Measure BMW 325i 1996 E36 Owner's Manual
[x] Cancel search | Manufacturer: BMW, Model Year: 1996, Model line: 325i, Model: BMW 325i 1996 E36Pages: 759
Page 242 of 759

260-2
DRIVESHAFT
Further
inspection
requires
removal
of
the
driveshaft
.
Check
the
front
centering
guide
on
the
transmission
output
flange
for
damage
or
misalignment
.
Also
check
runoutatthe
transmission
outputflange
and
output
shaft,
and
at
the
final
drive
input
flange
.
Check
the
bolt
hole
bores
in
theflange
for
wear
and
elongation
.
Driveshaftflange
runout
(max
.
allowable)
"
Transmission
outputflange
axial
play
...
.
..
...
..
.
.......
0
.10
mm
(0
.004
in
.)
radial
play
.......
...
.
.
.......
0
.07
mm
(0
.003
in
.)
"
Final
driveinput
flange
radial
play
(measured
at
driveshaft
centering
lip)
..
......
0
.07
mm
(0
.003
in
.)
Spinthe
center
bearing
and
check
for
the
smooth
operation
without
play
.
Check
that
thesplines
of
the
sliding
coupling
move
freely
.
Clean
and
lubricate
the
splines
with
molybdenum
disulfide
grease
(Molykote
®
Longterm
2
or
equivalent)
.
Check
the
universal
joints
for
wear
or
binding
.
If
any
joint
isdif-
ficult
to
move
or
binds,
the
driveshaft
section
should
be
replaced
.
Table
a
.
Driveshaft
Troubleshooting
NOTE-
With
the
driveshaft
installed,
theactual
amount
that
the
universal
joints
pivot
is
limited
.
For
the
most
accurate
test,
check
universal
joints
in
their
normal
range
of
movement
.
If
inspection
revealsnothing
wrong
with
the
driveshaft,
it
may
need
to
be
rebalanced
.
This
can
be
done
by
a
speciality
driveshaft
repair
shop
.
Also,
check
the
alignment
ofthe
drive-
shaft
as
described
below
.
NOTE-
Minor
driveshaftvibrations
can
often
be
correctedsim-
ply
by
disconnecting
the
driveshaftat
the
finaldrive,
and
repositíoning
the
driveshaft
90°,
180°
or270°
inre-
lationto
the
final
drive
input
flange
.
Table
a
lists
symptoms
of
driveshaft
problems
and
their
probable
causes
.
Most
of
the
repair
information
is
contained
within
this
repair
group
.
Symptom
Probable
cause
Corrective
action
1
.
Vibration
when
a
.
Incorrect
preload
of
center
bearing
.
a
.
Check
preload
of
center
bearing
.
Readjust
preload
.
See
Fig
.
6
.
starting
off
(forward
b
.
Center
bearing
rubber
deteriorated
.
b
.
Inspect
center
bearing
and
rubber
.
Replace
if
necessary
.
orreverse)
.
c
.
Flex-disc
damaged
or
worn
.
c
.
Inspect
flex-disc
.
Replace
if
necessary
.
TROUBLESHOOTING
d
.
Engine
or
transmission
mounts
faulty
.
I
d
.
Inspect
engine
and
transmission
mounts
.
Align
or
replace,
if
nec-
essary
.
e
.
Front
centering
guide
worn,
or
e
.
Check
front
centering
guide
and
replace
if
necessary
.
Check
driveshaft
mounting
flanges
out
of
runout
of
driveshaft
flanges
.
round
.
f
.
Universal
joints
worn
or
seized
.
f
.
Check
universal
joint
play
and
movement
.
Replace
driveshaft
if
necessary
.
g
.
Sliding
coupling
seized
.
g
.
Remove
driveshaft
and
check
movement
of
sliding
coupling
.
Clean
coupling
splines
and
replace
parts
asnecessary
.
h
.
Driveshaft
misaligned
.
h
.
Check
driveshaft
alignment
.
2
.
Noise
during
on/off
a
.
Finaldrive
components
worn
or
a
.
Remove
final
drive
and
repair
.
throttle
or
when
damaged
(excessive
pinion-to-ring-
engagíng
clutch
.
gear
clearance)
.
b
.
Drive
axleor
CV
joint
faulty
.
b
.
Inspect
drive
axles
and
CV
joints
.
Repair
or
replace
as
neces-
sary
.
c
.
Sliding
coupling
seized
.
c
.
Remove
driveshaft
and
check
movement
of
sliding
coupling
.
Clean
coupling
splines
and
replace
parts
as
necessary
.
3
.
