low oil pressure FORD MUSTANG 2003 Workshop Manual

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z
Change engine oil and install a new oil filter, lube front lower control arm and steering linkage
ball joints with zerk fittings (if equipped) every 4,800 km (3,000 miles) or 3 months.
z Inspect brake system and check battery electrolyte level (Patrol cars) every 8,000 km (5,000
miles).
z Install a new fuel filter every 24,000 km (15,000 miles).
z Change automatic transmission fluid, lubricate 4x2 wheel bearings, install new grease seals and
adjust bearings every 48,000 km (30,000 miles).
z Install new spark plugs and change transfer case fluid every 96,000 km (60,000 miles).
z Install a new cabin air filter as required.
When operating in dusty conditions such as unpaved or dusty roads:
zChange engine oil and install a new oil filter every 4,800 km (3,000 miles) or 3 months.
z Install a new fuel filter every 24,000 km (15,000 miles).
z Change automatic transmission fluid every 48,000 km (30,000 miles).
z Change transfer case fluid every 96,000 km (60,000 miles).
z Install a new engine air filter as required.
z Install a new cabin air filter as required.
When operating in off- road conditions:
z Change automatic transmission fluid every 48,000 km (30,000 miles).
z Change transfer case fluid every 96,000 km (60,000 miles).
z Install a new cabin air filter as required.
z Inspect and lubricate U- joints.
z Inspect and lubricate steering linkage ball joints with zerk fittings.
Checks and Services
Certain basic maintenance checks and inspections should be carried out at specified intervals. Any
recognized adverse condition should be corrected as soon as possible.
Maximum Oil Change Interval (Normal Schedule) z8,000 km (5,000 miles) or 6 months, whichever occurs first.
Maximum Oil Change Interval (Special Operating Conditions)
z4,800 km (3,000 miles) or 3 months.
Monthly Checks
Check each of the following items every month:
zAll interior and exterior lights.
z Tires for wear and correct air pressure. Klj . 2 ba
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z
Engine oil fluid level.
z Windshield washer solvent fluid level.
z Check and drain fuel/water separator.
Six Month Checks
Check each of the following items at least every six months:
zLap/shoulder belts and seat latches for wear and function.
z Spare tire air pressure.
z Power steering fluid level.
z Parking brake for correct operation.
z Safety warning lamps (brake, ABS, air bag, safety belt) for correct operation.
z Coolant system fluid level and correct strength.
z Battery connections. Clean if necessary.
z Clutch fluid level, if equipped.
z Windshield washer spray, wiper operation, clean all wiper blades.
z Lubricate all hinges, latches and outside locks. Inspect for correct operation.
z Lubricate door rubber weatherstrips. Inspect for excessive wear.
z Clean body and door drain holes. Inspect for clogs and obstructions.
Special Checks (Mustang Only)
Carry out the following check every 8,000 km (5,000 miles):
zAdjust clutch by lifting pedal (manual transmission Mustang only, as described in owner guide).
Normal Schedule
The following checks or procedures should be carried out for all cars, minivans, light trucks, sport
utilities, vans, 4x4s, natural gas and propane vehicles.
8,000 Km (5,000 Miles) zChange engine oil and install a new oil filter.
z Rotate tires and inspect for wear.
16,000 Km (10,000 Miles)
zChange engine oil and install a new oil filter.
z Inspect tires for wear. Rotation recommended for optimal tire life.
24,000 Km (15,000 Miles)
zChange engine oil and install a new oil filter. Klj . 3 ba
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z
Generator electrical
field or bearings. z
CARRY OUT generator
load test. REPAIR or
INSTALL a new generator
as necessary. REFER to
Section 414 - 02 .
z Drone type noise zExhaust system. zCARRY OUT the Exhaust System Neutralizing in this
section. REPAIR as
necessary.
z A/C compressor. zCHECK for noise with
vehicle at constant speeds.
CYCLE the compressor on
and off and listen for a
change in pitch. REPAIR as
necessary. REFER to
Section 412 - 03 .
z Powertrain mounts. zCARRY OUT the
Powertrain/Drivetrain Mount Neutralizing in this
section.
z Sputter type
noise— noise
worse when cold,
lessens or
disappears when
vehicle is at
operating
temperature z
Damaged or worn
exhaust system
components. z
INSPECT the exhaust
system for leaks or
damage. REPAIR as
necessary. REFER to
Section 309 - 00 .
z Rattling noise—
noise from the
upper engine
(valve train).
