Ford Orion. Manual - part 68

 

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Ford Orion. Manual - part 68

 

 

REF•8

General Repair Procedures

Whenever servicing, repair or overhaul work

is carried out on the car or its components,
observe the following procedures and
manuals. This will assist in carrying out the
operation efficiently and to a professional
standard of workmanship.

Joint mating faces and gaskets

When separating components at their

mating faces, never insert screwdrivers or
similar implements into the joint between the
faces in order to prise them apart. This can
cause severe damage which results in oil
leaks, coolant leaks, etc upon reassembly.
Separation is usually achieved by tapping
along the joint with a soft-faced hammer in
order to break the seal. However, note that
this method may not be suitable where
dowels are used for component location.

Where a gasket is used between the mating

faces of two components, a new one must be
fitted on reassembly; fit it dry unless otherwise
stated in the repair procedure. Make sure that
the mating faces are clean and dry, with all
traces of old gasket removed. When cleaning a
joint face, use a tool which is unlikely to score
or damage the face, and remove any burrs or
nicks with an oilstone or fine file.

Make sure that tapped holes are cleaned

with a pipe cleaner, and keep them free of
jointing compound, if this is being used,
unless specifically instructed otherwise.

Ensure that all orifices, channels or pipes

are clear, and blow through them, preferably
using compressed air.

Oil seals

Oil seals can be removed by levering them

out with a wide flat-bladed screwdriver or
similar implement. Alternatively, a number of
self-tapping screws may be screwed into the
seal, and these used as a purchase for pliers or
some similar device in order to pull the seal free.

Whenever an oil seal is removed from its

working location, either individually or as part
of an assembly, it should be renewed.

The very fine sealing lip of the seal is easily

damaged, and will not seal if the surface it
contacts is not completely clean and free from
scratches, nicks or grooves. If the original
sealing surface of the component cannot be
restored, and the manufacturer has not made
provision for slight relocation of the seal
relative to the sealing surface, the component
should be renewed.

Protect the lips of the seal from any surface

which may damage them in the course of
fitting. Use tape or a conical sleeve where
possible. Lubricate the seal lips with oil before
fitting and, on dual-lipped seals, fill the space
between the lips with grease.

Unless otherwise stated, oil seals must be

fitted with their sealing lips toward the
lubricant to be sealed.

Use a tubular drift or block of wood of the

appropriate size to install the seal and, if the
seal housing is shouldered, drive the seal
down to the shoulder. If the seal housing is

unshouldered, the seal should be fitted with
its face flush with the housing top face (unless
otherwise instructed).

Screw threads and fastenings

Seized nuts, bolts and screws are quite a

common occurrence where corrosion has set
in, and the use of penetrating oil or releasing
fluid will often overcome this problem if the
offending item is soaked for a while before
attempting to release it. The use of an impact
driver may also provide a means of releasing
such stubborn fastening devices, when used
in conjunction with the appropriate
screwdriver bit or socket. If none of these
methods works, it may be necessary to resort
to the careful application of heat, or the use of
a hacksaw or nut splitter device.

Studs are usually removed by locking two

nuts together on the threaded part, and then
using a spanner on the lower nut to unscrew
the stud. Studs or bolts which have broken off
below the surface of the component in which
they are mounted can sometimes be removed
using a stud extractor. Always ensure that a
blind tapped hole is completely free from oil,
grease, water or other fluid before installing
the bolt or stud. Failure to do this could cause
the housing to crack due to the hydraulic
action of the bolt or stud as it is screwed in.

When tightening a castellated nut to accept

a split pin, tighten the nut to the specified
torque, where applicable, and then tighten
further to the next split pin hole. Never slacken
the nut to align the split pin hole, unless stated
in the repair procedure.

When checking or retightening a nut or bolt

to a specified torque setting, slacken the nut
or bolt by a quarter of a turn, and then
retighten to the specified setting. However,
this should not be attempted where angular
tightening has been used.