Vibration
at
25
to
30
a
.
Front
centering
guideworn,
or
a
.
Check
front
centering
guide
and
replace
if
necessary
.
Check
mph
(40
to
50
driveshaft
mounting
flanges
out
of
runout
of
driveshaft
mounting
flanges
.
km/h
).
round
or
damaged
.
b
.
Universal
joints
worn
or
seized
.
b
.
Check
universal
joint
play
and
movement
.
Replace
driveshaft
if
necessary
.
c
.
Flex-disc
damaged
or
worn
.
c
.
Inspect
flex-disc
.
Replace
if
necessary
.
d
.
Center
bearing
rubber
deteriorated
.
d
.
Inspect
center
bearing
.
Replace
if
necessary
.
e
.
Sliding
coupling
seized
.
e
.
Remove
driveshaft
and
check
movement
of
sliding
coupling
.
Clean
coupling
splines
and
replace
parts
asnecessary
.
f
.
Misaligned
installed
position
.
f
.
Check
driveshaft
alignment
.
Page 256 of 759

300-8
SUSPENSION,
STEERING
AND
BRAKES-GENERAL
Tableb
.
Suspension
and
Steering
Troubleshooting
Symptom
1
Probable
cause
Repairs
(Repair
Groups
shown
in
bold)
Car
pulís
to
one
side,
wanders
a
.
Incorrect
tire
pressure
a
.
Check
and
correct
tire
pressures
.
020
b
.
Incorrect
wheel
alignment
b
.
Check
and
adjust
wheel
alignment
.
320
c
.
Faulty
brakes
(pulls
only
when
braking)
I
c
.
Check
for
sticking/damaged
front
caliper
.
340
Steering
heavy,
poor
return-
a
.
Worn
upper
strut
bearing(s)
a
.
Replace
strut
bearings
.
310
to-center
b
.
Incorrect
tire
pressure
b
.
Check
and
correct
tire
pressures
.
020
c
.
Power
steering
system
faulty
c
.
Check
power
steering
fluid
level
.
Test
system
pressure
.
320
Front-end
or
rear-end
vibra-
a
.
Worn
strut
cartridgesor
shock
absorbers
a
.
Replace
strut
cartridges
.
310,
330
tion
or
shimmy
b
.
Worn
suspension
bushings
(control
arm
or
trail-
b
.
Replace
worn
bushings
.
310,
330
ing
arm)
c
.
Worn
front
suspension
ball
joints
(control
arm,
c
.
Replace
worn
ball
joints
.
310
steering
arm
orsteering
tie-rod
end)d
.
Unbalanced
or
bent
wheels/tires
d
.
Balance
tires
.
Check
tiresfor
uneven
wear
pat-
terns
.
Check
wheels
for
damage
.
e
.
Loose
wheel
lug
boits
e
.
Tighten
lug
boits
to
proper
torque
.
Poor
stability,
repeated
bounc-
I
a
.
Worn
strut
cartridgesor
shock
absorbers
I
a
.
Replace
strut
cartridges
.
310,
330
ing
after
bumps,
suspension
bottoms
outeasily
Suspension
noise
(especially
a
.
Worn
front
upper
strut
bearings
a
.
Replaceupper
strut
bearings
.
310
over
bumps)
b
.
Loose
front
strut
cartridge
b
.
Check/tighten
strut
cartridge
collar
nut
.
310
c
.
Worn
suspensionbushings
(control
arm
or
trail-
c
.
Replace
worn
bushings
.
310,
330
ing
arm)d
.
Worn
stabilizer
bar
rubber
mounts
d
.
Replace
stabilizer
bar
rubber
mounts
.
310,
330
e
.
Loose
suspension
crossmember
e
.
Check
crossmember
for
damage
.
Tighten
mounting
boits
.
Uneven
ride
height
a
.
Incorrect
coil
springs
a
.
Measure
ride
height
and
replacesprings
as
re-
quired
.
310,
330
b
.
Bent
or
damaged
suspension
components
b
.
Inspect,
repair/replace
asnecessary
.
310,
330
c
.
Sagging
coil
springs
c
.
Measure
ride
height
and
replace
springs
as
re-
quired
.
310,
330
Wheel
noise,
continuous
I
a
.
Worn
wheel
bearing
I
a
.
Replacewheel
bearing
.
310,
330
growling,
may
be
more
notíce-
able
when
turning
Steering
loose,
imprecise
a
.
Incorrect
tire
pressure
a
.
Check
and
correct
tire
pressures
.
020
-
b
.
Loose
steering
gearmounting
bolt(s)
b
.