Worse when
engine is cold z
Low oil level. zCHECK oil level. FILL as
necessary.
z Thin or diluted oil. zINSPECT the oil for
contamination. If oil is
contaminated, CHECK for
the source. REPAIR as
necessary. CHANGE the oil
and filter.
z Low oil pressure. zCARRY OUT an oil
pressure test. If not within
specifications, REPAIR as
necessary. REFER to
Section 303 - 00 .
z Worn rocker
arms/fulcrums or
followers. z
CARRY OUT a valve train
analysis. INSTALL new
valve train components as
necessary. REFER to
Section 303 - 01A for 3.8L
engines or Section 303 - 01B
for 4.6L (2V) engines.
z Worn valve guides. zCARRY OUT a valve train
analysis. INSTALL new
valve guides as necessary.
REFER to Section 303 - 01A
for 3.8L engines or
Section 303 - 01B for 4.6L (2V)
engines. Klj . 26 ba
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information, REFER to
Section 205
- 00 .
REPAIR as necessary.
z Transmission
rumble/growl— noise at
all speeds in forward
gears, more
pronounced in a heavy
acceleration condition z
Damaged or worn
transmission
bearing or gears
(high mileage
vehicles). z
CHECK transmission
fluid for excessive
metal particles.
REPAIR as necessary.
REFER to Section 308 -
03A for T50D
transmissions or
Section 308 - 03B for
TR3650 transmissions.
z Transfer case whine—
noise at all ranges z
Incorrect fluid level
or fluid quality. z
CHECK that the
transfer case is filled to
the correct level and
with the specified fluid.
REFER to Section 308 -
03A for T50D
transmissions or
Section 308 - 03B for
TR3650 transmissions.
z Worn oil pump. zDISASSEMBLE the
transfer case. CHECK
the oil pump for wear or
damage. REPAIR as
necessary.
z Under- inflated or
oversized tires. z
CONFIRM that the tires
and wheels are correct
for the vehicle. CHECK
that the tire inflation
pressures are correct.
z Transfer case
growl/rumble— noise at
all ranges (A small
amount of planetary
noise can be heard
when the transfer case
is operated in low
range.) z
Damaged or worn
bearings or
planetary gear. z
DISASSEMBLE the
transfer case. CHECK
the bearings or
planetary gear for wear
or damage. REPAIR as
necessary.
z Transfer case
scraping/grating—
noise at all ranges z
Excessively
stretched drive
chain hitting the
case. z
DISASSEMBLE the
transfer case. CHECK
the drive chain for wear
or damage. REPAIR as
necessary.
z Transfer case
howl/hum— noise at all
ranges or high range
only z
Worn or damaged
sun (input) gear,
clutch pack
(intermediate) gear
or output shaft gear. z
DISASSEMBLE the
transfer case. CHECK
the gears for wear or
damage. REPAIR as
necessary.
z Transfer case
howl/hum— noise at
low range only z
Worn or damaged
intermediate gear
and sliding gears
(clutch pack). z
DISASSEMBLE the
transfer case. CHECK
the gears for wear or
damage. REPAIR as
necessary.
z Transfer case
vibration— vibration felt
with vehicle in 4WD z
Transfer case
mounting.
z Driveshaft out of
balance.
z Excessive pinion z
Go To Pinpoint Test M . Klj . 44 ba
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6. If an obvious cause for an observed or reported condition is found, correct the cause (if
possible) before proceeding to the next step.
7. If the fault is not visually evident, determine the symptom and GO to Symptom Chart .
Symptom Chart z
Front wheel bearing(s)
z Loose or damaged front or rear suspension components
z Loose, damaged or missing suspension fastener(s)
z Damaged spring(s)
z Damaged or leaking strut and spring assemblies
z Damaged or leaking shock absorber(s)
z Worn or damaged suspension bushing(s)
z Loose, worn or damaged steering system components
z Damaged axle components
Symptom Chart Condition
Possible Sources Action
z Dogtracking zExcessive rear
thrust angle. z
CHECK the wheel alignment.
