: Running this test with the vehicle in gear or with the A/C compressor clutch engaged
(running) will cause incorrect diagnosis.
Place the transmission in PARK (P) or NEUTRAL (N).
4. Start the engine and allow the engine to idle throughout this test. Allow the engine to run for 2 minutes, then record the ECT (4.6L) or CHT (3.8L) voltage. Record the ECT (4.6L) or CHT
(3.8L) voltage every 60 seconds. When the ECT (4.6L) or CHT (3.8L) voltage trend changes
direction or only changes slightly (0.03 volts or less) from the previous reading, record this as
the thermostat opening voltage. Use the voltage and corresponding coolant temperature chart
listed below for 4.6L engines only.
5. If the thermostat opening voltage is greater than 0.75 volts and less than 82°C (180°F), install a new water thermostat.
6. If the thermostat opening voltage is less than 0.75 volts and greater than 82°C (180°F), the water thermostat is good and a new water thermostat should not be installed. GO to Symptom Chart for further instructions.
Thermostat — Mechanical Test
1. Remove the water thermostat.
2. Check the water thermostat for seating. Hold the water thermostat up to a lighted background. Leakage of light around the thermostat valve at room temperature indicates that a new water
thermostat should be installed. Some water thermostats have a small leakage notch at one
location on the perimeter of the thermostat valve, which is considered normal.
3. Immerse the water thermostat in a boiling coolant and water mixture.
4. See the General Specifications chart for water thermostat opening temperatures.
Radiator Leak Test, Removed From the Vehicle CAUTION: Never leak test an aluminum radiator in the same water that copper/brass
radiators are tested in. Flux and caustic cleaners may be present in the cleaning tank and they
will damage aluminum radiators.
NOTE: Always install plugs in the oil cooler fittings before leak- testing or cleaning any radiator.
NOTE: Clean the radiator before leak- testing to avoid contamination of tank. Coolant Temperature °C (°F) ECT (Volts)
22 (71) 3.00
43 (109) 2.01
71 (159) 1.01
82 (180) 0.75
91 (195) 0.059
97 (206) 0.050
105 (221) 0.040 Klj . 9 ba
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Page 1900 of 4378

DIAGNOSIS AND TESTING
Supercharger Cooling
Inspection and Verification
WARNING: Never remove the pressure relief cap while the engine is operating or when the
cooling system is hot. Failure to follow these instructions can result in damage to the cooling
system or engine or personal injury. To avoid having scalding hot coolant or steam blow out of
the degas bottle when removing the pressure relief cap, wait until the engine has cooled, then
wrap a thick cloth around the pressure relief cap and turn it slowly. Step back while the
pressure is released from the cooling system. When you are sure all the pressure has been
released, (still with a cloth) turn and remove the pressure relief cap.
CAUTION: Check the coolant and engine oil levels. Top off the coolant level if needed. If
there is engine coolant in the engine oil, the cause must be corrected and the oil changed or major component damage can occur. SECTION 303-
03B: Supercharger Cooling 2003 Mustang Workshop Manual Special Tool(s)
Pressure Test Kit
014-
R1072 or equivalent Battery/Antifreeze Tester
014-
R1060 or equivalent
Material Item Specification
Motorcraft Premium
Engine Coolant
VC
-4-A (in Oregon
VC- 5, in Canada
CXC- 10) ESE-
M97B44- A Motorcraft Premium
Gold Engine Coolant
VC
-7-A WSS-
M97B51- A1 Motorcraft Cooling
System Stop Leak
Pellets
VC-
6 or equivalent ESE-
M99B37- 5 except as
noted in ES-F65E-19A511- AA Klj . 1 ba
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Page 1901 of 4378