For some screw fastenings, notably

cylinder head bolts or nuts, torque wrench
settings are no longer specified for the latter
stages of tightening, “angle-tightening” being
called up instead. Typically, a fairly low torque
wrench setting will be applied to the
bolts/nuts in the correct sequence, followed
by one or more stages of tightening through
specified angles.

Locknuts, locktabs and washers

Any fastening which will rotate against a

component or housing during tightening
should always have a washer between it and
the relevant component or housing.

Spring or split washers should always be

renewed when they are used to lock a critical
component such as a big-end bearing
retaining bolt or nut. Locktabs which are
folded over to retain a nut or bolt should
always be renewed.

Self-locking nuts can be re-used in non-

critical areas, providing resistance can be felt
when the locking portion passes over the bolt
or stud thread. However, it should be noted
that self-locking stiffnuts tend to lose their

effectiveness after long periods of use, and
should then be renewed as a matter of course.

Split pins must always be replaced with

new ones of the correct size for the hole.

When thread-locking compound is found

on the threads of a fastener which is to be re-
used, it should be cleaned off with a wire
brush and solvent, and fresh compound
applied on reassembly.

Special tools

Some repair procedures in this manual

entail the use of special tools such as a press,
two or three-legged pullers, spring com-
pressors, etc. Wherever possible, suitable
readily-available alternatives to the manu-
facturer’s special tools are described, and are
shown in use. In some instances, where no
alternative is possible, it has been necessary
to resort to the use of a manufacturer’s tool,
and this has been done for reasons of safety
as well as the efficient completion of the repair
operation. Unless you are highly-skilled and
have a thorough understanding of the
procedures described, never attempt to
bypass the use of any special tool when the
procedure described specifies its use. Not
only is there a very great risk of personal
injury, but expensive damage could be
caused to the components involved.

Environmental considerations

When disposing of used engine oil, brake

fluid, antifreeze, etc, give due consideration to
any detrimental environmental effects. Do not,
for instance, pour any of the above liquids
down drains into the general sewage system,
or onto the ground to soak away. Many local
council refuse tips provide a facility for waste
oil disposal, as do some garages. If none of
these facilities are available, consult your local
Environmental Health Department, or the
National Rivers Authority, for further advice.

With the universal tightening-up of legis-

lation regarding the emission of environmen-
tally-harmful substances from motor vehicles,
most vehicles have tamperproof devices fitted
to the main adjustment points of the fuel
system. These devices are primarily designed
to prevent unqualified persons from adjusting
the fuel/air mixture, with the chance of a
consequent increase in toxic emissions. If
such devices are found during servicing or
overhaul, they should, wherever possible, be
renewed or refitted in accordance with the
manufacturer’s requirements or current
legislation.

Note: It is
antisocial and
illegal to dump
oil down the
drain. To find
the location of
your local oil
recycling
bank, call this
number free.

REF•10

Fault Finding

Engine fails to rotate when attempting to start

m

m

Battery terminal connections loose or corroded (Chapter 5).

m

m

Battery discharged or faulty (Chapter 5).

m

m

Broken, loose or disconnected wiring in the starting circuit
(Chapter 5).

m

m

Defective starter solenoid or switch (Chapter 5).

m

m

Defective starter motor (Chapter 5).

m

m

Flywheel ring gear or starter pinion teeth loose or broken (Chap-
ter 2 or 5).

m

m

Engine earth strap broken or disconnected (Chapter 5).

m

m

Automatic transmission not in Park/Neutral position, or selector
lever position sensor faulty (Chapter 7, Part B).

Engine rotates, but will not start

m

m

Fuel tank empty.

m

m

Battery discharged (engine rotates slowly) (Chapter 5).

m

m

Battery terminal connections loose or corroded (Chapter 5).

m

m

Ignition components damp or damaged (Chapters 1 and 5).

m

m

Broken, loose or disconnected wiring in the ignition circuit
(Chapters 1 and 5).

m

m

Worn, faulty or incorrectly-gapped spark plugs (Chapter 1).

m

m

Major mechanical failure (eg camshaft drive) (Chapter 2A, B or C).

