
Clutch,
inspecting
and
installing
1
.
Inspect
clutch
disc
for
wear,
cracks,
loose
rivets,
con-
tamination
or
excessive
runout
(warping)
.
Replace
if
necessary
.
2
.
Inspect
flywheel
for
scoring,
hot
spots,
cracks
or
loose
or
worn
guide
pins
.
Replace
flywheel
if
any
faults
are
found
.
WARNING
-
If
flywheel
is
removed
from
vehicle,
use
new
bolts
duríng
installation
.
The
old
stretch-typebolts
should
not
be
reused
.
3
.
Inspecttransmission
pilot
bearing
in
end
of
crankshaft
.
The
bearing
should
rotate
smoothly
without
play
.
If
nec-
essary,
replace
as
described
later
.
4
.
Inspect
and
clean
releasebearing
lever
.
Apply
a
thin
coat
of
grease
to
releasebearíng
lever
contact
points
.
See
Fig
.
9
.
Also,
lightly
lubricate
clutch
disc
splines
and
transmission
inputshaft
splínes
.
5
.
Install
pressure
plate
and
clutch
disc
.
Do
not
fully
tight-
en
bolts
.
6
.
Center
clutch
disc
on
flywheel
using
centering
tool
(BMW
special
tool
no
.
21
2
130
or
equivalent)
.
Refer
to
Fig
.
7
.
NOTE-
Be
sure
clutchdísc
is
facing
the
correct
way
.
The
new
disc
should
bemarked
engine
sfde
or
transmission
side
.
See
Fig
.
10
.
7
.
Tighten
each
bolt
one
turn
at
a
time
until
pressure
plate
is
fully
seated,
and
then
torque
to
specification
.
8
.
Remove
clutch
disc
centering
tool
.
Remove
flywheel
locking
tool
.
Fig
.
9
.
Clutch
release
lever
lubrication
points
(arrows)
.
CLUTCH
210-
5
Clutch
Clutch
pressure
disc
plate
0012026
Fig
.
10
.
Clutch
assembly
Note
clutch
disc
hub
position
during
instal-
lation
.
CLUTCH
MECHANICAL

210-
6
CLUTCH
9
.
Clean
and
inspectrelease
bearing
guide
sleeve
on
transmission
.
Install
release
lever
and
release
bearing
.
See
Fig
.
11
.
A
0011582
Fig
.
11
.
Clutchrelease
bearing
correctly
installed
on
guide
sleeve
(A)
.
Bearing
tabs
(B)
align
with
contact
points
(C)
on
release
lever
.
10
.
Insta¡¡
transmission
.
See230
Manual
Transmission
.
Tightening
Torques
"
Flywheel
to
crankshaft
(use
new
bolts)
M42/M44
engines
....
.
..
...
....
120
Nm
(89
ft-Ib)
All
others
..........
..
.
..
......
105
Nm
(77
ft-Ib)
"
Pressure
píate
to
flywheel
M8
8
.8
grade
......
...
.
.
........
24
Nm
(18
ft-Ib)
M8
10
.9
grade
.....
..
..
..
.......
34
Nm
(25
ft-Ib)
CLUTCH
MECHANICAL
Transmission
pilot
bearing,
replacing
1
.
Remove
clutch
as
described
earlier
.
2
.
Remove
transmission
pilot
bearing
from
end
ofcrank-
shaft
using
BMW
special
tool
no
.
11
2
340,
or
equiva-
lent
.
3
.
Press
new
bearing
finto
placeusing
BMW
Specíal
Tool
no
.
11
2
350,or
equivalent
.

240-
6
AUTOMATIC
TRANSMISSION
14
.
Remove
transmission
by
pulling
back
and
down
.
Lower
jack
to
allow
transmission
to
clear
vehicle
.
Tightening
Torques
"
ATF
drain
plug
to
ATF
sump
CA
UTION-
MS
270R/A4S
310R
....
..
....
.
..
25
Nm
(18
ft-Ib)
Do
not
allow
the
torque
converter
to
fati
off
the
ASS
310Z(M10
plug)
..
..
..
.
.
..
.
..
