Here’s how anti-lock works. Let’s say the road is wet.
You’re driving safely. Suddenly an animal jumps out in
front
of you. The anti-lock system
can change the brake pressure
faster than
any driver could. The computer is
programmed to make the most of available tire and
road conditions.
You slam on the brakes. Here’s what happens with ABS.
A computer senses that wheels are slowing down. If one
of the wheels is about to stop rolling, the computer will
separately work the brakes at each front wheel and at
both rear wheels.
You can steer around the obstacle while braking hard.
As you brake, your computer keeps receiving updates on
wheel speed and controls braking pressure accordingly.
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Remember: Anti-lock doesn’t change the time you need
to get your foot up to the brake pedal or always decrease stopping distance. If you get too close to the vehicle in
front
of you, you won’t have time to apply your brakes
if that vehicle suddenly slows
or stops. Always leave
enough room up ahead to stop, even though you have
anti-lock brakes.
Using Anti-Lock
Don’t pump the brakes. Just hold the brake pedal down firmly and let anti-lock work for you. You may feel the
brakes vibrate, or you may notice some noise, but this
is normal.
Braking in Emergencies
With anti-lock, you can steer and brake at the same
time. In many emergencies, steering can help you more than even
the very best braking.
Steering
Power Steering
If you lose power steering assist because the engine
stops or the system is not functioning, you can steer but
it will take much more effort.
Steering Tips
Driving on Curves
It’s important to take curves at a reasonable speed.
A lot of the “driver lost control” accidents mentioned on
the news happen on curves. Here’s why:
Experienced driver or beginner, each of us is subject to
the same laws of physics when driving on curves. The
traction of the tires against the road surface makes it
possible for the vehicle to change its path when you
turn
the front wheels. If there’s no traction, inertia will keep
the vehicle going in the same direction. If you’ve ever
tried to steer a vehicle on wet ice, you’ll understand this.
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The traction YOLI can get in a curve depends on the
condition of your tires and
the road surface, the angle at
which the curve is banked, and your speed. While you’re
in a curve, speed is the one factor you can control.
Suppose you’re steering through
a sharp curve. Then you
suddenly accelerate. Both control systems
-- steering and
acceleration
-- have to do their work where the tires meet
the road. Adding the sudden acceleration can demand too
much
of those places. You can lose control.
What should you do
if this ever happens? Ease up on the
accelerator pedal, steer the vehicle the way you want
it
to go, and slow down.
Speed
limit signs near curves warn that YOLI should
adjust your speed. Of course, the posted speeds are
based
on good weather and road conditions. Under less
favorable conditions you’ll want to go slower.
If you need to reduce your speed as you approach a
curve, do it before you enter the curve, while your front
wheels are straight ahead.
Try to adjust your speed so YOLI can “drive” through
the curve. Maintain a reasonable, steady speed. Wait to
accelerate until you are out of the curve,
and then
accelerate gently into the straightaway.
Steering in Emergencies
There are times when steering can be more effective
than braking. For example, you come over a hill and
find a truck stopped in your lane, or a car suddenly pulls
out from nowhere, or
a child darts out from between
parked cars and stops right
in front of you. You can
avoid these problem by braking
-- if you can stop in
time. But sometimes you can’t; there isn’t room.
That’s
the time for evasive action -- steering around
the problem.
Your vehicle can perform very well
in emergencies like
these. First apply your brakes. (See “Braking
in
Emergencies” earlier in this section.) Tt is better to
mmve as much speed
as you can from a possible
collision. Then steer around the problem, to the left or
right depending on the space available.
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Loss of Control
Let's review what driving experts say about what
happens when the three control systems (brakes, steering
and acceleration) don't have enough friction where the
tires meet the road to do what the driver has asked.
In any emergency, don't give up. Keep trying to steer and
constantly seek an escape route or area of less danger.
Skidding
In a skid, a driver can lose control of the vehicle.
Defensive drivers avoid most skids by taking reasonable
care suited
to existing conditions, and by not "overdriving"
those conditions.
But skids are always possible.
The three types
of skids correspond to your vehicle's
three control systems.
111 the braking skid, your wheels
aren't rolling.
In the steering or cornering skid, too
much speed or steering
in a curve causes tires to slip and
lose cornering force. And
in the acceleration skid, too
much throttle causes the driving wheels to spin.
A cornering skid and an acceleration skid are best
handled by easing your foot off the accelerator pedal.
If your vehicle starts to slide, ease your foot off the
accelerator pedal and quickly steer the way you want the
vehicle to
go. If you start steering quickly enough, your
vehicle may straighten out. Always be ready for
a
second skid if it occurs.
Of' course, traction is reduced when water, snow, ice,
c gravel or other material is on the road. For safety, you'll
want to slow down
and ad-just your driving to these
conditions.
It is important to slow down on slippery
surfaces because stopping distance
will be longer and
vehicle control more limited.
While driving on
a surface with reduced traction, try
your best to avoid sudden steering? acceleration OF
braking (including engine braking by shifting to a lower
gear).
Any sudden changes could cause the tires to
slide. You may not realize the surface is slippery
until
your vehicle is skidding. Learn to recognize warning
clues
-- such as enough water, ice or packed snow on
the road
to make a "mirrored surface" -- and slow
down when you have any doubt.
Remember:
Any anti-lock brake system (ABS) helps
avoid only the braking skid.
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Driving Guidelines
This multipurpose passenger vehicle is defined as a
utility vehicle in Consumer Information Regulations
issued by the National Highway Traffic Safety
Administration (NHTSA) of the United States
Department
of Transportation. Utility vehicles have
higher ground clearance and a narrower track to make
them capable of performing
in a wide variety of
off-road applications. Specific design characteristics
give them
a higher center of gravity than ordinary cars.