Inspect
and
tighten
boits
.
320
c
.
Worn
tie
rodend(s)
c
.
Replace
tie
rod(s)
and
align
wheels
.
320
d
.
Faulty
front
wheel
bearing
d
.
Replace
wheel
bearing
.
310
e
.
Worn
or
damaged
steering
gear
e
.
Adjust
or
replace
steering
gear
.
320
f
.
Worn
tires
f
.
Replace
tires
.
010
SUSPENSION
AND
STEERING
TROUBLESHOOTING
Page 260 of 759

310-
4
FRONT
SUSPENSION
Strut
assembly,
disassembling
and
assembling
-
Be
sure
upper
spring
pad
is
correctly
installed
to
upper
NOTE-
spring
plate
and
spring
end
is
correctly
seated
in
up-
Springs
andlor
struts
should
always
be
replaced
in
per
and
lower
spring
plates
.
pairs
.
"
Use
a
new
self-locking
top
(center)
nut
.
Tighten
nut
fui-
¡y
before
releasing
spring
compressor
.
Replacing
the
upper
strut
mount,
spring
and
strut
requires
"
Have
car
professionally
aligned
when
job
is
complete
.
that
the
strut
first
bedisassembled
.
For
a
guide
to
the
parts
during
strut
replacement,
see
Fig
.
5
.
Tightening
Torques
WARNING-
"
Upper
strut
mount
to
strut
shaft
(seif-locking
nut)
Do
not,attempt
to
disassemble
thestruts
without
a
shaft
with
external
hexagon
......
..
65
Nm
(48
ft-1b)
springcompressordesignedspecificallyforthisjob
.
shaft
with
interna¡
hexagon
.......
..
44
Nm
(32
ft-Ib)
"
Road
wheel
to
hub
........
.100±10
Nm
(74
±7
ft-lb)
1
.
Remove
strut
assembly
as
described
earlier
.
Place
in
secure
support
.
Ride
Height
2
.
Using
spring
compressor,
compress
spring
until
spring
force
onupper
mount
is
relieved
.
Ride
height
is
measured
from
the
lower
edge
of
the
wheel
arch
to
the
bottom
edge
of
the
wheel
rim
.
See
Fig
.
6
.
WARNING
-
Make
sure
the
spring
compressor
grabs
the
spring
lf
the
ride
height
is
outside
the
specification
listed,
new
fully
and
securely
before
compressing
it
.
springs
should
be
installed
.
Be
sure
to
have
theold
spring
code
number
on
hand
when
ordering
new
spring
.
3
.
Pry
protective
cover
off
top
ofstrut
assembly,
then
re-
move
top
(center)
nut
andwasher
whileholding
strut
NOTE-
shaftstationary
The
spring
part
number
is
stamped
near
the
end
of
the
spring
cofls
.
4
.
Remove
upper
strut
mount
and
related
components
.
5
.
Release
spring
compressor
carefully
and
evenly,
allow-
ing
spring
lo
expand
slowly
1
Self-locking
hex
nut
Absorber/
Flat
washer
bump
stop
Nut
Cover
Upper
~
strut
mount
Pin
Z
Piston
bellows
Flat
washer
r
i
t1
~
1
Upper
spring
plate
1
1
1
Upper
spring
pad
I
1
-
,
Lower
spring
pad
-
Í
0012136
Fig
.
5
.
Front
spring,
spring
plate
and
related
parts
.
SHOCKABSORBERS
AND
SPRINGS
6
.
Assembly
is
reverse
of
disassembly,
noting
the
follow-
ing
:
Table
a
lists
front
suspension
ride
height
specifications
.
These
specifications
apply
to
a
car
in
a
normally
loaded
posi-
tion
.
When
checking
ride
height
or
installing
suspension
com-
ponents
that
require
thecar
to
be
"normally
loaded,"load
the
car
as
follows
:
Page 261 of 759

Fig
.
6
.
Ride
height
measurement
(A)
is
taken
from
centerof
wheel
archto
bottom
of
wheel
rim
.
Normal
loaded
position
"
Each
front
seat
...
...
.
..
..........
68Kg
(150
Ibs)
"
Rear
seat
(center)
...
.
.
...........
68Kg
(150
Ibs)
"
Trunk
..........
...
.
.
...........
.21
Kg
(46
lbs)
"
Fuel
tank
...
.
..
....
.
.
....................
.fuf
Tablea
.