16
Nm
(12
ft-Ib)
transmission
inputshaft
.
"
ATF
fill
plug
to
ATF
sump
MS
270R/A4S
310R
..
..
....
..
..
.
33
Nm
(24
ft-Ib)
15
.
Installation
is
reverse
of
removal,
noting
the
following
:
MS
310Z(M30
plug)
......
.
.
..
.
.
100
Nm
(74
ft-Ib)
"Blowoutofcoolerlineswithlow-pressurecompressed
"
ATF
cooler
lines
(A4S
270R/A4S
310R)
air
and
flush
coolerwith
clean
ATF
twice
before
reat-
Coupling
nuts
............
.
.
..
..
.
20
Nm
(15
ft-Ib)
taching
lines
to
transmission
.
Hollow
bolts
.........
.
.....
..
..
.
37
Nm
(28
ft-Ib)
"
Reinforcing
cross
brace
CAUTION-
to
chassis
(M10)
.............
.
..
.
42
Nm
(31
ft-Ib)
"
Wear
safety
glasses
when
working
with
com-
"
Torque
converter
pressedair
.
to
driveplate
(M10)
.........
..
.
..
45
Nm
(33
ft-Ib)
"
Transmissionsupport
crossmember
to
chassis
"
Do
not
reuse
ATF
after
flushing
.
M8
......................
22-24
Nm
(16-17
ft-1b)
M10
................
.
....
..
.
..
42
Nm
(31
ft-Ib)
"
Install
new
sealing
washers
on
hollow
bolts
.
"
Transmissíon
to
engine
(Torx-head
with
washer)
"
Insta¡¡
new
O-rings
on
transmission
cooler
lines,
where
M8
......................
..
.
..
21
Nm
(15
ft-Ib)
applicable
.
M10
.....................
..
..
.
42
Nm
(31
ft-Ib)
"
Inspect
driveplate
for
cracks
or
elongatedholes
.
Re-
M12
................
.
....
..
.
..
72
Nm
(53ft-Ib)
place
if
necessary
.
"
Check
to
be
sure
torque
converter
is
seated
correctly
in
transmission
during
final
installation
.
"
When
mounting
transmission
to
engine,
the
three
mounting
tabs
on
torque
converter
must
be
aligned
with
indentations
on
driveplate
.
Use
an
alignment
dowel
to
line
up
bolt
holes,
if
necessary
.
"
Fill
transmission
with
clean
ATF
until
oil
leve¡
is
even
with
fill
hole
.
Then
check
fluid
leve¡
as
described
ear-
lier
.
"
Adjust
gearshift
mechanism
.
See
250
Gearshift
link-
age
.
NOTE-
Torx-head
mounting
bolts
shouldalwaysbe
used
with
washers
to
prevent
difficult
removal
.
TRANSMISSION
REMOVAL
AND
INSTALLATION

2
.
Install
rubber
grommet
with
arrow
pointing
forward
.
In-
AUTOMATic
TRANSMISSION
stall
shift
rod
and
shift
boot
.
GEARSHIFT
NOTE-
Install
rubbergrommet
correctly
so
that
is
seals
outwa-
ter
.
4
.
Install
driveshaft
and
heat
shield
.
See
260
Driveshaft
.
Manual
valveleven
(at
transmission)
Fig
.
6
.
Automatic
transmission
gearshift
assembfy
.
Shift
cable
GEARSHIFT
LINKAGE
250-
3
The
automatic
transmission
shift
mechanism
is
shown
in
Fig
.
6
.
Use
the
illustration
as
a
guide
when
servícing
the
gear-
shift
mechanism,
including
shift
cable
replacement
.
3
.
Connect
shift
rod
to
shift
lever
.
Install
transmission
crossmember
.
Lift
transmission
and
tighten
crossmem-
Gearshift
mechanism,
adjusting
ber
bolts
.
(automatictransmission)
NOTE-
1
.
Position
selector
lever
in
Park
.
Beforeconnecting
the
shift
rod
to
the
lever,
be
sure
the
2
.
Raise
vehicle
to
gain
access
to
shift
linkage
.
gearshift
leven
is
facing
the
correct
way
as
illustrated
in
Fig
.
