Safety first! 0.5
Working on your ear can be dangerous. This page shows just some of the potential risks and hazards, with the aim of creating a safety-conscious attitude.
General hazards
Scalding • Don't remove the radiator or expansion tank cap while the engine is hot. • Engine oil, automatic transmission fluid or power steering fluid may also be dangerously hot if the engine has recently been running.
Burning • Beware of burns from the exhau3t system and from any part of the engine. Brake discs and drums can also be extremely hot immediately after use.
Crushing • When working under or near a raised vehicle. ~ always supplement the ' ' -jack with axle stands, or use ... drive-on i'j ramps. kr Never venture ™ under
a
car
vv/j/ch
Is only supported by a jack. • Take card if loosening or tightening high-torque nuts when the vehicle is on stands. Initial loosening and final tightening should be done with the wheels on the ground.
Fire • Fuel Is highly flammable; fuel vapour is explosive. • Don't (et fuel spill onto a hot engine. • Do not smoke or allow naked lights (including pilot lights) anywhere near a vehicle being worked on. Also beware of creating sparks (electrically or by use of toots). • Fuel vapour is heavier than air, so don't work on the fuel system with the vehicle over an inspection pit. • Another cause of fire is an electrical overload or short-circuit. Take care when repainng or modifying the vehicle wiring. • Keep a fire extinguisher handy, of a type suitable for use on fuel and electrical fires.
Electric shock x ^ ^ ? , • Ignition HT _ " voltage can be ^ dangerous, ~ especially to > people with heart problems or a pacemaker. Don't work on or near the f^ ignition system with fT") the engine running or ' J ' J the Ignition switched on.
• Mains voltage is also dangerous. Make sure that any mains-operated equipment is correctly earthed. Mains power points should be protected by a residual current device (RCD) circuit breaker.
Fume or gas intoxication • Exhaust fumes are poisonous: they often contain carbon monoxide, which is rapidly fatal if inhaled. Never run the engine in a confined space such as a garage with the doors shut, • Fuel vapour is also poisonous, as are the vapours from some cleaning solvents and paint thinners.
Poisonous or irritant substances • Avoid skin contact with battery acid and with any fuel, fluid or lubricant, especially antifreeze, brake hydraulic fluid and Diesel fuel. Don't syphon them by mouth. If such a substance is swallowed or gets into the eyes, seek medical advice. « Prolonged contact with used engine oil can cause skin cancer. Wear gloves or use a barrier cream If necessary. Change out of oll-soaked clothes and do not keep oily rags in your pocket. • Air conditioning refrigerant forms a poisonous gas if exposed to a naked flame {including a cigarette). It can also cause skin burns on contact.
Asbestos • Asbestos dust can cause cancer if inhaled or swallowed. Asbestos may be found In gaskets and in brake and clutch linings. When dealing with soch components It is safest to assume that they contain asbestos.
Special hazards
Hydrofluoric acid • This extremely corrosive acid is formed when cerlam types of synthetic rubber, found In some O-rings, oil seals, fuel hoses etc. are exposed to temperatures above 400;C. The rubber changes into a charred or sticky substance containing the acid. Once formed, the acid remains dangerous for years, tfit gets onto the skin, it may be necessary to amputate the limb concerned. • When dealing with a vehicle which has suffered a fire, or with components salvaged from such a vehicle, wear protective gloves and discard them after use.
The battery • Batteries contain sulphuric acid, which attacks clothing, eyes and skin. Take care when topping-up or carrying the battery. • The hydrogen gas given off by the battery is highly explosive. Never cause a spark or allow a naked light nearby. Be careful when connecting and disconnecting battery chargers or jump leads.
Air bags • Air bags can cause injury if they go off accidentally. Take care when removing the steenng wheel and/or facia. Special storage instructions may apply.
Diesel injection equipment • Diesel injection pumps supply fuel at very high pressure. Take care when working on the fuel injectors and fuel pipes.
A
Warning: Never expose the hands, face or any otfterpart of the body to injector spray; the fuel can penetrate the skin with potentially fatal results.
Remember...