ADJUST as necessary.
z Front or rear
suspension
components. z
INSPECT the front and rear
suspension system. REPAIR
or INSTALL new suspension
components as necessary.
REFER to Section 204 - 01 or
Section 204 - 02 .
z Drive axle
damaged. z
REPAIR as necessary. Refer
to the appropriate section in
Group 205 for the procedure..
z Drift/pull zUnequal tire
pressure. z
ADJUST tire pressure.
z Excessive side-to-
side difference in
caster or camber. z
CHECK the wheel alignment.
ADJUST as necessary.
z Tire forces. zROTATE tires front to rear.
z Unevenly loaded or
overloaded vehicle. z
NOTIFY the customer of
incorrect vehicle loading.
z Steering
components. z
REFER to Section 211 - 00 .
z Brake drag. zREFER to Section 206 - 00 .
z Front bottoming
or riding low z
Strut(s). zINSTALL new strut(s) as
necessary. REFER to Section 204 - 01 .
z Front coil springs
(5310). z
CHECK ride height. INSTALL
new springs as necessary.
REFER to Section 204 - 01 .
z Incorrect tire
wear z
Incorrect tire
pressure (rapid
center rib or inner
and outer edge
wear). z
ADJUST tire pressure. Klj . 2 ba
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Repair the axle as necessary. Make sure the axle lubricant is at the correct level. Refer to
Specifications in this section.
Axle Vent
NOTE:
If a plugged vent cannot be cleared, install a new one.
A plugged vent will cause excessive seal lip wear due to internal pressure buildup. If a leak occurs,
check the vent. Make sure the vent hose is not kinked. Remove the hose from the vent nipple and
clear the hose of any foreign material. While the hose is removed, pass a length of mechanics wire in
and out of the vent to clean it. Connect the hose when done.
Flange Yoke Seal
Leaks at the axle drive pinion seal originate for the following reasons:
zSeal was not correctly installed.
z Poor quality seal journal surface.
Any damage to the seal bore (dings, dents, gouges, or other imperfections) will distort the seal casing
and allow leakage past the outer edge of the axle drive pinion seal.
The axle drive pinion seal can be torn, cut, or gouged if it is not installed carefully. The spring that
holds the axle drive pinion seal against the pinion flange may be knocked out and allow leakage past
the lip.
The rubber lips can occasionally become hard (like plastic) with cracks at the oil lip contact point. The
contact point on the pinion flange may blacken, indicating excessive heat. Marks, nicks, gouges, or
rough surface texture on the seal journal of the pinion flange will also cause leaks.
When a seal leak occurs, install a new seal and check the vent and the vent hose to make sure they
are clean and free of foreign material.
Axle Shaft Seals
Axle shaft oil seals are susceptible to the same kinds of damage as axle drive pinion seals if incorrectly
installed. The seal bore must be clean and the lip handled carefully to avoid cutting or tearing it. The
axle shaft journal surface must be free of nicks, gouges, and rough surface texture.
Differential Seals
Refer to Section 205 - 02A or
Section 205 - 02B .
Analysis of Vibration WARNING: A vehicle equipped with a Traction- Lok® differential will always have both
wheels driving. If only one wheel is raised off the floor and the rear axle is driven by the engine,
the wheel on the floor could drive the vehicle off the stand or jack. Be sure both rear wheels are
off the floor.
Few vibration conditions are caused by the rear axle. On a vibration concern, follow the diagnosis
procedure in Section 100 - 04 unless there is a good reason to suspect the axle.
Tires Klj . 3 ba
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PINPOINT TEST F: HYDRO-
BOOST ERRATIC OPERATION, STICKS,
BINDS OR GRABS z
Check accessory drive belt tension and
condition. Refer to Section 303 - 05 .
z Is the accessory drive belt OK? Yes
GO to
E3 .
No
INSTALL a new accessory drive belt.
REFER to Section 303 - 05 .
E3 CHECK POWER STEERING HOSES
z
Check power steering pressure hoses, power
steering gear pressure hoses and power
steering return hose for cracks or leaks.
z Do power steering pressure hose, power
steering gear hose and power steering
return hose check OK? Yes
GO to
E4 .
No
INSTALL new hoses as necessary.