Engine difficult to start when cold

m

m

Battery discharged (Chapter 5).

m

m

Battery terminal connections loose or corroded (Chapter 5).

m

m

Worn, faulty or incorrectly-gapped spark plugs (Chapter 1).

m

m

Other ignition system fault (Chapters 1 and 5).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Low cylinder compressions (Chapter 2A, B or C).

Engine difficult to start when hot

m

m

Air filter element dirty or clogged (Chapter 1).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Low cylinder compressions (Chapter 2A, B or C).

m

m

Faulty hydraulic tappet(s) (Chapter 2B or C).

Starter motor noisy or excessively-rough in
engagement

m

m

Flywheel ring gear or starter pinion teeth loose or broken (Chap-
ter 2 or 5).

m

m

Starter motor mounting bolts loose or missing (Chapter 5).

m

m

Starter motor internal components worn or damaged (Chapter 5).

Engine starts but stops immediately

m

m

Loose or faulty electrical connections in the ignition circuit
(Chapters 1 and 5).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Vacuum leak at the inlet manifold (Chapters 1, 4 and 6).

Engine idles erratically

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Air filter element clogged (Chapter 1).

m

m

Vacuum leak at the inlet manifold or associated hoses (Chapters 1,
4 and 6).

m

m

Worn, faulty or incorrectly-gapped spark plugs (Chapter 1).

m

m

Incorrect valve clearances (Chapter 2A).

m

m

Faulty hydraulic tappet(s) (Chapter 2B or C).

m

m

Uneven or low cylinder compressions (Chapter 2A, B or C).

m

m

Camshaft lobes worn (Chapter 2).

m

m

Timing chain and sprockets worn (Chapter 2A).

m

m

Timing belt incorrectly-tensioned (Chapter 2B or C).

The vehicle owner who does his or her own maintenance according

to the recommended service schedules should not have to use this
section of the manual very often. Modern component reliability is such
that, provided those items subject to wear or deterioration are
inspected or renewed at the specified intervals, sudden failure is
comparatively rare. Faults do not usually just happen as a result of
sudden failure, but develop over a period of time. Major mechanical
failures in particular are usually preceded by characteristic symptoms
over hundreds or even thousands of miles. Those components which
do occasionally fail without warning are often small and easily carried
in the vehicle.

With any fault-finding, the first step is to decide where to begin

investigations. Sometimes this is obvious, but on other occasions, a
little detective work will be necessary. The owner who makes half a
dozen haphazard adjustments or replacements may be successful in
curing a fault (or its symptoms), but will be none the wiser if the fault
recurs, and ultimately may have spent more time and money than was
necessary. A calm and logical approach will be found to be more
satisfactory in the long run. Always take into account any warning
signs or abnormalities that may have been noticed in the period
preceding the fault - power loss, high or low gauge readings, unusual
smells, etc - and remember that failure of components such as fuses
or spark plugs may only be pointers to some underlying fault.

The pages which follow provide an easy reference guide to the

more common problems which may occur during the operation of the
vehicle. These problems and their possible causes are grouped under

headings denoting various components or systems, such as Engine,
Cooling system, etc. The Chapter and/or Section which deals with the
problem is also shown in brackets. Whatever the fault, certain basic
principles apply. These are as follows:

Verify the fault. This is simply a matter of being sure that you know

what the symptoms are before starting work. This is particularly
important if you are investigating a fault for someone else, who may
not have described it very accurately.

Don’t overlook the obvious. For example, if the vehicle won’t start,

is there petrol in the tank? (Don’t take anyone else’s word on this
particular point, and don’t trust the fuel gauge either!) If an electrical
fault is indicated, look for loose or broken wires before digging out the
test gear.

Cure the disease, not the symptom. Substituting a flat battery with a

fully-charged one will get you off the hard shoulder, but if the
underlying cause is not attended to, the new battery will go the same
way. Similarly, changing oil-fouled spark plugs for a new set will get
you moving again, but remember that the reason for the fouling (if it
wasn’t simply an incorrect grade of plug) will have to be established
and corrected.