DO • Do use eye protection when using power tools, and when working under the vehicle. • Do wear gloves or use barrier cream to protect your hands when necessary. • Do get someone to check periodically that all is well when working alone on the vehicle. • Do keep loose clothing and long hair well out of the way of moving mechanical parts. • Do remove rings, wrtstwatch etc. before working on the vehicle - especially the electrical system, • Do ensure that any lifting or jacking equipment has a safe working load rating adequate for the job.
DON'T • Don't attempt to lift a heavy component which may be beyond your capability - get assistance. • Don't rush to finish a job. or take unverified short cuts. • Don't use ill-fitting toots which may slip and cause injury. • Don't leave tools or parts lying around where someone can trip over them. Mop up oil and fuel spills at once. • Don't allow children or pets to play In or near a vehicle being worked on.
o«8
Roadside repairs
Wheel changing
Some of the details shown horo will vary according to model. For Instance, the location of the spare wheel and jack is not the same on all cars. However, the basic principles apply to aii vehicles-
Preparation
• When a puncture occurs, stop as soon as it Is safe to do so. • Park on firm level ground. If possible, and v/etl out of the way of other traffic. • Use hazard warning lights if necessary.
Changing the wheel
A
Warning: Do not change a wheel (n a situation where you risk being hit by another vehicle. On busy roads, try to stop in a fay-by or a gateway. Be wary of passing traffic white changing the wheel - it Is easy to becomo distracted by the job in hand.
If you have one, use a warning triangle to alert other drivers of your presence. Apply the handbrake and engage first or reverse gear (or P on models with automatic transmission).
• Chock the wheel diagonally opposite the one being removed - a couple of largo stones will do for this. G If the ground is soft, use a flat piece of wood to spread the load under the iack.
I
Tbe spare wheel and tools (Including the jack) are stored
In
the luggage compartment beneath the floor covering. Unscrew the central plastic nut to remove the tool holder.
Slacken each wheel bolt by a half turn Locale the jack under the triangular mark on the 6)11 next to the wheel to be changed, on firm ground
4
Turn the Jack handle clockwise until the wheel Is raised clear of the ground Unscrew the wheel bolts, withdraw the trim and remove the whed
6
Fit Ihe spare wheel on the pins, and screw In the bolts. Lightly lighten tho bolts with the wheelbrace then lowor the vehicle to the ground
Finally...
Securely lighten the wheel bolts in Ihe sequence shown. Note that the wheel bolts should be slackened and retightened to the specified torque at the earliest possible opportunity.
• Remove l)>e wheel chocks.
• Stow the punctured wheel, jack and tools in the correct locations in the car. • Check the tyre pressure on the wheel just fitted. If it is low. or It you don't have a pressure gauge with you, drive slowly to the nearest garage and inflate the tyre to Ihe right pressure.
D When using tho space-saver spare wheel, do not exceed 50 mph (SO kph). C Have the damaged tyre or wheal repaired as soon as possible.
ia.2 Servicing specifications - petrol models
Lubricants and fluids Refer to end ot Weekly checks on page 0*17
Capacities Engine oil (including filter) 1108 cc engine 3.47 litres 1242 cc (8-valvB) engine 3.74 litres 1242 cc (16-valve) engine 2.80 litres Cooling system 4,6 litres
Manual transmission 5-spee d 1.65 litres 6-spee d 1.87 litres Automatic transmission 1.98 litres Power-assisted steering 0.65 Irtres Fuel tank 47 litres Washer reservoir Wllhouthesdllghl washers 2.5 litres With headlight washers 7.0 litres
Engine Olf niter - Champion F107 Auxiliary drivebelt tension 5.0 mm deflection midway between pulleys Valve clearances - engine cold: Inlet Exhaust 1108 cc and 1242 cc (single-point petrol injection) 0.40±0.05mm 0.50±0.05mm 1242 cc (multi-point petrol Injection 0.40 1 0.05 mm 0.45 1 0.05 mm
Cooling system Antifreeze mixture (50% antifreeze) Protection down to -35"C Note: Refer to antifreeze manufacturer for latest recommendations.