An advantage of
the higher ground clearance is a better
view of the road allowing you
to anticipate problems.
They are not designed for cornering at the same speeds
as conventional two-wheel-drive vehicles any more
than low-slung sports cars are designed to perform
satisfactorily under off-road conditions. If at
all
possible, avoid sharp turns or abrupt maneuvers. As
with other vehicles of this type, failure to operate this
vehicle correctly may result
in loss of control or
vehicle rollover.
Operating Your Bravada
Off Paved Roads
Many of the same design features that help make
Bravada responsive
on paved roads during poor weather
conditions
-- features like the locking rear axle and
all-wheel drive
-- help make it much better suited for
off-road use than
a conventional passenger car. Its
higher ground clearance also helps Bravada step over
some off-road obstacles.
But Bravada doesn‘t have
features like special underbody shielding and a transfer
case low gear range, things that are usually thought
necessary for extended or severe off-road service. This
guide is for operating your Bravada off paved roads.
Also, see “Anti-Lock Brakes” in the Index.
Off-road driving
can be great fun. But it does have some
definite hazards. The greatest of these is the terrain itself.
“Off-roading” means you’ve left the great North
American road system behind. Traffic lanes aren’t
marked. Curves aren’t banked. There are no road signs.
Surfaces can be slippery, rough, uphill or downhill. In
short, you’ve gone right back to nature.
Off-road driving involves some new skills. And that’s
why it’s very important that you read this guide.
You‘ll
find many driving tips and suggestions. These will help
make your off-road driving safer and more enjoyable.
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Driving Downhill
When off-roading takes you downhill, you'll want to
consider a number
of things:
0 How steep is the downhill'? Will I be able to maintain
vehicle control?
0 What's the surface like'? Smooth'? Ro~lgh'? Slippery?
Hard-packed dirt'? Gravel?
0 Are there hidden surfdce obstacles? Ruts'? Logs'?
Boulders?
0 What's at the bottom of the hill? Is there a hidden
creek bank or even a river bottom
with large rocks?
If you decide you can go down a hill safely, then try to
keep
your vehicle headed straight down, and use a low
they won't have to do all the work. Descend slowly,
keeping your vehicle under control at all times.
i> (rear. This way, engine drag can help your brakes and
.. . -,
A CAUTION:
Heavy braking when going down a hill can cause
your brakes to overheat and fade. This could cause loss of control and a serious accident.
Apply the brakes lightly when descending a hill
and use a low gear to keep vehicle speed under
control.
Are there some things
I should not do when
driving down a hill?
A: Yes! These are important because if you
ignore them you could lose control and have
a
serious accident.
0 When driving downhill, avoid turns that take you
across the incline of the hill. A hill that's not too
0
steep to drive down may be too steep to drive across.
You could roll over
if you don't drive straight down.
Never go downhill with the transmission
in
NEUTRAL (N). This is called "free-wheeling."
Your brakes will have to do all the work and could
overheat and fade.
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Am I likely to stall when going downhill?
A: It’s much more likely to happen going uphill. But if
it happens going downhill, here‘s what to do.
Stop your vehicle by applying the regular brakes.
Apply the parking brake.
Shift to PARK (P) and, while still braking, restart
the engine.
Shift back to a low gear, release the parking brake,
and drive straight down.
If the engine won’t start, get out and get help.
Driving Across an Incline
Sooner or later, an off-road trail will probably go across
the incline
of a hill. If this happens, you have to decide
whether to
try to drive across the incline. Here are some
things to consider:
A hill that can be driven straight up or down may be
too steep
to drive across. When you go straight up or
down
a hill, the length of the wheel base (the distance from the front wheels
to the rear
wheels)
reduces the likelihood
the vehicle will tumble end
over end.
But when you drive across an incline, the
much more narrow track width (the distance between
the left and right wheels) may not prevent the vehicle
from tilting and rolling over.
Also, driving across an
incline puts more weight
on the downhill wheels.
This could cause
a downhill slide or a rollover.
Surface conditions can be a problem when you drive
across a hill.
Loose gravel, muddy spots, or even wet
grass can cause your tires to slip sideways, downhill.
If the vehicle slips sideways,
it can hit something
that will trip
it (a rock, a rut, etc.) and roll over.
0 Hidden obstacles can make the steepness of the
incline even worse.
If you drive across a rock with
the uphill wheels, or
if the downhill wheels drop into
a rut or depression, your vehicle can tilt even more.
For reasons like these, you need to decide carefully
whether to try to drive across
an incline. Just because the
trail goes across the incline doesn’t mean you have
to
drive it. The last vehicle to try it might have rolled over.
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If the water isn‘t too deep, then drive through it slowly. At
fast speeds, water splashes on your ignition system and
your vehicle can stall. Stalling can also occur if you get
your tailpipe under water. And, as long as your tailpipe is
under water, you‘ll never be able to start your engine.
When you go through water, remember that when your
brakes get wet, it may take you longer to stop.
A CAUTION: I
Driving through rushing water can be dangerous.
Deep water can sweep your vehicle downstream
and you and your passengers could drown.
If it’s
only shallow water, it can still wash away the
ground from under your tires, and you could lose
traction and roll the vehicle over. Don’t drive
through rushing water.
See “Driving Through Water” in the Index for more
information on driving through water.
After Off-Road Driving
Remove any brush or debris that has collected on the
underbody, chassis or under the hood. These
accumulations can be a fire hazard.
After operation in mud or sand, have the brake linings
cleaned and checked. These substances can cause
glazing and uneven braking. Check the body structure,
steering, suspension, wheels, tires and exhaust system
for damage. Also, check the fuel lines and cooling
system for any leakage.
Your vehicle will require more frequent service due to
off-road use. Refer
to the Maintenance Schedule for
additional information.
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