Don’t take anything for granted. Particularly, don’t forget that a

“new” component may itself be defective (especially if it’s been
rattling around in the boot for months), and don’t leave components
out of a fault diagnosis sequence just because they are new or
recently fitted. When you do finally diagnose a difficult fault, you’ll
probably realise that all the evidence was there from the start.

Engine

Introduction

REF•11

REF

Fault Finding

Engine misfires at idle speed

m

m

Worn, faulty or incorrectly-gapped spark plugs (Chapter 1).

m

m

Faulty spark plug HT leads (Chapter 1).

m

m

Incorrect ignition timing (Chapters 5 and 6).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Vacuum leak at inlet manifold or hoses (Chapters 1, 4 and 6).

m

m

Incorrect valve clearances (Chapter 2A).

m

m

Faulty hydraulic tappet(s) (Chapter 2B or C).

m

m

Uneven or low cylinder compressions (Chapter 2A, B and C).

m

m

Disconnected/leaking crankcase ventilation hoses (Chapters 1 and 6).

Engine misfires throughout the driving speed range

m

m

Fuel filter choked (Chapter 1).

m

m

Fuel pump faulty or delivery pressure low (Chapter 4).

m

m

Fuel tank vent blocked or fuel pipes restricted (Chapter 4).

m

m

Vacuum leak at inlet manifold or hoses (Chapters 1, 4 and 6).

m

m

Worn, faulty or incorrectly-gapped spark plugs (Chapter 1).

m

m

Faulty spark plug HT leads (Chapter 1).

m

m

Faulty ignition coil (Chapter 5).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Uneven or low cylinder compressions (Chapter 2A, B or C).

Engine hesitates on acceleration

m

m

Worn, faulty or incorrectly-gapped spark plugs (Chapter 1).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Vacuum leak at inlet manifold or hoses (Chapters 1, 4 and 6).

Engine stalls

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Vacuum leak at inlet manifold or hoses (Chapters 1, 4 and 6).

m

m

Fuel filter choked (Chapter 1).

m

m

Fuel pump faulty or delivery pressure low (Chapter 4).

m

m

Fuel tank vent blocked or fuel pipes restricted (Chapter 4).

Engine lacks power

m

m

Incorrect ignition timing (Chapters 5 and 6).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Timing chain or belt incorrectly fitted (Chapter 2A, B or C).

m

m

Fuel filter choked (Chapter 1).

m

m

Fuel pump faulty or delivery pressure low (Chapter 4).

m

m

Uneven or low cylinder compressions (Chapter 2A).

m

m

Worn, faulty or incorrectly-gapped spark plugs (Chapter 1).

m

m

Vacuum leak at inlet manifold or hoses (Chapters 1, 4 and 6).

m

m

Brakes binding (Chapters 1 and 9).

m

m

Clutch slipping (Chapter 8).

m

m

Automatic transmission fluid level incorrect (Chapter 1).

Engine backfires

m

m

Ignition timing incorrect (Chapters 5 and 6).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Timing chain or belt incorrectly fitted (Chapter 2A, B or C).

m

m

Vacuum leak at inlet manifold or hoses (Chapters 1, 4 and 6).

Oil pressure warning light illuminated with engine
running

m

m

Low oil level or incorrect oil grade (Chapter 1).

m

m

Faulty oil pressure warning light switch (Chapter 2A, B or C).

m

m

Worn engine bearings and/or oil pump (Chapter 2).

m

m

High engine operating temperature (Chapter 3).

m

m

Oil pressure relief valve defective (Chapter 2A. B or C).

m

m

Oil pick-up strainer clogged (Chapter 2A, B or C).

Engine runs-on after switching off

m

m

Idle speed excessively high (Chapters 4 and 6).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Excessive carbon build-up in engine (Chapter 2A, B or C).

m

m

High engine operating temperature (Chapter 3).