Fuel system Engine idle speed . 900 * 50 rpm CO 0.35 maximum Air filter element: 1108 cc engine with 6-speed transmission -... Champion U647 1108 cc engine (Easl Europe) Champion U648 1242 cc engine (60 models) Champion U647 1242
CO
engine (75.85 and Sporting models) Champion U649 Fuel filler: Up to September 1995 October 1995 onwards 1108 cc engine Champion L213 Champion L225 1242 cc engine (60 models) Champion L213 Champion 1225 1242 cc engine {75 models) Champion L203 Champion L225
Ignition system Ignition liming Refer to Chapter 58 Spark plugs: Type Gap* 1108 cc and 1242 cc (6-valve) engines Champion RC9YCC 0.9 mm 1242 cc (16-valve) engine ,... Champion RA4HCC 0.8 mm The spark plug gap quoted Is Diet recommenced by Champion for their specined plugs listed above. If spar* plugs of any other type ere to be fitted, refer to their manufacturer's recommendations. Brakes Brake pad lining minimum thickness 15 mm Brake shoe friction material minimum thickness 2.0 mm
Torque wrench settings Nm itrfft Automatic transmission lluld drain plug 25 10 Automatic transmission fluid sump bolts 4 3 Manual transmission oil drain plug: Stage 1 12 9 Stage 2 Angle-lighten a further 180" Manual transmission oil filler plug 40 30 Roadwheel bolts 86 83 Spark plugs 27 20 Sump drain plug 10 7
1A.12
Every 20 000 miles - petrol models
18.7 Lift up the cover and remove the filter element (18-va!ve engines) 9 Fit a new air (liter element In position, ensuring that the edges are securely seated 10 Refit the air cloaner cover, engage the rear retainers and secure with the three bolts.
19 Spark plug renewal
1 The correct functioning of the spark plugs is vital for the correct running and efficiency of the engine. It is essential that the plugs fitted are appropnate for the engine (a suitable type is specified at the beginning of this Chapter. If this type is used and the engine Is In good condition, the spark plugs should not need attention between scheduled replacement intervals Spark plug cleaning Is rarely necessary, and should not be attempted
19.2a Disconnecting tho HT leads from Iho spark plugs on 8-valve engines ...
19.4 Removing the spark plugs
unless specialised equipment Is available, as damage can easily be caused to the firing ends. 2 To remove the plugs first remove the air cleaner assembly (8-vaive engines) or the a»r cleaner, resonator and inlet air duct (16-valve engines) with reference to Chapter 4A or 4B. if the marks on the original-equipment spark plug (HT) leads cannot be seen, mark the leads 1 to 4, to correspond to the cylinder the lead serves (No 1 cylinder is at the timing belt end of the engine). Pull the leads from the plugs by gripping the end fitting, not the lead, otherwise the lead conneciion may be Iractured (see illustrations) 3 It is advisable to remove the dirt from the spark plug recesses using a clean brush, vacuum cleaner or compressed air before removing the plugs, to prevent dirt dropping into the cylinders. 4 Unscrew the plugs using a spark plug spanner, suitable box spanner or a deep socket and extension bar (see illustration). Keep the socket aligned with the spark plug • If it is forcibly moved to one side, the ceramic insulator may be broken off. As each plug is removed examine 4 as fallows. 5 Examination of the spark plugs will give a good Indication of the condition of the engine. If the Insulator nose of the spark plug Is clean and white, with no deposits, this is Indicative of a weak mixture or too hot a plug (a hot plug transfers heal away from the electrode slowly, a cold plug transfers heat away quickly). 6 If the tip and insulator nose are covered with hard black-looking deposits, this
19.2b ... and on 16-valve engines
19.9 Ad|ustlng a spark plug electrode gap
indicates that the mixture Is too rich. If the plug is black and oily, then It is likely that the engine is fairly worn, as well as the mixture being too rich. 7 If the Insulator nose is covered with light tan to greyish-brown deposits, then the mixture Is correct and it is likely that (he engine Is in good condition. 6 The spark plug electrode gap is of considerable importance as, if it Is too large or too small, the size of the spark and its efficiency will be seriously impaired. The gap should be set to the value given in the Specifications at the beginning of this Chapter. 9 To set the gap. measure it with a feeler blade and then bend open, or closed, the outer plug elect/ode until the correct gap l9 achieved. The centre electrode should never be bent, as this may crack the insulator and cause plug I allure, if nothing worse. If using feeler blades, the gap is correct when the appropriate-size blade is a firm sliding fit (see illustration). 10 Special spark plug electrode gap adjusting tools are available from most motor accessory shops, or from some spark plug manufacturers, 11 Before fitting the spark plugs, check that the threaded connector sleeves are tight, and that the plug exterior surfaces and threads are clean (see Haynes Hint). 12 Remove the rubber hose (If used), and tighten the plug to the specified torque using the spark plug socket and a torque wrench, Refit the remaining spark plugs In the same manner. 13 Connect the HT leads In their correct order, and refit any components removed for access.