Front
RideHeight
Specifications
318,323,325,
Wheel
size
M3
models
328
models
15
inch
std
.
suspension
576
mm
(22.67
in)
1555
mm
(21.85
in)
sport
suspension
~
561
mm
(22.09
in)
530
mm
(20
.87
in)
16
inch
std
.
suspension
589
mm
(23.19
in)
1570
mm
(22
.44
in)
sport
suspensíon
~
574
mm
(23.52
in)
545
mm
(21.46
in)
17
inch
std
.
suspension
604
mm
(23.77
in)
585
mm
(23
.03
in)
sport
suspension
~
589
mm
(23.19
in)
~
560
mm
(22
.05
in)
Maximum
variation
between
sides
:
10
mm
(0.4in)
Maximum
deviation
from
specifications
:
10
mm
(0
.4in)
FRONT
SUSPENSION
310-
5
CONTROL
ARMS
On
al¡
models
except
Mas,
theouter
mounting
bushing
and
theouter
ball
joint
on
the
control
arm
are
available
as
replace-
ment
parts
.
If
the
control
arm
center
ball
joint
is
worn,
the
com-
plete
control
arm
will
need
to
be
replaced
.
See
Fig
.
7
.
Fig
.
7
.
Control
arm
.
Outer
ball
joint
and
bushing
are
available
as
re-
placement
parts
(except
M3)
.
Center
ball
joint
is
integral
with
control
arm
.
Special
press
tools
are
requiredto
remove
the
control
arms
and
to
replace
the
control
arm
bushings
.
Read
the
procedure
through
before
beginning
the
job
.
Control
arm,
removing
and
installing
1
.
Raise
car
and
remove
wheel
.
WARNING-
Make
sure
that
thecar
is
firmly
supportedon
jack
standsdesigned
for
the
purpose
.
Place
the
jack
stands
beneath
a
structural
chassis
point
.
Do
not
place
jack
stands
undersuspension
parts
.
2
.
Remove
stabilizer
bar
link
mounting
nut
and
separate
link
from
control
arm
as
described
later
in
this
repair
group
.
NOTE-
On
M3
models,
the
stabilizer
bar
link
attaches
to
the
strut
.
CONTROL
ARMS
Page 270 of 759

320-
4
STEERING
AND
WHEEL
ALIGNMENT
7
.
Remove
fluidline
banjo
bolt
from
steering
gear
.
See
9
.
Remove
steering
gearmounting
bolts
.
See
Fig
.
7
.
Re
Fig
.
5
.
move
steering
gear
from
subframe
crossmember
by
pulling
it
forward
.
CAUTION-
Plug
the
openings
in
the
pump
and
hoseends
to
prevent
dirt
from
entering
the
hydraulic
system
.
NOTE-
It
may
be
necessary
to
remove
other
components
to
gain
access
to
the
steering
gear
.
"
Make
sure
al¡
thread
bores,
bolts,
nuts,
splines
and
mating
surfaces
are
clean
.
Use
new
self-locking
nuts
wherever
applicable
.
"
Use
marks
made
during
removal
to
reassemble
steer-
ing
column
universal
jointto
steering
stub
shaft
.
Make
sure
wheels
are
straight
ahead
.
"
Use
a
new
sealing
washer
on
banjo
fitting
.
Do
not
over-
Fig
.
5
.
Fluid
hoses
and
banjo
bolts
at
steering
gear
(arrows)
.
torque
banjo
bolt
.
"
Install
airbag
to
the
steering
wheel
as
described
in
721
Airbag
System
(SRS)
.
8
.
Remove
lower
steeringshaft
universal
joint
pinch
bolt,
"
Fill
and
bleed
power
steering
system
as
described
ear-
then
pull
universal
joint
half
way
off
steering
gear
shaft
.
lier
.
Mark
relationship
between
shaft
and
universal
joint,
"
Have
thecar
professionally
aligned
.
then
remove
universal
joint
from
steering
gear
.
See
Fig
.
6
.
0013231
Fig
.
6
.
Steering
column
universal
joint
pinch
bolt
(arrow)
.
Mark
U-
joint
to
shaft
before
disconnecting
.
With
wheels
in
straight
ahead
position,
mark
on
steering
gear
(A)
should
align
with
split
seam
in
universal
joint
(B)
.
STEERING
GEAR
Fig
.
7
.
Steering
gear
mounting
bolts
(arrows)
.
Outer
tie
rod
end,
replacing
10
.
Installation
is
reverse
of
removal,
noting
the
following
:
Tightening
Torques
"
Outer
tie
rod
end
to
steering
arm
.
.
..
45
Nm
(33
ft-Ib)
"
Steering
column
universal
joint
to
steering
gear
shaft
(self-locking
nut)
....
..
..
