air hose FORD KUGA 2011 1.G Repair Manual
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Page 1669 of 2057

57.
E65070
58.
E106249
59.
E112389
60.
E112311
61.To r q u e : 115Nm1.
2. Torque: 90
Nm
E68740
1
2
62.General Equipment: Hose Clamp
Remover/Installer
E112638
G1191241en2008.50 Kuga8/2011
303-01- 136
Engine— 2.5L Duratec (147kW/200PS) - VI5303-01-
136
INSTALLATION
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Page 1675 of 2057

Engine Cooling
Special Tool(s) / General EquipmentPressure Tester, Cooling
System
303-396 (24-001 A)
IA24001A
Adaptor for 303-396
303-396-09
E55030
Ford approved diagnostic tool
Inspection and Verification
1. Verify the customer concern.
2. Visually inspect for obvious signs of mechanicalor electrical damage.
Visual Inspection Chart
Electrical
Mechanical
– Fuse(s)
– Wiring harness
– Electricalconnector(s)
– Engine coolant temperature (ECT)
sensor
– Cooling fan motor
– Cooling fan module
– Powertrain control module (PCM)
– Coolant shut off valve
– Coolant degas shut off valve
– Coolant leaks
– Gaskets/seals
– Core plug(s)
– Hose(s)/hose joints
– Coolant expansion
tank cap and seal(s)
– Coolant expansion tank
– Radiator
– Coolant pump
– Thermostat
– Heater core
– Exhaust gas recircu- lation (EGR) cooler
3. If an obvious cause for an observed or reported concern is found, correct the cause (if possible)
before proceeding to the next step.
4. If the cause is not visually evident, verify the symptom and refer to the diagnostic tab within
the Ford approved diagnostic tool.
G1058974en2008.50 Kuga8/2011
303-03- 4
Engine Cooling
303-03- 4
DIAGNOSIS AND TESTING
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Page 1676 of 2057

Cooling System Draining and Vacuum Filling
General EquipmentCooling System Vacuum Tester and Refiller
Fluid Container
Materials
Specification
Name
WSS-M97B44-D / 4U7J-
19544-AA2A
Antifreeze Super Plus
Premium
Draining
WARNING: When releasing the cooling
system pressure, cover the coolant
expansion tank cap with a thick cloth.
NOTE: Always follow the manufacturer's
instructions when handling the equipment.
1. Refer to: Engine Cooling System Health and
Safety Precautions (100-00 General
Information, Description and Operation).
2.
Release the cooling system pressure by slowly
turning the coolant expansion tank cap between
2 and 3 turns.
E68577
3. Refer to: Lifting(100-02 Jacking and Lifting,
Description and Operation).
4.
E65299
5.
WARNING: Be prepared to collect
escaping fluid.
Use a suitable coolant hose to drain the coolant.
General Equipment: Fluid Container
Loosen: 4
turn(s)
E97501
6.
E97501
G1034816en2008.50 Kuga8/2011
303-03- 5
Engine Cooling
303-03- 5
GENERAL PROCEDURES
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Page 1677 of 2057

7.
E65299
Evacuating and Filling
1.If the cooling system was completely drained,
fill the fluid container with the full cooling
•
system fill capacity plus 0.5L of additional
coolant.
Material: Antifreeze Super Plus Premium(WSS-M97B44-D / 4U7J-19544-AA2A)
antifreeze
• If the cooling system was partially drained, fill the fluid container with the removed and
spilled amount of coolant plus 1.0L of
additional coolant. When in doubt always use
the full cooling system fill capacity plus 0.5L
of additional coolant.
Material: Antifreeze Super Plus Premium(WSS-M97B44-D / 4U7J-19544-AA2A)
antifreeze
2. General Equipment: Cooling System Vacuum
Tester and Refiller
•
3. Close the valve, install the coolant hose and
place it into the fluid container.
1.
2. Close the valve and connect the compressed
air hose.
E96739
1
2
4. Open the valve until the specificied vacuum
is achieved.
2.
E967406-10 bar
1
-0.85 bar
-0.95 bar2
5.
Open the valve until the coolant reservoir
fluid level is at the MAX mark.
•
• If no coolant is visible in the coolant
expansion tank, add 2.0L of coolant to the
fluid container and repeat the evacuating and
filling procedure.
E96741
6.
E68577
G1034816en2008.50 Kuga8/2011
303-03- 6
Engine Cooling
303-03- 6
GENERAL PROCEDURES
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Page 1685 of 2057