It is very often difficult to insert spark plugs into their holes without cross-threading them. To, avoid this possibility, fit a short length of Si 16 Inch Internal diameter rubber hose over the end of the spark plug. The flexible hose acts as a universal Joint to help align the plug with the plug hole. Should the plug beginto cross-thread, the hose will slip on the spark plug, preventing thread damage to the cylinder head
1B.2
Servicing specifications - diesel models
Lubricants and fluids Refer to end of Weekly checks on page 0*17
Capacities Engine oil (including filter) Non-turbo diesei engine 4.95 litres Turbo diesel engine 4.84 litres Cooling system 7.2 litres
Manual transmission Non-turbo diesel engine 2.37 litres Turbo diesei engine t .98 litres Power-assisted steering 0.65 litres
Fuel tank 47 litres Washer reservoir Without headlight washers 2.5 litres With headlight washers 7.0 litres
Engine Oil fitter Engine Idle speed: Non-turbo diesel engine Turbo diesel engine Auxiliary drivebelt tension ...... Valve clearances • engine cold: Inlet Exhaust
Champion C112
8l0«40rpm 900 ± 20 rpm 5.0 mm deflection midway between pulleys
0.30 mm * 0.05 mm 0.35 mm ± 0.05 mm
Cooling system Antifreeze mixture: 50% antifreeze Protection down to-35°C Note: Refer to antifreeze manufactuivr for latest recommendations.
Fuel system Air filter element: Non-turbo diesel engine (with Lucas/CAV Injection) Champion U611 Turbo diesel engine (with Bosch Injection) Champion U579 Fuel filter Champion L120
Brakes Brake pad lining minimum thickness 1-5 mm Brake shoe friction material minimum thickness 2.0 mm
Tyre pressures See end of Weekly checks on page 0*18
Torque wrench settings Fuel filter bracket to body ..... « Fuel filter to bracket i........ Manual transmission oil drain plug: Non-turbo diesel engine: Stage 1 Stage 2 Turbo diesel engine Manual transmission oil filler plug Roadwheel bolts
Nm Ibfft 18 13 24 18
12 9 Angle-tighten a further 180® 46 34 46 34
2A*10 SOHC (8-valve) petrol engine in-car repair procedures
Torque wrench settings Nm
IM
ft Camshaft cover 8 6 Camshaft sprocket 70 52 Cylinder head; Stage 1 30 22 Stage 2 Angle-lighten a further 90° Siege 3 Angle-tighten a further 90B Crankshaft sprocket centre bott 100 74 Engine mounting bolt: M10X1.25 69 44 MB 25 18 Engine mounting nut (M10x 1.25) 60 44 Flywheet/driveplate 44 32 Sump 10 7 Timing belt tensJoner 28 21
1 General information
Using this Chapter Chapter 2 is divided Into four Parts: A. 8. C and D. Repair operations that can be carried out with the engine in the vehicle are described in Part A. SOHC (8-valve) petrol engines, Part B. DOHC (18-valve) petrol engines and Part C, diesel engines. Part 0 covers the removal of the engine/transmission as a unit, and describes the engine dismantling and overhaul procedures. In Parts A, 9 and C, the assumption Is made lhat the engine is Installed in the vehicle, with sll ancillaries connected. If the engine has been removed for overhaul, the preliminary dismantling Information which precedes each operation may be ignored.
