HEATER
AND AIR
CONDITIONING
1A-13
AIR CONDITIONING
INDEX
Page
General Description
1A-13
Four-Season System
1A-13
Controls
1A-16
Comfortron System
. 1A-18
System Components
lA-19
Controls
1A-20
Universal System
. .
1A-21
Chevy
n
All-Weather System
•
1A-21
Corvette Four-Season System
. 1A-22
General Information
. . . 1A-26
Precautions
in
Handling R-12
1A-26
Precautions
in
Handling Refrigerant Lines
1A-28
Maintaining Chemical Stability
in the
Refrigeration System
1A-28
Gauge
Set 1A-29
Charging Station
IA-29
Leak Testing
the
System
1A-29
Vacuum Pump
1A-30
Availability
of
Refrigerant-12
. . 1A-30
Compressor
Oil 1A-31
Compressor Serial Number
1A-31
Inspection
and
Periodic Service
1A-31
Pre-Delivery Inspection
1A-31
6,000 Mile Inspection
1A-32
Periodic Service
, 1A-32
Installing Gauge
Set to
Check System Operation
....
1A-32
Performance Test
1A-32
Performance Data lA-r33
Comfortron System Operational Test
1A-33
Chevrolet Comfortron Tester
1A-34
Complete System Checks
1A-35
Maintenance
and
Adjustments ......
1A-37
Evaporator Comtrol Valve (POA)
.
1A-37
Page
Thermostatic Switch
1A-37
Expansion Valve
1A-41
Engine Idle Compensator
. . .
1A-42
Evacuating
and
Charging Procedures
1A-42
Purging
the
System
1A-42
Evacuating
and
Charging
the
System
1A-43
Checking
Oil . 1A-43
Component Replacement
and
Minor Repair
1A-45
Refrigerant Line Connections
1A-45
Repair
of
Refrigerant Leaks
1A-46
Preparing System
for
Replacement
of
Component Parts
. 1A-46
Foreign Material
in the
System
.
1A-47
Condenser
.
1A-48
Receiver-Dehydrator
1A-48
Evaporator
1A-49
Expansion Valve
1A-57
Evaporator Control Valve (POA)
1A-59
Thermostatic Switch
or
Blower Switch
. .
1A-59
All Weather-Pull Cable
1A-61
Blower Assembly
1A-62
Air Inlet Valve
.
1A-64
Blower
and
Evaporator Assembly
1A-64
Air Distributor Assembly
and
Outlet Ducts ...... 1A-64
Comfortron Automatic Control Components
1A-66
Collision Procedure lA-70
Four-Season Heater Components
1A-73
Comfortron Heater Components
. . . 1A-75
Compressor
1A-76
Wiring Diagrams
1A-78
Special Tools
.
1A-84
GENERAL DESCRIPTION
Four
air
conditioning systems
are
covered
in
this
section. They are:
1.
The
Four-Season System (Chevrolet, Chevelle,
Camaro and Corvette).
2.
The Comfortron System (Chevrolet).
3.
The All Weather System (Chevy n).
4.
The Universal System (Chevrolet, Chevelle, Chevy
n,
Camaro)
Underhood components (that
is, the
compressor,
con-
denser
and
receiver-dehydrator)
are
much
the
same
in
type,
location
and
method
of
attachment
on all of
the
above systems. The six-cylinder reciprocating compres-
sor
is
bracket-mounted
to the
engine
and
belt driven
from
the
crankshaft pulley.
The
condenser
is
mounted
ahead
of the
engine cooling radiator
and the
receiver-
dehydrator
is
mounted
in
the refrigerant line downstream
of
the
condenser.
All
cooling system components
are
connected by means
of
flexible refrigerant lines.
Evaporator size
and
location differ from system
to
system
as do
methods
of
temperature control
and air
supply
and
distribution.
FOUR-SEASON SYSTEM
The Four-Season system used
in the
Chevrolet,
Chevelle, Camaro,
and
Corvette vehicles
may be
iden-
tified
by the
fact that
it
uses
an
evaporator pressure
control known
as the POA
(Pressure Operated Absolute)
suction throttling valve.
Both
the
heating
and
cooling functions
are
performed
by this system.
Air
entering
the
vehicle must pass
through
the
cooling unit (evaporator)
and
through
(or
around)
the
heating unit,
in
that order, and the system
is
thus referred to
as a
''reheat" system.
The evaporator provides maximum cooling
of the air
passing through
the
core when
the air
conditioning sys-
tem
is
calling
for
cooling.
The
control valve acts in the
system only
to
control
the
evaporator pressure
so
that
minimum possible temperature
is
achieved without core
freeze-up.
The
valve
is
preset,
has no
manual con-
trol,
is
automatically altitude compensated,
and non-
repairable.
The heater core will be hot
at
all times since no water
valve
is
present
in
the system.
System operation
is as
follows (See Figure 24 and 25):
Air, either outside
air or
recirculated
air
enters
the
system
and is
forced through
the
system by the blower.