19
Nm
(14
ft-Ib)
"
Steering
gear
to
subframe
crossmember
M10
bolt
..............
.
...
.....
42
Nm
(32
ft-Ib)
"
Steering
fluíd
lines
M10
banjo
bolt
..
..
..
........
.....
12
Nm
(9
ft-Ib)
M14
banjo
bolt
..
..
..
...
..
...
....
35
Nm
(26
ft-lb)
M16
banjo
bolt
..
.......
..
..
.....
40
Nm
(30
ft-Ib)
1
.
Raise
car,
remove
outer
tie
rod
ball
joint
nut,
and
press
out
outer
tie
rod
end
ball
joint
as
described
above
.
2
.
Make
a
reference
measurement
of
outer
tie
rod
end
to
tie
rod
.
See
Fig
.
8
.
Record
measurement
.
NOTE-
Accurate
measuring
of
the
tie
rod
end
in
reference
to
the
tie
rod
will
help
approximate
correct
wheel
align-
mentwhen
new
parts
are
installed
.
Page 271 of 759

Fig
.
8
.
Measuring
tie
rod
end
position
(for
reference
only)
.
3
.
Loosen
outer
tie
rod
end
lock
nut
.
See
Fig
.
9
.
Lock
nut
4
.
Unscrew
tie
rod
end
from
steering
gear
.
0012143
"
Make
sure
all
threaded
parts
are
clean
.
Replace
self-
locking
nuts
and
inner
tie
rod
lockplate
.
"
Install
outer
tie
rod
end
to
new
tie
rod
using
reference
measurement
recorded
earlier
.
Fig
.
9
.
Outer
tie
rod
end
lock
nut
(arrow)
.
"
Have
car
professionally
aligned
.
5
.
Installation
is
reverse
of
removal
.
Make
sure
all
thread-
ed
parts
are
clean
.
Have
thecar
professionally
aligned
.
Tightening
Torques
"
Outer
tie
rod
end
losteering
arm
....
45
Nm
(33
ft-Ib)
"
Outer
tie
rod
end
lock
nut
..
.......
.
35
Nm
(26
ft-Ib)
Tie
rod,
replacing
1
.
Raise
car,
remove
outer
tie
rod
end
ball
jointnut,
and
press
out
outer
tie
rod
end
ball
joint
as
described
above
.
2
.
Make
a
reference
measurement
of
outer
tie
rod
end
to
tie
rod
.
See
Fig
.
8
.
Record
measurement
NOTE-
Accurate
measuring
of
the
tía
rod
end
in
reference
to
the
tie
rod
will
help
to
approximate
wheel
alignment
when
new
parts
are
installed
.
STEERING
AND
WHEEL
ALIGNMENT
320-
5
3
.
Loosen
rack
boot
bellows
clamp
and
slide
bellows
back
.
Inspect
boot
for
any
signof
damage
.
Replace
if
necessary
.
4
.
Unlock
inner
tie
rod
end
lockplate
using
pliers
.
5
.
Using
special
tool,
unscrew
inner
tie
rod
end
from
steeringrack
.
See
Fig
.
10
.
WHEEL
ALIGNMENT
Caster
and
Camber
Fig
.
10
.
Special
tool
(arrow)
installed
on
inner
tie
rod
end
.
6
.
Installation
is
reverse
of
removal,
noting
the
following
:
Tightening
Torques
"
Outer
tie
rod
end
to
steering
arm
..
.
.
45
Nm
(33
ft-Ib)
"
Outer
tie
rod
end
lock
nut
..........
35
Nm
(26
ft-Ib)
"
Inner
tie
rod
to
steering
gear
.......
71
Nm
(52
ft-Ib)
Proper
handling,
stability,
tire
wear,
and
driving
ease
de-
pendupon
the
correct
alignment
of
al¡
four
wheels
.
The
front
axle
is
aligned
in
relation
to
the
rear
axie,
then
the
front
wheels
are
aligned
in
relation
to
one
another
.
This
is
known
as
a
four-
wheel
or
thrust-axis
alignment
.
The
BMW
E36
uses
a
sophisticated
multi-link
suspension
at
the
front
and
rear
of
the
car
.
Proper
alignment
requires
computerized
alignment
equipment
.
Front
and
rear
caster
and
Camber
are
both
fixed
by
the
de-
sign
of
the
car
.
Any
deviations
are
usually
the
result
of
worn
or
damaged
suspension
or
body
parts
.