Engine description Throughout this Chapter, engines are identified by their capacities. A listing of all engines covered, together with their code letters, is given in the Specifications. The engines covered In this Part of Chapter 2 are water-cooled, single overhead camshaft, in-line four-cylinder units, with cast Iron cylinder Mocks and aluminium-alloy cylinder heads. All are mounted transversely at the front ot the vehicle, with the transmission bolted to the left-hand side of the engine, The cylinder head carries the camshaft which is driven by a toothed timing belt and runs In three bearings. It also houses the inlet and exhaust valves, which are closed by single coil springs, and which run in guides pressed Into the cylinder head. The camshaft actuates the vatves directly via cam followers mounted in the cylinder head. Adjustment of the valve clearances is by means of shims located on top of the followers. The cylinder head contains Integral oitways which supply and lubricate the tappets. The crankshafl Is supported by five main bearings, and endftoat is controlled by a thrust bearing fitted to the upper section of the centre main bearing.
Engine coolant is circulated by 8 pump, driven by the timing belt. For details of the cooling system, refer to Chapter 3. Lubricant is circulated under pressure by a pump, driven from ihe front of the crankshaft. Oil Is drawn from the sump through a strainer, and then forced through an externally-mounted, replaceable screw-on filter. From there, It is distributed to the cylinder head, where It lubricates the camshaft journals and tappets, and also to the crankcase, where il lubricates the main bearings, connecting rod big and smell-ends, gudgeon pins and cylinder bores. On 1242 cc engines, oil jets are fitted lo the base of each cylinder bore -these spray oil onto the underside of the pistons, to Improve cooling.
Repair operations possible with the engine in the car The following work can be carried out with the engine in the car a) Compression pressure - testing b) Auxiliary drivebelt - removal and refitting (refer to Chapter 1A) c) Vatve clearances - checking and adjustment (refer to Chapter I A) d) Camshaft cover - removal and refitting e) Timing belt and covens - removal and refitting f) Timing belt tensioner and sprockets -removal and refitting g) Cylinder head - removal and refitting' h) Camshaft and cam followers • removal and refitting' t) Camshaft oil seal - renews/ j) Crankshaft oil seals - renewal k) Flywheel/dnvepfate • removal, inspection and refitting l) Engine mountings - inspection and renewal m)Sump - removal and refitting n) Oil pump and pick-up tube assembly
•
removai. inspection and refitting *Cylinder head dismantling procedures are detailed In Chapter SO, with details of camshaft and cam follower removal. Note: It is possible to remove the pistons and connecting rods (after removing the cylinder head and sump) without removing the engine. However, this is not recommended. Work of
this nature is more easily and thoroughly completed with the engine on the bench, as described In Chapter 2D.
2 Location of
TDC
on % No
1
cylinder
General Information 1 The camshaft Is driven by the crankshaft, by means of sprockets and a timing belt. Both sprockets rotate In phase with each other and this provides the correct valve timing as the engine rotates. When (he liming belt is removed during servioing or repair, it Is possible for the camshaft and crankshaft to rotate Independently of each other and the correct valve timing Is then lost. 2 The design of the engines covered In this Chapter are such lhat potentially damaging piston-to-valve contact may occur if the camshaft is rotated when any of the pistons are stationary at, or near, the top of their stroke. 3 For this reason it is important lhat Ihe correct phasing between the camshaft and crankshaft is preserved whilst the timing belt Is off the engine. This is achieved by setting the engine In a reference position (known as Top Dead Centre or TDC) before the timing belt Is removed and then preventing the camshaft and crankshaft from rotating until the belt is refitted. Similarly, if ths engine has been dismantled for overhaul, the engine can be set to TOC during reassembly to ensure that Ihe correct shaft phasing is restored. 4 TDC is the highest point In the cylinder that each piston reaches as the crankshaft turns. Each piston reaches TDC at Ihe end of the compression stroke and again at the end of the exhaust stroke. However, for the purpose of timing the ongine. TDC refers to the position of No 1 piston at the end of Its compression stroke. On ail engines In this manual, No 1 piston (and cylinder) Is at the timing belt end of the engine. 5 The camshaft sprocket Is equipped with a marking which, when aligned with a reference marking on the cylinder head, indicates that the camshaft is correctly positioned for cyl-inder No 1 al TDC on its compression stroke.