Radiator — 2.5L Duratec (147kW/200PS) - VI5(24 254 0)
General EquipmentCable Ties
Hose Clamp Remover/Installer
Removal
NOTE: Removal steps in this procedure may
contain installation details.
1.
E112311
2.
E112335
3. Refer to: Charge Air Cooler (303-12 Intake Air
Distribution and Filtering - 2.5L Duratec
(147kW/200PS) - VI5, Removal and
Installation).
4. Refer to: Cooling System Draining and Vacuum
Filling (303-03 Engine Cooling, General
Procedures).
5. Torque: 25
Nm
E112625
x2x2
6. NOTE: The gasket is to be reused unless
damaged.
E99980
Vehicles with automatic transmission
7. General Equipment: Cable Ties
G1156381en2008.50 Kuga8/2011
303-03- 14
Engine Cooling
303-03- 14
REMOVAL AND INSTALLATION
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Page 1686 of 2057

E112626
1
2
1
2
All vehicles
8.General Equipment: Hose Clamp
Remover/Installer
G1156381en2008.50 Kuga8/2011
303-03- 15
Engine Cooling
303-03- 15
REMOVAL AND INSTALLATION
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Page 1695 of 2057

Fuel Charging and Controls
General EquipmentFord diagnostic equipment
Inspection and Verification
1. Verify the customer concern by operating the system.
2. Visually inspect for obvious signs of mechanical or electrical damage. Visual Inspection Chart
Electrical
Mechanical
– Loose or corrodedconnector(s)
– Wiring harness
– Fuel injector(s)
– Fuel leaks
– Blocked or contamin-
ated fuel filter
– Damaged fuel supply manifold
– Damaged fuel line connections
– Damaged vacuum hoses
– Fuel rail pressure sensor
3. If an obvious cause for an observed or reported concern is found, correct the cause (if possible)
before proceeding to the next step.
4. If the concern is not visually evident, verify the symptom and refer to the Ford diagnostic
equipment .
Symptom Chart
Action
Possible Sources
Symptom
• CHECK the PATS LED extin-guishes within 3 seconds when
the ignition is turned on.
REFER to: Anti-Theft - Passive
(419-01 Anti-Theft - Passive,
Diagnosis and Testing).
• PAT S .
• Engine does not crank
• REFER to:Starting System
(303-06 Starting System -
2.5L Duratec (147kW/200PS)
- VI5, Diagnosis and Testing).
• Starting system.
• REFER to the Wiring Diagrams.
• Ignition switch.
• Carry out a full enginediagnosis using the guided
diagnostic menu in the Ford
diagnostic equipment.
• Powertrain control module
(PCM).
• RESET the IFS switch.
• Inertia fuel shutoff (IFS) switch.
• Engine cranks but does not
start
• Check the fuel system pres-sure.
• Low fuel system pressure.
G1183441en2008.50 Kuga8/2011
303-04A-
4
Fuel Charging and Controls
— 2.5L Duratec (147kW/200PS) -
VI5
303-04A- 4
DIAGNOSIS AND TESTING
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Page 1719 of 2057

6
79108
123
4
5
6
79108
E97592
Description
Item
Exhaust manifold
1
PCV (positive crankcase ventilation)- hose
Comments:to cylinder head
2
Vacuum line - recirculated air valve
Comments:to intake manifold
3
Coolant return pipe
4Description
Item
Turbo boost pressure controller
5
Oil supply pipe - TC
6
Wastegate control valve
7
TC
Comments:Contains the recirculated air valve
8
Coolant supply pipe
9
Oil return pipe - TC
10
G1032424en2008.50 Kuga8/2011
303-04B- 3
Fuel Charging and Controls - Turbocharger
—
2.5L Duratec (147kW/200PS) - VI5
303-04B- 3
DESCRIPTION AND OPERATION
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Page 1720 of 2057