REFER to Section 211 - 00 .
E4 CHECK BRAKE PEDAL LINKAGE
z
Check brake pedal linkage for binding or
sticking operation.
z Does pedal linkage check OK? Yes
GO to
E5 .
No
INSTALL new pedal linkage as necessary.
REFER to Section 206 - 06 .
E5 CHECK POWER STEERING PUMP SPEED
z
Check engine idle speed against
specifications.
z Is engine idle speed OK? Yes
GO to
E6 .
No
SET engine idle speed to specification.
REFER to Powertrain Control/Emissions
Diagnosis (PC/ED) manual. E6 CHECK FOR PLUGGED RETURN HOSE
z
NOTE: The return hose from the oil cooler to
the power steering reservoir has an in- line
filter in the hose.
z Disconnect power steering return hose from
power steering fluid cooler and power
steering pump reservoir.
z Pass air through hose from the oil cooler end.
z Is hose plugged? Yes
INSTALL a new power steering return
hose.
No
GO to
E7 .
E7 CHECK POWER STEERING PUMP FLOW
AND RELIEF z
Test power steering pump for correct flow
and relief pressure. Refer to Section 211 - 00 .
z Is power steering pump operating
correctly? Yes
INSTALL a new power brake hydro-
boost
unit. REFER to Section 206 - 07 .
No
INSTALL a new power steering pump.
REFER to Section 211 - 02 .
Test Step Result / Action to
Take F1 CHECK SUPPLY HOSE
z
Check for obstructions in power steering return hose and Yes Klj . 11 ba
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Power Steering Pump —
CII
Power Steering Pump — CIII
Power Steering Gear Identification CAUTION: Always use the ID code when ordering service parts. The steering gear identification code is stamped into the housing. 2 — To left turn port
3 — To right turn port
4 — Return port (out)
5 — Pressure port (in)
6 — Oil flow —
right turn 7 — Air transfer tube (between bellows) Klj . 4 ba
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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.
If one or more cylinders reads low, squirt approximately one tablespoon of engine oil on top of the
pistons in the low- reading cylinders. Repeat the compression pressure check on these cylinders. Compression Test — Interpreting Compression Readings Compression Pressure Limit Chart
Maximum
Pressure Minimum
Pressure Maximum
Pressure Minimum
Pressure Maximum
Pressure Minimum
Pressure Maximum
Pressure Minimum
Pressure 924 kPa
(134 psi) 696 kPa
(101 psi) 1131 kPa
(164 psi) 848 kPa
(123 psi) 1338 kPa
(194 psi) 1000 kPa
(146 psi) 1544 kPa
(224 psi) 1158 kPa
(168 psi) 938 kPa
(136 psi) 703 kPa
(102 psi) 1145 kPa
(166 psi) 855 kPa
(124 psi) 1351 kPa
(196 psi) 1014 kPa
(147 psi) 1558 kPa
(226 psi) 1165 kPa
(169 psi) 952 kPa
(138 psi) 717 kPa
(104 psi) 1158 kPa
(168 psi) 869 kPa
(126 psi) 1365 kPa
(198 psi) 1020 kPa
(148 psi) 1572 kPa
(228 psi) 1179 kPa
(171 psi) 965 kPa
(140 psi) 724 kPa
(106 psi) 1172 kPa
(170 psi) 876 kPa
(127 psi) 1379 kPa
(200 psi) 1034 kPa
(150 psi) 1586 kPa
(230 psi) 1186 kPa
(172 psi) 979 kPa
(142 psi) 738 kPa
(107 psi) 1186 kPa
(172 psi) 889 kPa
(129 psi) 1303 kPa
(202 psi) 1041 kPa
(151 psi) 1600 kPa
(232 psi) 1200 kPa
(174 psi) 933 kPa
(144 psi) 745 kPa
(109 psi) 1200 kPa
(174 psi) 903 kPa
(131 psi) 1407 kPa
(204 psi) 1055 kPa
(153 psi) 1055 kPa
(153 psi) 1207 kPa
(175 psi) 1007 kPa
(146 psi) 758 kPa
(110 psi) 1214 kPa
(176 psi) 910 kPa
(132 psi) 1420 kPa
(206 psi) 1062 kPa
(154 psi) 1627 kPa
(154 psi) 1220 kPa
(177 psi) 1020 kPa
(148 psi) 765 kPa
(111 psi) 1227 kPa
(178 psi) 917 kPa
(133 psi) 1434 kPa
(208 psi) 1075 kPa
(156 psi) 1641 kPa
(238 psi) 1227 kPa
(178 psi) 1034 kPa