2A*10 SOHC (8-valve) petrol engine in-car repair procedures
I To make o camshaft sprocket holding ; tool, obtain two lengths of steel strip I about 6 mm thick by 30 mm wide or ; similar, one €00 mm long, the other 200 mm long (all dimensions approximate). Bolt the two strips together to form a forked end, leaving the bolt slack so that the shorter strip can pivot freely. At the end of each 'prong' of the fork, secure a bolt with a nut and a locknut, to act as the fulcrums; these will engage with the cut-outs In the sprocket, and should protrude by about 30 mm
11 Check and adjust the tension of the timing tel with reference to Section 4. 12 Relit Ihe timing belt cover and tighten the bolts. 13 Relit the crankshaft pulley. 14 Refit and tension the auxiliary drivebelt(s)
as
described in Chapter 1. 15 Refil the air cleaner and air ducting as described in Chapter 4A or 48. 16 Refil the roadwheel and lower the vehicle
to the
ground.
Camshaft
sprocket
Removal 17 Remove the timing bell as described in Section 4. 16 The camshaft sprocket must now be held stationary while the retaining bolt is loosened. To
cto this,
make up a tool as follows and engage it
with the
holes
in
the sprocket (see Tool Tip). 19 Alternatively pass a rod through one of the holes in the camshaft sprocket to prevent it rotating. Position a pad of rag or a piece of
integral key
securing bolt and washer...
wood under the rod to avoid damaging the cylinder head. 20 Unscrew the bolt and slide the sprocket from the end of tho camshaft. Note the integral location key on the inner face of the sprocket (see illustrations). Inspection 21 With the sprocket removed, examine the camshaft oil seal for signs of leaking. If necessary, refer to Section 7 and renew it. 22 Check the sprocket teeth for damage. 23 Wipe clean the sprocket and camshaft mating surfaces. Refitting 24 Locate the sprocket on the end of the camshaft, then refit the bolt and washer and tighten to the specified torque while holding the camshaft stationary using the method described previously. 25 Refit the timing belt as described in Section 4.
Crankshaft sprocket
Removal 26 Remove the timing belt as described in Section 4. 27 Working beneath the engine, unbolt and remove the flywheel lower cover, then hold the flywheel stationary preferably using a toot which engages the flywheel starter ring gear (see Section 10). Alternatively have an assistant engage a wide-bladed screwdriver with the stader ring gear. 26 Unscrew the crankshaft sprocket retaining bolt and slide the sprocket off the end of the
^P
5.32 Tighten the crankshaft sprocket bolt to the specified torque
end of the camshaft Integral location key (arrowed)
crankshaft. The sprocket may have an integral location key on its inner face (see illustration), or a separate key which locates in a groove in the crankshaft nose may be fitted. Inspection 29 With the sprocket removed, examine the crankshaft oil seal for signs of leaking. If necessary, refer to Section 8 and renew it. 30 Check the sprocket teeth for damage. 31 Wipe clean the sprocket and crankshaft mating surfaces. Refitting 32 Slide the sprocket onto the crankshaft making sure it engages the integral key or separate key, then refit the bolt and washer and tighten the bolt to the specified torque while holding the crankshaft stationary using the method described in paragraph 27 (see illustration). 33 Refit the timing belt as described in Section 4.
6 Camshaft cover -removal and refitting
Removal 1 Remove the air cleaner assembly and inlet duct as described in Chapter 4A or 4B. 2 Progressively unscrew the mounting bolts from the top of the camshaft cover and lift off the cover • note the location of any supports on the bolts (see illustration). If it sticks, do
6.2 Removing the camshaft cover
2A*10 SOHC (8-valve) petrol engine in-car repair procedures
6.3 Camshaft cover gasket
not attempt to lover it ofl • instead free >t by working around the cover and lapping it lightly with a soft-faced mallet, 3 Recover the camshaft covor gasket {see Illustration). Inspect the gasket carefully. And renew It If damage or deterioration is evident. 4 Clean the mating surfaces of the cylinder head and camshaft cover thoroughly, removing all traces of oil and old gasket - take care to avoid damaging the surfaces as you do this.
Refitting 5 Locate a new gasket on the cylinder head and make sure it Is correctly seated. 6 Lower the cover onto the gasket making sure the gasket is not displaced. 7 Insert Ihe mounting bolts and tighten them progressively to the specified torque. 8 Refit the air cleaner assembly and inlet duct with reference to Chapter 4A or 48.