WHEEL
ALIGNMENT
Page 272 of 759

320-
6
STEERING
AND
WHEEL
ALIGNMENT
Front
Toe-in
andToe
Difference
Angle
Wheel
Alignment
Specifications
Toe-in
is
the
difference
in
the
distance
between
the
front
of
Alignment
specificationsfor
the
E36
are
listed
in
Table
a
the
front
wheels
and
the
rear
of
the
front
wheels
.
It
is
adjusted
and
Table
b
.
The
specifications
only
apply
under
the
following
by
altering
the
length
of
the
outer
tie
rods
.
conditions
:
Toe-in
adjustments
should
only
be
made
on
alignment
equipment
with
the
car
in
normalloaded
position
as
described
below
under
Wheel
Alignment
Specifications
.
Toe
difference
angledetermines
the
progressively
different
pathstaken
by
the
front
wheelsas
the
car
is
turning
.
It
is
fixed
by
the
steering
gear,
but
depends
on
accurate
setting
of
the
toe-in
.
Rear
Toe-in
There
is
no
provision
for
routinerear
wheel
toe-in
adjust-
ment
.
If
any
alignment
angles
deviate
from
specifications,
carefully
inspect
the
rear
trailing
arms,
rear
suspension
sub-
frame
and
al¡
associated
bushings
and
flexible
mounts
for
wear
or
damage
.
After
replacing
any
parts
that
appear
worn
or
damaged,
re-check
thetoe
measurements
.
WHEEL
ALIGNMENT
Table
a
.
Front
Wheel
Alignment
Specifications
"
Correct
wheels
and
tires
are
installed,
in
good
condition,
and
are
at
the
correct
inflation
pressures
.
"
Al¡
steering
and
suspension
parts
and
bushings
areun-
damaged
and
show
no
signs
of
abnormal
wear
.
"
Wheel
bearings
are
in
good
condition
.
"
Ride
height
is
in
accordance
with
specifications
.
See
310
Front
Suspension
and330
Rear
suspension
.
"
Car
isin
normal
loaded
position
.
Normal
loaded
position
"
Each
front
seat
.....:.............
68
Kg
(150
lb)
"
Rear
seat
(center)
................
68
Kg
(150
lb)
"
Trunk
.
.
.
..
.......................
21
Kg
(46
lb)
"
Fueltank
.
........................
...
.
..
..
full
3181325
Model
3181325
sport
M3
3
.0
liter
M3
3
.2
liter
suspension
Toe
angle
(total)
0°
18'±8'
0°
18'±8'
0°
10'
±5'
0°
10't5'
Camber
To
1995
-0°
40'±30'
-0°
58'±
30'
-0°55'±30'
-
1995
on
-0°
30'
±30'
-0°
51'±30'
-0°55'±30'
-0°
46'±30'
Caster
10°
wheel
lock
3°
41'±30'
3°
50'±30'
6°
38'±30'
9°
35'±30'
20°
wheel
lock
3°
52'±30'
3°
57'
t30'
6°
52'±30'
7°
50'±30'
Front
Wheel
Displacement
0°
t15'
0°t15'
0°
±15
0°
±15'
Table
b
.
Rear
Wheel
Alignment
Specifications
3181325
Model
3181325
sport
M3
3
.0
liter
M3
3
.2
liter
suspension
Toe
angle
(total)
0°
24't6'
0°
24'±6'
0'30'
.-t6'
0°
30't6'
Camber
-l'
40'
t15'
-2°
0'
t15'
-1
°
45'
t10'
-1'45'±10'
Maximum
allowabledeviation
between
sides
0°
±3'
0°
±3'
0°
t3'
0°
t3'
Page 273 of 759

GENERAL
.......
.
.
.
.
.
.
.
.
.
.......
.
...
.330-1
CV
boot,
replacing
........
.
.
.
.........
.
.330-8
RIDE
HEIGHT
....
.
.
.
.
.
...
.
...
.
.
.
.
.
...
.
330-1
REAR
SUSPENSION
ARMS
.
.
.
.
.
.
.
.
.
..
.
330-9
Trailing
arm,
removing
and
installing
.
.
.
....
330-10
SHOCK
ABSORBERS
AND
SPRINGS
.
.
.
330-2
Trailing
arm
bushing,
replacing
.
...
.
.
.
.
.
..
330-11
Rear
shock
absorber,
removing
and
installing
330-3
Upper
control
arm,
removing
and
installing
.
.330-12
Coil
spring,
removing
and
installing
.
.
.
.
.
.
.
.
330-4
Lower
control
arm,
removing
and
installing
.
.330-12
REAR
WHEEL
BEARINGS
....
.
...
.
.
.
..
330-4
Rear
wheel
bearing,
replacing
.......
.
....