Engine noises

Pre-ignition (pinking) or knocking during acceleration or
under load

m

m

Ignition timing incorrect (Chapters 5 and 6).

m

m

Incorrect grade of fuel (Chapter 4).

m

m

Vacuum leak at the manifold or hoses (Chapters 1, 4 and 6).

m

m

Excessive carbon build-up in engine (Chapter 2A, B or C).

Whistling or wheezing noises

m

m

Leaking inlet manifold gasket (Chapter 2A, B or C).

m

m

Leaking exhaust manifold gasket or downpipe-to-manifold joint
(Chapters 1, 2A, B or C, and 4).

m

m

Leaking vacuum hose (Chapters 1, 4, 6 and 9).

m

m

Blowing cylinder head gasket (Chapter 2A, B or C).

Tapping or rattling noises

m

m

Incorrect valve clearance adjustment (Chapter 2A).

m

m

Faulty hydraulic tappet(s) (Chapter 2B or C).

m

m

Worn valve gear or camshaft (Chapter 2A, B or C).

m

m

Worn timing chain, belt or tensioner (Chapter 2A, B or C).

m

m

Component fault (water pump, alternator, etc) (Chapters 3 and 5).

Knocking or thumping noises

m

m

Worn big-end bearings (regular heavy knocking, perhaps less
under load) Chapter 2D).

m

m

Worn main bearings (rumbling and knocking, perhaps worsening
under load) Chapter 2D).

m

m

Piston slap (most noticeable when cold) (Chapter 2D).

m

m

Component fault (water pump, alternator, etc) (Chapters 3 and 5).

Cooling system

Overheating

m

m

Insufficient coolant in system (Chapter 1).

m

m

Thermostat faulty (Chapter 3).

m

m

Radiator core blocked or grille restricted (Chapter 3).

m

m

Radiator cooling fan(s) or temperature sensor faulty Chapter 3).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Pressure cap faulty (Chapter 3).

m

m

Auxiliary drivebelt worn or slipping (Chapter 1).

m

m

Ignition timing incorrect (Chapters 5 and 6).

m

m

Inaccurate coolant temperature gauge sender (Chapter 3).

m

m

Airlock in cooling system (Chapter 1).

Overcooling

m

m

Thermostat faulty (Chapter 3).

m

m

Inaccurate coolant temperature gauge sender (Chapter 3).

External coolant leakage

m

m

Deteriorated or damaged hoses or hose clips (Chapter 1).

m

m

Radiator core or heater matrix leaking (Chapter 3).

m

m

Pressure cap faulty (Chapter 3).

m

m

Water pump seal leaking (Chapter 3).

m

m

Boiling due to overheating (Chapter 3).

m

m

Core plug leaking (Chapter 2D).

Internal coolant leakage

m

m

Leaking cylinder head gasket (Chapter 2A, B or C).

m

m

Cracked cylinder head or cylinder bore (Chapter 2D).

Corrosion

m

m

Infrequent draining and flushing (Chapter 1).

m

m

Incorrect antifreeze mixture, or antifreeze type (Chapter 1).

REF•12

Fault Finding

Driveshafts

Fuel and exhaust systems

Excessive fuel consumption

m

m

Unsympathetic driving style, or adverse conditions.

m

m

Air filter element dirty or clogged (Chapter 1).

m

m

Engine management system fault (Chapters 1, 4, 5 and 6).

m

m

Ignition timing incorrect (Chapters 5 and 6).

m

m

Tyres under-inflated (Chapter 1).

Fuel leakage and/or fuel odour

m

m

Damaged or corroded fuel tank, pipes or connections (Chapter 1).

m

m

Charcoal canister and/or connecting pipes leaking (Chapter 6).

Excessive noise or fumes from exhaust system

m

m

Leaking exhaust or manifold joints (Chapters 1, 2A, B or C, and 4).

m

m

Leaking, corroded or damaged silencers or pipe (Chapter 1).

m

m

Broken mountings, causing body or suspension contact (Chap-
ters 1 and 4).