7 Camshaft oil seal • renewal I
1 Remove the timing beft and camshaft sprocket as described in Sections 4 and 5, 2 Using a suitable hooked Instrument, remove the oil seal from the cylinder head taking care not to damage the surface of (he camshaft. 3 Clean the seating in the cylinder head and the end of the camshaft. To prevent damage to the new olf seal as it is being fitted, wrap some adhesive tape around the end of the camshaft and lightly oil it.
4 Dip the new oil seal In oil then locate it over the camshaft making sure that the sealing lips are facing inwards, 5 Using a suitable tubular drift, drive the oil seal squarely Into the cylinder head. Remove the adhesive tape. 8 Refit the camshaft sprocket and liming belt wtth reference to Sections 5 and 4.
8 Crankshaft oil seals - ^ renewal S
Front (right-hand side) oil seal 1 The fronl oil seal is located in tho oil pump on the front of the crankshaft. Remove the timing belt as described in Section 4 and the crankshaft sprocket as described in Section 5. 2 Using a hooked instrument, remove the oil seal from the oil pump casing taking care not to damage the surface of the crankshaft. 3 Clean Ihe seating in the housing and the surface of the crankshaft. To prevent damage to the new oil seal as it is being fitted, wrap some adhesive tape around the end of the crankshaft and lightly oil it. 4 Dtp the new oil seal In oil then offer It up 1o the oil pump casing making sure that tho sealing lips are facing Inwards. G Using a suitable tubular drift, drive the oil seal squarely into the casing. Remove the adhesive tape. 6 Refit the crankshaft sprocket and timing belt with reference to Sections S and 4.
Rear {left-hand side) oil seal Note: The following paragraphs describe renewal of the rear oil seal leaving the housing in position. Refer to Chapter 2D for details of removing the housing. 7 Remove the fiywheel/drlveplate as described in Section 10. 8 Using a suitable hooked instrument, remove the oil seal from the rear oil seat housing taking care not to damage the surface of Ihe crankshaft. 9 Clean the seating In the nousing and the surface of the crankshaft. Check the crankshaft for burrs which may damage the sealing lip of the new seal, and If necessary use a fine file to remove them,
10 Dip the new seal In clean engine oil and carefully locate it over the crankshaft rear flange making sure that It is the correct way round. 11 Progressively tap the oil seal Into the housing keeping It square to prevent distortion. A block of wood is useful for this purpose. 12 Refit the fiywheet/drlvepiate with refer-ence to Section 10.
9 Cylinder head -removal and refitting I
i Removing the timing belt inner covers 9.12 Removing the cylinder head
Removal 1 Disconnect the battery negative termine! (refer to Disconnecting the battery In the Reference Section of this manual). 2 Drain the cooling system as described In Chapter 1A. then remove the air cleaner and ducting as described in Chapter 4A or 48. 3 Disconnect the accelerator cable and controls from the throttle housing. 4 Disconnect the fuel hoses. 5 Disconnect the coolant and vacuum hoses from the cylinder head and inlet manifold. 6 Disconnect all electrical leads noting their location. 7 Remove the Ignition colls with reference to Chapter 58. 8 Remove the timing belt as described in Section 4, then unbolt end remove the timing belt inner covers (see Illustration). 9 Unbolt and remove the Inlet manifold, complete with throttle housing. On MPI models unbolt the fuel rail. 10 Unbolt the exhaust manifold from th» cylinder head, and tie it to the front of tto engine compartment. If preferred remove the manifold completely by unbolting Ihe downpipe. Also disconnect iha downpipe bracket. 11 Unscrew the cylinder head bolts hall a turn at a time in the reverse order to thai shown In illustration 9.24b. When the bolts in free, remove them wtth their washers. 12 Lift the cylinder head from Ihe block (see Illustration), if It is stuck tight Insert pieces
of
wood Into the exhaust or Inlet ports, and use them as levers to rock the head off the block. On no account drive levers into the gasket joint, nor attempt to tap the head sideways,
as
It Is located on positioning dowels. 13 Remove and discard the cylinder heed gasket and the manifold gaskets. 14 The cylinder head can be dismantled after removing the camshaft and cam followers as described in Chapter 2D. 15 If the valves have been ground-in, the valve clearances will require adjusting, as described In Chapter 1A. This should be dons before the cylinder head is refitted to the engine.