CAUTION: Some vehicle cooling systems are filled with Motorcraft Premium Engine
Coolant VC -4-A (in Oregon VC- 5, in Canada CXC- 10) or equivalent meeting Ford specification
ESE- M97B44- A (green color). Others are filled with Motorcraft Premium Gold Engine Coolant
VC -7-A or equivalent meeting Ford specification WSS- M97B51-A1 (yellow color). Always fill the
cooling system with the same coolant that is present in the system. Do not mix coolant types.
NOTE: The addition of Motorcraft Cooling System Stop Leak Pellets, VC- 6, darkens Motorcraft
Premium Gold Engine Coolant from yellow to golden tan.
1. Verify the customer's concern by operating the engine to duplicate the condition.
2. Inspect to determine if any of the following mechanical or electrical concerns apply.
3. If the inspection reveals an obvious concern that can be readily identified, repair it as necessary.
4. Inspect the coolant condition. 1. WARNING: Never remove the pressure relief cap while the engine is
operating or when the cooling system is hot. Failure to follow these instructions
can result in damage to the cooling system or engine or personal injury. To avoid
having scalding hot coolant or steam blow out of the degas bottle when removing
the pressure relief cap, wait until the engine has cooled, then wrap a thick cloth
around the pressure relief cap and turn it slowly. Step back while the pressure is
released from the cooling system. When you are sure all the pressure has been
released, (still with a cloth) turn and remove the pressure relief cap.
Allow the engine to cool. Once pressure is released, remove the pressure relief cap.
2. CAUTION: Check the coolant and engine oil level and top off the coolant if
needed. If there is engine coolant in the engine oil the cause must be corrected
and oil/fluid changed or major component damage can occur.
CAUTION: Some vehicle cooling systems are filled with Motorcraft Premium
Engine Coolant VC -4-A (in Oregon VC- 5, in Canada CXC- 10) or equivalent meeting
Ford specification ESE- M97B44-A (green color). Others are filled with Motorcraft
Premium Gold Engine Coolant VC -7-A or equivalent meeting Ford specification
WSS- M97B51- A1 (yellow color). Always fill the cooling system with the same
coolant that is present in the system. Do not mix coolant types.
Inspect the coolant color:
„If Motorcraft Premium Engine Coolant (green color) VC-4- A or equivalent meeting
Ford specification ESE-M97B44- A has a clear, light green or blue color, this Visual Inspection Chart
Mechanical Electrical
z
Radiator brackets
z Leaks
z Damaged hoses
z Hose clamps
z Water pump
z Radiator
z Degas bottle
z Water pump bracket z
Damaged water pump wiring Klj . 2 ba
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Page 2058 of 4378

DESCRIPTION AND OPERATION
Engine Ignition
The ignition coil (12029), which is mounted on the upper intake manifold, can be described as a coil
pack containing three separate coil units. Each coil unit is individually controlled by the powertrain
control module (PCM) (12A650) through separate wire leads. Each coil unit activates two spark plugs
wired in a series by the spark plug wires (12286).
zOne spark plug activates on the compression stroke and uses the majority of the ignition coil's
stored energy.
z The other spark plug activates on the exhaust stroke and uses very little of the ignition coil's
stored energy.
z Because the pairs of spark plugs are connected in a series, one spark will travel from ground to
the electrode while the other spark will travel from the electrode to ground.
The spark plug (12405):
zchanges the high voltage pulse into a spark which ignites the fuel and air mixture.
z originally equipped on the vehicle has a platinum- enhanced active electrode for long life.
The crankshaft position (CKP) sensor (6C315):
NOTE: Initial engine ignition timing is set at 10 degrees ± 2 degrees before top dead center (BTDC)
and is not adjustable.
zis a variable reluctance sensor triggered by a 36- minus-1 tooth trigger pulse wheel located on
the crankshaft (6303) inside the engine front cover (6019).
The sine wave type signal generated from the crankshaft position sensor provides two types of
information:
zposition of the crankshaft in 10 degree increments
z the crankshaft speed (rpm)
The powertrain control module (PCM) (12A650) uses this information to determine ignition coil turn ON
and turn OFF times and misfire detection.
For additional information, refer to Section 303 - 14 .
SECTION 303-
07A: Engine Ignition — 3.8L 2003 Mustang Workshop Manual Klj . 1 ba
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Page 2071 of 4378

DESCRIPTION AND OPERATION
Engine Ignition
Eight separate ignition coils (12029):
zare mounted directly above each spark plug (12405).
z are controlled by the powertrain control module (PCM) for correct firing sequence.
The spark plug:
zchanges the high voltage pulse into a spark which ignites the fuel and air mixture.
z originally equipped on the vehicle has a platinum- enhanced active electrode for long life.
Crankshaft position (CKP) sensor (6C315):
NOTE: Initial engine ignition timing is set at 10 degrees ± 2 degrees before top dead center (BTDC)
and is not adjustable. For additional information, refer to the Powertrain Control/Emissions Diagnosis
(PC/ED) manual.
zis a variable reluctance sensor triggered by a 36- minus-1 tooth trigger pulse wheel located on
the crankshaft (6303) inside the engine front cover (6019).
The sine wave type signal generated from the crankshaft position sensor provides two types of
information:
zposition of the crankshaft in 10 degree increments
z the crankshaft speed (rpm)
The powertrain control module (PCM) (12A650) uses this information to determine ignition coil turn ON
and turn OFF times and misfire detection.
For additional information, refer to Section 303 - 14 .
SECTION 303-
07B: Engine Ignition — 4.6L (2V) 2003 Mustang Workshop Manual Klj . 1 ba
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