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Driving and Operating 165
10. Install the control arm deflectorto the upper duct using the
screw. Do not tighten at
this time.
11. Install the control arm deflectorto the lower control arm using
the self tapping screws. Do not
tighten at this time.12. Install the two self tappingscrews to the control arm
through both sides of the
airbox cavities. Do not tighten
at this time.
13. Torque all five screws to 4 Y
(35 lb inch).
14. Repeat the procedure for the opposite side of the vehicle.
15. Install the front wheels. Refer to the procedure in the vehicle
service manual.
Wheel Blocker
The following installation procedure
is for Z06 vehicles with the J56
brake package and should be
installed prior to any track events.
The wheel blocker helps improve
the cooling of the brake rotor.
Caution
The wheel blocker is for track use
only. After a track event, remove
the wheel blocker and reinstall
the original splash shield. Failure
(Continued)
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166 Driving and Operating
Caution (Continued)
to reinstall the original parts may
lead to damage to the wheel
blocker, noise, premature brake
pad and rotor wear, and high
speed wet braking.
To install the wheel blocker:
1. Remove the front wheels. Refer to the procedure in the
vehicle service manual. 2. Remove the brake caliper (1)
from the steering knuckle. Do
not disconnect the brake hose.
Refer to the procedure in the
vehicle service manual.
3. Remove the brake rotor retaining fastener (2) and then
remove the brake rotor (3).
4. Remove the two splash shield fasteners (4).
5. Remove the splash shield (5).
6. Install the wheel blocker (1).
7. Install the three wheel blocker fasteners (2). Torque to 10 Y
(89 lb inch).
8. Install the rotor (1) with the
fastener (2). Torque to 10 Y
(89 lb inch).
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Driving and Operating 167
9. Install the caliper (1) with thetwo fasteners (2). Torque to
220 Y (162 lb ft).
10. Repeat the procedure for the opposite side of the vehicle.
11. Reinstall the wheels using the specified lug nut torque. Refer
to the procedure in the vehicle
service manual.
12. After a track event, repeat the steps to reinstall the original
splash shield.
Driving on Wet Roads
Rain and wet roads can reduce
vehicle traction and affect your
ability to stop and accelerate.
Always drive slower in these types
of driving conditions and avoid
driving through large puddles and
deep-standing or flowing water.
{Warning
Wet brakes can cause crashes.
They might not work as well in a
quick stop and could cause
pulling to one side. You could
lose control of the vehicle.
After driving through a large
puddle of water or a car/vehicle
wash, lightly apply the brake
pedal until the brakes work
normally.
Flowing or rushing water creates
strong forces. Driving through
flowing water could cause the
vehicle to be carried away. If this
happens, you and other vehicle
occupants could drown. Do not
ignore police warnings and be
very cautious about trying to drive
through flowing water.
Hydroplaning
Hydroplaning is dangerous. Water
can build up under the vehicle's
tires so they actually ride on the
water. This can happen if the road is wet enough and you are going fast
enough. When the vehicle is
hydroplaning, it has little or no
contact with the road.
There is no hard and fast rule about
hydroplaning. The best advice is to
slow down when the road is wet.
Other Rainy Weather Tips
Besides slowing down, other wet
weather driving tips include:
.
Allow extra following distance.
. Pass with caution.
. Keep windshield wiping
equipment in good shape.
. Keep the windshield washer fluid
reservoir filled.
. Have good tires with proper
tread depth. See Tires0254.
. Turn off cruise control.
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Driving and Operating 179
Leaving the Vehicle with the
Engine Running (Automatic
Transmission)
{Warning
It can be dangerous to leave the
vehicle with the engine running.
It could overheat and catch fire.
It is dangerous to get out of the
vehicle if the shift lever is not fully
in P (Park) with the parking brake
firmly set. The vehicle can roll.
Do not leave the vehicle when the
engine is running. If you have left
the engine running, the vehicle
can move suddenly. You or others
could be injured. To be sure the
vehicle will not move, even when
you are on fairly level ground,
always set the parking brake and
move the shift lever to P (Park).
SeeShifting Into Park 0178.
If you have to leave the vehicle with
the engine running, be sure the
vehicle is in P (Park) and the
parking brake is firmly set before you leave it. After moving the shift
lever into P (Park), hold down the
regular brake pedal. See if you can
move the shift lever away from
P (Park) without first pushing the
button on the lever. If you can, it
means that the shift lever was not
fully locked into P (Park).
Torque Lock (Automatic
Transmission)
If you are parking on a hill and you
do not shift the transmission into
P (Park) properly, the weight of the
vehicle may put too much force on
the parking pawl in the
transmission. You may find it difficult
to pull the shift lever out of P (Park).
This is called
“torque lock.”To
prevent torque lock, set the parking
brake and then shift into P (Park)
properly before leaving the driver
seat. To find out how, see “Shifting
Into P (Park)” previously in this
section.
When you are ready to drive, move
the shift lever out of P (Park) before
releasing the parking brake. If torque lock does occur, you may
need to have another vehicle push
yours a little uphill to take some of
the pressure from the transmission
parking pawl, so you can pull the
shift lever out of P (Park).
Shifting out of Park
This vehicle is equipped with an
electronic shift lock control system.