1
.
WARNING
-
Make
sure
thecan
is
stable
and
well
supported
at
all
times
.
Use
a
professional
automotive
lift
or
jack
stands
designed
for
the
purpose
.
5
.
Reinstall
exhaust
system
.
See
180
Exhaust
System
.
Connect
oxygen
sensor
harness
connectors
.
3
.
Loosen
selector
cable
clamping
nut
.
See
Fig
.
7
.
6
.
Lower
vehicle
.
Insta¡¡
shift
boot
cover
.
Push
shift
knob
4
.
Push
shift
lever
forwardtoward
engine(Park
position)
onto
lever
.
while
applying
light
pressure
on
cable
end
.
Tighten
ca-
ble
clamping
nut
.
Tightening
Torques
NOTE-
"
Driveshaft
to
final
drive
Do
not
overtighten
the
nut
so
that
it
twists
the
cable
.
flange
(with
U-joint)
.
..
.
.....
.
.
See
250
Driveshaft
"
Flex-disc
to
driveshaft
or
transmission
flange
...
.
.......
See
250
Driveshaft
Tightening
Torque
"
Transmission
crossmember
"
Shift
cable
clamping
nut
.......
10-12
Nm
(75-9
ft-Ib)
to
body
(M8)
.
.
.
...
..............
21
Nm
(16
ft-Ib)
/S
r\
1
1
Gear
position/
neutral
safetyswitch
Automatic
shilo
solenoid
id
AUTOMATIC
TRANSMISSION
GEARSHIFT

Wheel
brake
caliper
Electronic
control
module
Fig
.
4
.
Schematic
representation
of
ABS
.
SUSPENSION,
STEERING
ANDBRAKES-GENERAL
300-3
Fig
.
3
.
Schematic
view
ofdual
circuit
brakes
with
4-channel
ABS
.
ing
adverse
conditions
.
It
automatically
adjusts
brake
system
hydraulic
pressure
at
each
wheel
to
prevent
wheel
lock-up
.
The
system's
main
components
arethe
wheel
speed
(pulse)
sensors,
the
ABS
control
module,
and
the
hydraulic
control
unit
.
See
Fig
.
4
.
Warning
lamp
u
Master
Whee
_
l
speed
I-lydraulic
cylinder
sensor
control
unit
0012135
UNI
The
wheel
speed
sensors
continuously
send
wheel
speed
signals
to
the
control
module
.
See
Fig
.
5
.
The
control
module
compares
these
signals
to
determine,
in
fractions
of
a
second,
whether
any
of
the
wheels
areabout
to
lock
.
If
any
wheel
is
nearing
a
lock-up
condition,
the
module
signals
the
hydraulic
unit
to
maintain
or
reduce
pressure
at
the
appropriatewheel(s)
.
Pressure
is
modulated
by
electrically-operated
sole-
noid
valves
in
the
hydraulic
unit
.
Fig
.
5
.
ABS
wheelspeed
sensor
.
0006563
INTEGRATED
SYSTEMS

300-4
SUSPENSION,
STEERING
AND
BRAKES-GENERAL
Three-channel
ABS
ís
used
on
al[
E36
cars
equipped
with
Al¡
Season
Traction
(AST)
standard
ABS
.
Each
front
wheelhas
a
separate
solenoid
valve
to
modulate
hydraulic
pressure
to
that
brake
caliper
.
The
traction
control
system
works
in
conjunction
with
ABS
The
rear
wheels
are
modulated
asa
pair,
controlled
by
a
sin-
and
the
engine
management
system
to
enhance
vehicle
con
gle
solenoid
valve
.
trol
.
The
main
function
of
the
AST
system
is
to
maintain
the
rolling
contact
between
the
tires
and
the
road
surface
under
al¡
driving
E36
cars
equipped
with
ABS/AST
utilize
a
four
channel
sys-
conditions
.
This
is
achieved
through
exact
application
and
tem,
which
functionsexactly
as
the
three
channelsystem
management
of
braking
and
drivetrain
forces
.
above,except
that
the
rear
wheels
are
modulated
individually
.