330-5
Final
drive
carrier,
removing
and
installing
.
.330-12
DRIVE
AXLES
..
.
.
.
.
.
.
.
.
.
.............
330-6
TABLE
a
.
Rear
Ride
Height
Specifications
..
.
............
330-1
Drive
axle,
removing
and
installing
.........
330-6
GENERAL
Special
service
tools
are
required
for
some
of
the
work
de-
scribed
in
this
repair
group
.
Read
the
procedures
through
be-
fore
beginning
any
job
.
NOTE
-
A
general
description
of
the
rear
suspension
and
a
troubleshooting
guide
can
be
found
in
300
Suspen-
sion,
Steering
and
Brakes-General
.
RIDE
HEIGHT
Rear
suspension
ride
height
is
controlled
by
the
rear
springs
.
If
the
rear
ride
height
is
not
within
the
specifications
listed,
the
rear
springs
should
be
replaced
.
Ride
height
is
measured
from
the
lower
edge
of
the
wheel
arch
to
the
bottom
edge
of
the
wheel
rim
.
See
Fig
.
1
.
Table
a
lists
rear
suspension
ride
height
specifications
.
ooy
98
These
specifications
apply
to
a
car
in
a
normally
loaded
posi-
tion
.
When
checking
ride
heightor
installing
suspension
com-
Fig
.
1
.
Ride
height
measurement
(A)
is
taken
from
center
of
wheel
ponents,
load
the
caras
follows
:
archto
bottom
of
wheel
rim
.
Normal
loaded
position
"
Each
front
seat
..
...
.
.
.............
68kg
(150
lb)
"
Rear
seat
(center)
..
.
.
.............
68
kg
(150
lb)
"
Trunk
.........
.
.
.
.
.
..............
21kg
(46
lb)
"
Fue¡
tank
.....
.
..
.
.
.
................
.
..
..
.
full
NOTE-
M3
ride
height
is
measured
with
the
car
unladen
.
330
Rear
Suspension
REAR
SUSPENSION
330-1
FINAL
DRIVE
CARRIER
.
.......
.
.
.
.
.
..
330-12
Table
a
.
Rear
RideHeight
Specifications
Wheel
size
318,323,325,
M3
modeis
328
modeis
15
inch
std
.
suspension
518
mm
(20
.39
in)
sport
suspension
~
507
mm
(19
.96
in)
16
inch
std
.
suspension
531
mm
(20
.91
in)
sport
suspension
~
520
mm
(20
.47
in)
Continued
RIDE
HEIGHT
Page 283 of 759

Fig
.
20
.
Trailing
arm
front
bracket
bolts
(arrows)
.
NOTE-
BMW-supplied
replacement
trailing
arms
come
with
the
bushings
installed
.
Anew
wheel
bearing
will
have
to
be
installed
.
0013222
11
.
If
trailing
arm
is
being
replaced,
transfer
trailing
arm
front
bracket
.
Transfer
attached
brake
system
compo-
nents
to
newarm
as
described
in
340Brakes
.
Insta¡¡
a
new
wheel
bearing
as
described
earlier
under
Rear
Wheel
Bearings
.
12
.
Installation
is
reverse
of
removal
.
"
Alwaysuse
new
self-locking
nuts
.
"
Have
car
professionally
aligned
when
job
is
complete
.
Tightening
Torques
"
Drive
axle
#o
final
drive
unit
mounting
flange
M8
Torx
bolt
......
.
...
.....
.
..
..
64
Nm
(47
ft-Ib)
M10
Torx
bolt
.....
...
.
....
.....
100
Nm
(74
ft-Ib)
"
Road
wheel
to
wheel
hub
.
...
100±10
Nm
(74t7
ft-Ib)
"
Shock
absorber
to
trailing
arm
......
77
Nm
(57
ft-Ib)
"
Trailing
arm
tofront
bracket
.......
110
Nm
(81
ft-Ib)
"
Trailing
arm
bracket
to
body
........
77
Nm
(57
ft-Ib)
"Trailing
arm
to
upper
or
lower
control
arm
(M12
bolt)
....
110
Nm
(81
ft-Ib)
REAR
SUSPENSION
330-
1
1
Trailing
arm
bushing,
replacing
NOTE-
When
replacing
any
bushing
in
the
rear
trailing
arm,
measure
and
recordthe
orientation
and
protrusion
of
the
bushing
from
its
boss
.
Press
in
new
bushing
to
match
the
positionof
theold
one
.
1
.
Remove
trailing
arm
as
described
above
.
2
.
Pressbushing
out
of
trailing
arm
using
appropriate
press
tools
.