The shift lock release is designed to
prevent movement of the shift lever
out of P (Park), unless the ignition is
on and the brake pedal is applied.
The shift lock release is always
functional except in the case of an
uncharged or low voltage (less than
9-volt) battery. See
Jump Starting -
North America 0284.
To shift out of P (Park):
1. Apply the brake pedal.
2. Release the parking brake. See Electric Parking Brake
0 190.
3. Press the shift lever button.
4. Move the shift lever to the desired position.
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268 Vehicle Care
.The tire has a bump, bulge,
or split.
.The tire has a puncture, cut,
or other damage that cannot
be repaired well because of
the size or location of the
damage.
Tire Rotation
The tires should be rotated
every 12 000 km/7,500 mi. See
Maintenance Schedule0299.
Tires are rotated to achieve
uniform wear for all tires. The
first rotation is the most
important.
Anytime unusual wear is
noticed, rotate the tires as soon
as possible, check for proper tire
inflation pressure, and check for
damaged tires or wheels. If the
unusual wear continues after the
rotation, check the wheel
alignment. See
When It Is Time for New
Tires 0269 andWheel
Replacement 0273.
Different tire sizes should not be
rotated front to rear.
Use this rotation pattern if the
vehicle has different size tires
on the front and rear.
Adjust the front and rear tires to
the recommended inflation
pressure on the Tire and
Loading Information label after
the tires have been rotated.
See Tire Pressure 0263 and
Vehicle Load Limits 0170. Reset the Tire Pressure Monitor
System. See
Tire Pressure
Monitor Operation 0265.
Check that all wheel nuts are
properly tightened. See “Wheel
Nut Torque” underCapacities
and Specifications 0313.
{Warning
Rust or dirt on a wheel, or on the
parts to which it is fastened, can
make wheel nuts become loose
after time. The wheel could come
off and cause an accident. When
changing a wheel, remove any
rust or dirt from places where the
wheel attaches to the vehicle. In
an emergency, a cloth or a paper
towel can be used; however, use
a scraper or wire brush later to
remove all rust or dirt.
Lightly coat the center of the
wheel hub with wheel bearing
grease after a wheel change or
tire rotation to prevent corrosion
or rust build-up. Do not get
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274 Vehicle Care
Caution
The wrong wheel can also cause
problems with bearing life, brake
cooling, speedometer or
odometer calibration, headlamp
aim, bumper height, vehicle
ground clearance, and tire
clearance to the body and
chassis.
Tightening Wheel Lug Nuts
{Warning
Never use oil or grease on studs
or the threads of the wheel nuts.
The wheel nuts might come loose
and the wheel could fall off,
causing a crash.
{Warning
Incorrect wheel nuts or improperly
tightened wheel nuts can cause
the wheel to become loose and
even come off. This could lead to
a crash. Be sure to use the
correct wheel nuts. If you have to
replace them, be sure to get new
GM original equipment
wheel nuts.
Caution
Improperly tightened wheel nuts
can lead to brake pulsation and
rotor damage. To avoid expensive
brake repairs, evenly tighten the
wheel nuts in the proper
sequence and to the proper
torque specification.
Tighten the wheel lug nuts firmly in
a crisscross sequence. See
Capacities and Specifications 0313.
Tire Chains
{Warning
Do not use tire chains. There is
not enough clearance. Tire chains
used on a vehicle without the
proper amount of clearance can
cause damage to the brakes,
suspension, or other vehicle
parts. The area damaged by the
tire chains could cause loss of
(Continued)
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Technical Data 313
Vehicle Data
Capacities and Specifications
The following approximate capacities are given in metric and English conversions.
SeeRecommended Fluids and Lubricants 0308.
Application Capacities
Metric English
Air Conditioning Refrigerant For the air conditioning system refrigerant charge type and amount, see the refrigerant label underthe hood. See your dealer for more information.
Engine Cooling System 11.2 L 11.8 qt
Intercooler System (LT4) 4.3 L 4.5 qt
Engine Oil with Filter 6.2L LT1 Engine without Z51 or Grand Sport 6.6 L 7.0 qt
6.2L LT1 Engine with Z51 or Grand Sport 9.3 L 9.8 qt
6.2L LT4 Supercharged Engine 9.3 L 9.8 qt
Fuel Tank 70.4 L 18.6 gal
Wheel Nut Torque 140 Y100 lb ft
All capacities are approximate. When adding, be sure to fill to the approximate level, as recommended in this
manual. Recheck fluid level after filling
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314 Technical Data
Engine Specifications
EngineVIN Code Transmission Spark Plug Gap Firing Order
6.2L V8 LT1 7Automatic
Manual 0.95–1.10 mm
(0.037–0.043 in) 1–8–7–2–6–5–4–3
6.2L LT4 Supercharged 6Automatic
Manual 0.725–0.875 mm
(0.029–0.034 in) 1–8–7–2–6–5–4–3
Engine Data
Engine
Horsepower TorqueDisplacement Compression Ratio
6.2L V8 Standard 455460 lb ft 6.2L11.5:1
6.2L V8 with
Performance
Exhaust 460
465 lb ft 6.2L11.5:1
6.2L V8
Supercharged 650
650 lb ft 6.2L10.0:1