IDLE
SPEED
CONTROL
VALVE
HROTTLE
PLATE
6
.
Í
III
i
ADS
ACTU
AT
OR
THROTTLE
PLATE
POSITION
SENSOR
DME
Fig
.
6
.
All
Season
Traction
(AS)
works
withother
drivetrain
systems
to
enhance
vehicle
control
.
INTEGRATED
SYSTEMS
The
throttle
control
system
used
in
AST
is
illustrated
in
Fig
.
MASS
AIR
FLOW
SENSOR
JADS
THROTTLE
PLATE
POSITION
SENSOR
0013006

NOTE-
The
traction
control
system
referred
to
as
AST
(all
sea-
son
traction)
may
also
be
referred
to
as
ASC
(Automat-
ic
Stability
Control)
and
ASC+T
(Automatic
Stability
Control+Traction)
.
The
AST
system
improves
traction
by
electronically
apply-
ing
the
rear
brakes
when
therear
drive
wheels
are
spinning
at
a
faster
rate
than
the
front
wheels
.
The
combined
ABS/AST
control
module,
operating
through
the
ABS
hydraulic
control
unit,
modulates
braking
force
at
therear
wheels
.
In
addition,
AST
uses
retarded
ignition
timing
and
an
auxil-iary
engine
throttle
plate
to
reduceengine
torque
and
maintain
vehicle
stability
.
The
auxiliary
throttle
plate
is
held
open
by
spring
pressure
.
The
AST
system
actívates
the
auxiliary
throttie
position
motor
(ADS)
to
cose
the
AST
throttle
as
needed
.
This
reduces
the
volume
of
engine
intake
air
.
Due
to
the
throttle
closing
very
rapidly
during
AST
operationthe
driver
cannot
increase
theengine
power
output
regardless
of
how
far
theaccelerator
pedal
is
pushed
to
the
floor
.
The
auxiliary
throttle
plate
is
placed
ahead
of
the
conven-
tional
throttle
plate
in
the
throttle
body
.
Traction
control
also
comes
into
operationduringdecelera-
tion
.
Decelerating
on
snowy
or
icy
road
surfaces
can
lead
to
rear
wheel
slip
.
If
a
rear
wheel
startsto
drag
or
lock
up
when
the
throttle
is
closed
rapidly
orduringdownshifting,the
AST
system
can
limit
the
problem
by
advancing
the
ignition
timing
.
A
switch
on
the
center
console
is
used
to
togglethe
AST
on
or
off
.
The
AST
system
is
designed
to
be
maintenance
free
.
There
are
no
adjustments
that
can
be
made
.
Repair
and
trouble-
shooting
of
the
AST
system
requires
special
test
equipment
andknowledgeand
should
be
performed
only
by
an
autho-
rized
BMW
dealer
.
Table
a
lists
theconditions
indicated
by
the
AST
indicator
light
in
the
instrument
cluster
SUSPENSION,
STEERING
AND
BRAKES-GENERAL
300-5
Tablea
.
AST
Indicator
Lamp
Function
Indicator
lamp
1
Condition
1
Comment
Light
on
Normal
AST
start-
Automatic
AST
up
self-test
Light
off
AST
monitoring
Automatic
AST
op-
mode
eration
Press
AST
button,
AST
off
(disabled)
Rocking
the
car
tolight
comes
on
getout
of
snow
or
other
loose
surface
Driving
with
snow
chains
Press
AST
button
:
AST
monitoring
Automatic
AST
op-
light
goes
out
I
mode
eration
Light
flashes
AST
active
mode
I
Normal
AST
oper-
ation
as
it
controls
wheel
speed
Light
stays
on
af-
Defect
in
AST
Consult
BMW
ter
start
up
or
dealer
for
diagno-
comes
on
while
sis/repair
driving
(Vehicle
operation
remains
normal)
WARNING
-
Even
a
car
with
AST
is
subject
to
the
normal
physi-
cal
laws
.
Avoid
excessive
speeds
for
the
road
con-
ditions
encountered
.
CAUTION-
"
If
the
tires
on
the
carare
of
different
makes,
the
AST
system
may
over-react
.