(150 psi) 779 kPa
(113 psi) 1241 kPa
(180 psi) 931 kPa
(135 psi) 1448 kPa
(210 psi) 1083 kPa
(157 psi) 1655 kPa
(240 psi) 1241 kPa
(180 psi) 1048 kPa
(152 psi) 786 kPa
(114 psi) 1255 kPa
(182 psi) 936 kPa
(136 psi) 1462 kPa
(212 psi) 1089 kPa
(158 psi) 1669 kPa
(242 psi) 1248 kPa
(181 psi) 1062 kPa
(154 psi) 793 kPa
(115 psi) 1269 kPa
(184 psi) 952 kPa
(138 psi) 1476 kPa
(214 psi) 1103 kPa
(160 psi) 1682 kPa
(244 psi) 1262 kPa
(183 psi) 1076 kPa
(156 psi) 807 kPa
(117 psi) 1282 kPa
(186 psi) 965 kPa
(140 psi) 1489 kPa
(216 psi) 1117 kPa
(162 psi) 1696 kPa
(246 psi) 1269 kPa
(184 psi) 1089 kPa
(158 psi) 814 kPa
(118 psi) 1296 kPa
(188 psi) 972 kPa
(141 psi) 1503 kPa
(218 psi) 1124 kPa
(163 psi) 1710 kPa
(248 psi) 1202 kPa
(186 psi) 1103 kPa
(160 psi) 827 kPa
(120 psi) 1310 kPa
(190 psi) 979 kPa
(142 psi) 1517 kPa
(220 psi) 1138 kPa
(165 psi) 1724 kPa
(250 psi) 1289 kPa
(187 psi) 1110 kPa
(161 psi) 834 kPa
(121 psi) 1324 kPa
(192 psi) 993 kPa
(144 psi) 1631 kPa
(222 psi) 1145 kPa
(166 psi) — —Klj . 8 ba
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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.
Cylinder Leakage Detection
When a cylinder produces a low reading, use of the Engine Cylinder Leak Detection/Air Pressurization
Kit will be helpful in pinpointing the exact cause.
The leakage detector is inserted in the spark plug hole, the piston is brought up to dead center on the
compression stroke, and compressed air is admitted.
Once the combustion chamber is pressurized, a special gauge included in the kit will read the
percentage of leakage. Leakage exceeding 20 percent is excessive.
While the air pressure is retained in the cylinder, listen for the hiss of escaping air. A leak at the intake
valve (6507) will be heard in the throttle body (9E926). A leak at the exhaust valve (6505) can be
heard at the tail pipe. Leakage past the piston rings will be audible at the positive crankcase ventilation
(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
(8005).
Oil Consumption Test
The following diagnostic procedure is used to determine the source of excessive internal oil
consumption. 1. NOTE: Oil use is normally greater during the first 16,100 km (10,000 miles) of service. As
mileage increases, oil use generally decreases. Vehicles in normal service should get at least
1,450 km per liter (900 miles per quart) after 16,000 km (10,000 miles) of service. High speed
driving, towing, high ambient temperature and other factors may result in greater oil use.
Define excessive oil consumption, such as the number of miles driven per liter (quart) of oil
used. Also determine customer's driving habits, such as sustained high speed operation,
towing, extended idle and other considerations.
2. Verify that the engine has no external oil leak as described under Engine Oil Leaks in the Diagnosis and Testing portion of this section.
3. Verify that the engine has the correct oil level dipstick (6750).
4. Verify that the engine is not being run in an overfilled condition. Check the oil level at least five minutes after a hot shutdown with the vehicle parked on a level surface. In no case should the
level be above MAX or the letter F in FULL. If significantly overfilled, carry out Steps 6a through
6d.
5. Verify the spark plugs are not oil saturated. If the spark plugs are oil saturated and compression is good it can be assumed the valve seals or valve guides are at fault. Klj . 9 ba
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