3
.
Coat
new
bushing
with
Circolight
9
lubricant
or
equiva-
lent
.
4
.
Using
appropriate
press
tools,
draw
new
bushing
into
trailing
arm
until
previously
measured
protrusion
is
achieved
.
5
.
If
front
bracket
bushing
was
replaced,
alignfront
brack-
et
before
tightening
bolt
.
See
Fig
.
21
.
A
B=8mm
measured
upfrom
cast-
ing
mark
on
trailing
arm
.
0013237
Fig
.
21
.
When
installing
trailing
arm
front
bracketuising
8mm
bar
stock
.
6
.
Installation
is
reverse
of
removal
.
"
Have
car
professionally
aligned
when
job
is
complete
.
Tightening
Torques
"
Trailing
arm
tofront
bracket
.......
110
Nm
(81
ft-Ib)
"Trailing
arm
bracket
to
body
......
.
.
77
Nm
(57
ft-Ib)
REAR
SUSPENSION
ARMS
Page 295 of 759

6
.
Remove
brake
pads
from
caliper
.
Where
applicable,
carefully
pry
pad
wear
sensor
from
pad
.
See
Fig
.
5
.
Fig
.
5
.
Removing
brake
pad
wear
sensor
.
7
.
Inspect
brake
caliper
for
signs
of
leakage
.
Check
that
the
caliper
piston
slides
smoothly
into
caliper
.
Replace
caliper
if
any
faults
are
found
.
CAUTION-
With
the
pads
removed,
residual
hydreulic
pres-
sure
may
cause
the
caliper
piston
to
slide
out
.
Use
a
wooden
block
to
hold
the
piston
in
place
.
8
.
fnsert
brake
pad
wear
sensor
into
cutout
in
new
pad
where
applicable
.
14
.
Place
inner
brake
pad
(with
locating
spring)
ontobrake
NOTE-
caliper
piston
.
Route
pad
wear
sensor
wiring
through
lf
the
brake
lining
indicator
light
illuminated
prior
to
caliper
opening
and
bleeder
dust
cap
.
brake
pad
replacement,
the
wear
sensor
should
be
re-
placed
.
15
.
The
remainder
of
installation
is
reverse
of
removal
.
"
Do
not
lubricate
guide
boits
.
9
.
Slowly
press
piston
back
into
caliper
.
Use
cace
not
to
"
Once
brake
assembly
is
installed
depress
brakepedal
damage
piston
dust
sea¡
.
See
Fig
.
6
.
severa¡
times
before
driving
vehicle
.
NOTE-
"
Open
caliper
bleeder
screw
when
pressing
piston
Tightening
Torques
back
into
caliper
.
Catch
expelled
fluidin
appropriate
"
Brake
caliper
to
brake
pad
container
.
This
procedure
is
highly
recommended
in
carrier
(guide
bolt)
..........
...
.
.
30
Nm
(22
ft-Ib)
the
case
of
cars
with
ABS
.
"
Road
wheel
to
hub
.....
.
..
100±10
Nm
(74±7
ft-Ib)
"
Open
the
bleeder
screw
only
when
applying
force
to
the
piston
.
Do
not
allow
airto
be
drawn
in
through
the
bleeder
screw
.
"
Pressing
the
caliper
piston
in
may
cause
the
brake
flu-
id
reservoir
to
overflow
.
To
prevent
this,
use
a
clean
syringe
to
first
remove
some
fluid
from
the
reservoir
.
BRAKES
340-
5
0012157
Fig
.
6
.
Brake
caliper
piston
being
pressed
into
caliper
to
make
room
for
new
pads
.
Usea
rag
toprotect
caliper
piston
and
seals
.
10
.
Thoroughly
clean
inner
and
outer
surfaces
of
brake
ro-
tor
.
Inspect
rotor
for
cracks,
signs
of
overheating
and
0012156
scoring
.
11
.
Measure
thickness
of
rotor
.
See
Table
b
.
If
rotor
does
not
pass
minimum
thickness
requirements,
or
is
dam-
aged,
replace
as
described
later
.
12
.
Thoroughly
clean
all
contact
points
on
caliper
and
brake
pad
carrier
.
Clean
guide
bolts
and
make
surethey
slide
freely
13
.
Lightly
coat
pad
contact
points
with
brake
anti-squeal
paste
.
Place
outer
brake
pad
onto
caliper
.
Applya
small
amount
of
grease
to
thetop
and
bottom
contact
points
where
the
caliper
contacts
the
pad
carrier
.
BRAKE
PADS,CALIPERS,
ANDROTORS