Only
fit
tires
of
the
same
make
and
tread
pattem,
"In
adverse
conditions,
such
as
trying
to
rock
the
car
outof
deep
snow
or
another
soft
surface,
or
when
snow
chainsare
fitted,
it
is
advisable
to
switch
off
AST
and
allow
the
cars
driveline
to
op-
erate
conventionally
.
INTEGRATED
SYSTEMS

increased
power
output
and
road-handling
demands
.
The
steering
geometry
is
modified
by
changing
the
cast-
er/camber
angles
slightly
.
This
is
accomplishedby
reposition-
ing
the
upper
strut
mounting
holes
in
the
frontstrut
towers
and
through
different
front
and
rear
control
arms
.
M3
Brake
System
Improvements
"
Vented
directionalfront
rotors
:
315
mm
dia
.
x
28
mm
thick
.
"
Vented
directional
rear
rotors
:
312
mm
dia
.
x20
mm
thick
.
"
Larger
brake
pads
and
calipers
.
"
Modified
Teves
ABS
system
.
SUSPENSION,
STEERING
AND
BRAKES-GENERAL
300-
7
M3
SUSPENSION
AND
BRAKES
NOTE-
M3
brake
rotors
are
directional,
having
a
different
part
TheE36
M3
was
introduced
in
late
1994
as
a
1995
model
.
number
for
each
side
.
Rotors
with
an
odd
part
number
The
design
of
the
M3
suspension,
steering
and
brakes
is
a
go
on
the
left
while
rotors
with
en
even
part
numbergo
modification
of
existing
E36
systems
which
accommodates
on
the
right
.
M3
Front
SuspensionImprovements
"
Reinforced
spring
plates,control
arms,
control
arm
bush-
ings,
steering
arms
.
"
Recalibrated
struts,
firmer
springs
.
"
Stiffer
stabilizerbar,
larger
stabilizer
bar
bushings
.
"
Front
stabilizer
linked
to
struts
.
M3
Wheels/Tires
"
Front
wheels
1992-1998
:.....
7
.5J
x
17
in
.
light
alloy
"
Rear
wheel
1992-1997
.......
7
.5J
x17
in
.
light
alloy
"
Rear
wheel
(option)
........
.8
.5
Jx17
in
.
light
alloy
"
Front
and
rear
tire
1992-1997
.............
.
.
.
...
...
235/40
x
17
in
.
"
Front
tire
1998
only
......
...
.
.
.
...
225/45
x
17
in
.
"
Rear
tire
1998
only
.......
.
.
.
...
...
245/40
x
17
in
.
CAUTION-
In
en
emergency,
an
M3
front
wheel/tire
assembly
may
be
mounted
on
the
rearaxle
.
However
a
rear
wheel/tire
assemblymust
not
be
mounted
on
the
front
axle
.
M3
RearSuspensionImprovements
"
Reinforced
trailing
arms
.
"
Recalibrated
shock
absorbers,
firmer
springs
.
SUSPENSION
AND
STEERING
TROUBLESHOOTING
Stable
handling
and
ride
comfort
both
depend
on
the
integ-
rity
of
the
suspension
and
steering
components
.
Any
symp-
tom
of
instability
or
imprecise
road
feel
may
be
caused
by
worn
or
damaged
suspension
components
.
When
troubleshooting
suspension
and
steering
problems,
also
consider
the
condition
of
tires,
wheels,
and
their
align-
ment
.
Tire
wear
and
incorrect
inflation
pressures
can
dramati-
cally
affect
handling
.
Subtie
irregularities
in
wheel
alignment
angles
also
affect
stabílity
.
Mixing
different
types
or
sizes
of
tires,
particularly
on
the
same
axle,
can
affect
alignment
and
may
unbalancea
car's
handling
.
Table
b
lists
the
symptoms
of
common
suspension
and
steering
problems
and
their
probable
causes,
and
suggests
corrective
actions
.
Bold
type
indicates
the
repair
groups
where
applicable
test
and
repair
procedures
can
befound
.
SUSPENSION
AND
STEERING
TROUBLESHOOTING