Turbocharger – Overview
Turbocharger(s)
CAUTION: Do not switch off the engine
while it is running at high speed. If the
engine is switched off while it is running
at high speed, the turbocharger will
continue to run after the engine oil
pressure has already dropped to zero. This
will cause premature wear in the
turbocharger bearings.
A TC consists of an exhaust turbine located in the
exhaust gas flow, this turbine is connected to a
compressor by a shaft. The turbine is made to
rotate by the exhaust gas flow from the engine and
thus drives the compressor. The compressor
increases the pressure in the engine intake tract
so that a greater mass of air enters the cylinder
during the intake stroke.
The turbine housing of the TC is integrated into the
exhaust manifold. This construction offers
thermodynamic advantages compared with the
usual construction, the maximum exhaust
temperature is up to 1050°C.
The maximum boost pressure is 0.65 bar.
The exhaust manifold is secured to the exhaust
side of the cylinder head with 12 self-locking nuts.
The exhaust manifold gasket is a multi-layer steel
gasket and cannot be reused. In order to
compensate for the thermal expansion of the
exhaust manifold, the flange of the TC is provided
with two grooves.
The TC and the exhaust manifold are joined by a
hose clip. The hose clip must not be loosened or
removed. The TC and the exhaust manifold are
not available as separate replacement parts,
exchange is only possible as a complete unit.
The turbocharger heat shield is secured to the
exhaust manifold by four bolts. Two of the bolts
have spring washers underneath their heads.
During removal, make a note of the installation
location of the spring washers to refer to during
installation.
The recirculated air valve is built into the TC
housing and cannot be changed.
The Ford diagnostic unit can test the operation of
the wastegate control valve using actuator
diagnosis.
The boost pressure regulator is set in the factory.
Adjustments to the boost pressure regulator must never be attempted. A red colored seal is applied
to the adjustment nut of the operating rod, in order
to monitor the factory setting of the boost pressure.
The bearings of the TC are lubricated with engine
oil. The engine oil passes from the cylinder block
through the oil supply pipe to the TC. The oil is
returned to the oil pan through the oil return pipe,
The TC is cooled by the engine coolant circuit.
When installing hoses and lines, make certain that
their ends are free of oil residues and dirt.
G1032425en2008.50 Kuga8/2011
303-04B-
4
Fuel Charging and Controls - Turbocharger
—
2.5L Duratec (147kW/200PS) - VI5
303-04B- 4
DESCRIPTION AND OPERATION
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Page 1723 of 2057

Recirculated air valve
E97052
43
2
1
Description
Item
Recirculated air valve
1
Vacuum hose to intake manifold
2
Air ingress
3
Air discharge
4
If the throttle valve is closed quickly, the moving
air column hits the throttle valve. The air column
is reversed, flows back onto the rotating impeller
of the TC and powerfully decelerates it. A
recirculated air valve is installed to prevent this
deceleration of the impeller and thus allow the TC
to respond faster. The recirculated air valve is
controlled via a vacuum line which is connected to
the intake manifold. When the throttle valve is
suddenly closed, a high vacuum occurs in the
intake manifold. This opens the recirculated air
valve and the compressed air is returned to a point
before the compressor. This causes the speed of
the turbocharger to drop less rapidly and the boost
pressure can build up more rapidly when the
accelerator pedal is pressed again.
Component Description
Wastegate control valve
1
2
3
E98852
Description
Item
from turbocharger (boost pressure)
1
from turbocharger (atmospheric pressure)
2
to boost pressure regulator (control
pressure)
3
The wastegate control valve operates as a cycle
valve. The pressure acting on the membrane in
the boost pressure regulator is controlled by
appropriate pulsing of the wastegate control valve.
The pressure acting on the membrane in the boost
pressure regulator is reduced when the wastegate
control valve opens.
The operating voltage of the wastegate control
valve is 12V.
The internal resistance of the wastegate control
valve is 28.5 ± 1.5 Ohms.
The operating states are:
• De-energised: gate open between 1 and 3 – Boost pressure high > wastegate controlvalve closed > boost pressure regulator open
> turbine receives restricted exhaust gas
flow.
• Energised: gate open between 2 and 3 – Boost pressure low > wastegate control valveopen > boost pressure regulator closed >
turbine receives full exhaust gas flow.
G1032426en2008.50 Kuga8/2011
303-04B- 7
Fuel Charging and Controls - Turbocharger
—
2.5L Duratec (147kW/200PS) - VI5
303-04B- 7
DESCRIPTION AND OPERATION
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