Clutch

Pedal travels to floor - no pressure or very little
resistance

m

m

Broken clutch cable (Chapter 8).

m

m

Faulty clutch automatic adjuster (Chapter 8).

m

m

Broken clutch release bearing or fork (Chapter 8).

m

m

Broken diaphragm spring in clutch pressure plate (Chapter 8).

Clutch fails to disengage (unable to select gears)

m

m

Faulty clutch automatic adjuster (Chapter 8).

m

m

Clutch disc sticking on transmission input shaft splines (Chapter 8).

m

m

Clutch disc sticking to flywheel or pressure plate (Chapter 8).

m

m

Faulty pressure plate assembly (Chapter 8).

m

m

Clutch release mechanism worn or incorrectly assembled (Chapter 8).

Clutch slips (engine speed increases, with no
increase in vehicle speed)

m

m

Faulty clutch automatic adjuster (Chapter 8).

m

m

Clutch disc linings excessively worn (Chapter 8).

m

m

Clutch disc linings contaminated with oil or grease (Chapter 8).

m

m

Faulty pressure plate or weak diaphragm spring (Chapter 8).

Judder as clutch is engaged

m

m

Clutch disc linings contaminated with oil or grease (Chapter 8).

m

m

Clutch disc linings excessively worn (Chapter 8).

m

m

Clutch cable sticking or frayed (Chapter 8).

m

m

Faulty or distorted pressure plate or diaphragm spring (Chapter 8).

m

m

Worn or loose engine/transmission mountings (Chapter 2A, B or C).

m

m

Clutch disc hub or transmission input shaft splines worn (Chapter 8).

Noise when depressing or releasing clutch pedal

m

m

Worn clutch release bearing (Chapter 8).

m

m

Worn or dry clutch pedal bushes (Chapter 8).

m

m

Faulty pressure plate assembly (Chapter 8).

m

m

Pressure plate diaphragm spring broken (Chapter 8).

m

m

Broken clutch disc cushioning springs (Chapter 8).

Manual transmission

Noisy in neutral with engine running

m

m

Input shaft bearings worn (noise apparent with clutch pedal
released, but not when depressed) (Chapter 7A).*

m

m

Clutch release bearing worn (noise apparent with clutch pedal
depressed, possibly less when released) (Chapter 8).

Noisy in one particular gear

m

m

Worn, damaged or chipped gear teeth (Chapter 7A).*

Difficulty engaging gears

m

m

Clutch fault (Chapter 8).

m

m

Worn or damaged gear linkage (Chapter 7A).

m

m

Incorrectly-adjusted gear linkage (Chapter 7A).

m

m

Worn synchroniser assemblies (Chapter 7A).*

Vibration

m

m

Lack of oil (Chapter 1).

m

m

Worn bearings (Chapter 7A).*

Jumps out of gear

m

m

Worn or damaged gear linkage (Chapter 7A).

m

m

Incorrectly-adjusted gear linkage (Chapter 7A).

m

m

Worn synchroniser assemblies (Chapter 7A).*

m

m

Worn selector forks (Chapter 7A).*

Lubricant leaks

m

m

Leaking differential side gear oil seal (Chapter 7A).

m

m

Leaking housing joint (Chapter 7A).*

m

m

Leaking input shaft oil seal (Chapter 7A).*

m

m

Leaking selector shaft oil seal (Chapter 7A).

m

m

Leaking speedometer drive pinion O-ring (Chapter 7A).

* Although the corrective action necessary to remedy the symptoms
described is beyond the scope of the home mechanic, the above
information should be helpful in isolating the cause of the condition, so
that the owner can communicate clearly with a professional mechanic.

Clicking or knocking noise on turns (at slow speed
on full-lock)

m

m

Lack of constant velocity joint lubricant (Chapter 8).

m

m

Worn outer constant velocity joint (Chapter 8).

Vibration when accelerating or decelerating

m

m

Worn inner constant velocity joint (Chapter 8).

m

m

Bent or distorted driveshaft (Chapter 8).

 

 

 

 

 

 

 

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