As
the air
passes through
the
evaporator core,
it
receives maximum cooling
if
the
air
conditioning controls
are calling
for
cooling. After leaving
the
evaporator,
the
air
enters
the
Heater
and Air
Conditioner Selector
Duct Assembly where,
by
means
of
manually operated
diverter doors,
it is
caused
to
pass through
or to
bypass
the heater core
in the
proportions necessary
to
provide
the desired outlet temperature. Conditioned airflow then
enters
the
vehicle through either
the
floor distributor
duct
or the
dash outlets. Remember that the heater core
CHEVROLET CHASSIS SERVICE MANUAL
HEATER AND AIR CONDITIONING 1A-30
Leak Detector
Tool J-6084 (fig. 43) is a propane gas-burning torch
which is used to locate a leak in any part of the system.
Refrigerant gas drawn into the sampling tube attached to
the torch will cause the torch flame to change color in
proportion to the size of the leak. Propane gas fuel
cylinders used with the torch are readily available
commercially throughout the country.
CAUTION: Do not use lighted detector in any
place where combustible or explosive gases,
dusts or vapors may be present;
Operating Detector
1.
Open control valve only until a low hiss of gas is
heard, then light gas at opening in chimney.
2.
Adjust flame until desired volume is obtained. This
is most satisfactory when blue flame is approxi-
mately 3/8" above reactor plate. The reaction plate
will quickly heat to a cherry red.
3.
Explore for leaks by moving the end of the sampling
hose around possible leak points in the system. Do
not pinch or kink hose.
NOTE: Since R-12 is heavier than air, it is
good practice to place open end of sampling tube
immediately below point being tested, partic-
ularly in cases of small leaks.
CAUTION: Do not breathe the fumes that are
produced by the burning of R-12 gas in the de-
tector flame, since such fumes can be toxic in
large concentrations of R?»12.
4.
Watch for color changes. The color of the flame
which passes through the reaction plate will change
to yellow when sampling hose draws in very small
CHIMNEY
REACTION PLATE
BURNER HEAD
Fig.
43—Leak Detector
leaks of R-12. Large leaks will be indicated by a
change in color to a vivid purplish-blue. When the
sampling hose passes the leak, the flame will clear
to an almost colorless pale-blue again. If the flame
remains yellow when unit is removed from leak,
insufficient air is being drawn in or the reaction
plate is dirty.
NOTE: A refrigerant leak in the high pressure
side of the system may be more easily detected
when, if possible, the system is in operation. A
leak on the low pressure side may be most
easily detected after the engine has been shut
off for several minutes to allow system pres-
sures to equalize. This particularly applies to
the front seal.
VACUUM PUMP
A vacuum pump should be used for evacuating air and
moisture from the air conditioning system.
Vacuum pump, Tool J-5428, (fig.. 44) is available for
this purpose. It is used as a component part of the
Charging Station J-8393, described previously. The fol-
lowing precautions should be observed relative to tbe
operation and maintenance of this pump.
' • Make sure dust cap on discharge outlet of vacuum
pump is removed before operating.
• Keep all openings capped when not in use to avoid
moisture being drawn into the system.
• Oil should be changed after every 250 hours of nor-
mal operation.
To change oil, simply unscrew hex nut located on
back side of pump, tilt backward and drain out oil
(fig. 44). Recharge with 8 ounces of vacuum pump
oil.
If you desire to flush out the pump, use this
same type clean oil. Do not use solvent.
NOTE: Improper lubrication will shorten the
life of pump.
• If this pump is subjected to extreme or prolonged
cold, allow it to remain indoors until oil has reached
approximate room temperature. Failure to warm oil
will result in a blown fuse.
• A five ampere time delay cartridge fuse has been
installed in the common line to protect the windings
of the compressor. The fuse will blow if an ex-
cessive load is placed on the pump. In the event the
fuse is blown, replace with a five ampere time delay
fuse - do not use a substitute fuse as it will result in
damage to the starting windings.
• If the pump is being utilized to evacuate a burnt-out
system, a filter must be connected to the intake
fitting to prevent any sludge from contaminating the
working parts, which will result in malfunction of the
pump.
• Do not use the vacuum pump as an air compressor.
AVAILABILITY OF REFRIGERANT-12
Refrigerant-12 is available through Parts Stock in 25
lb.
drums and in 15 oz. disposable cans. Valves are
available for
the"
disposable cans, which may be used as
individual cans or as a group of up to four cans (fig. 45).
Tool J-6272 is used with one through four cans. The
use of the four-can fixture makes it possible to charge
the system with a known quantity of refrigerant without
CHEVROLET CHASSIS SERVICE MANUAL
HEATER AND AIR CONDITIONING 1A-37
VACUUM SYSTEM COMPONENT FUNCTION
Component
Air Door Diaphragm
Power Servo
Vacuum Relay Valve
Mode Door Diaphragm
Defroster Diaphragm
Transducer
Thermo Vacuum Valve
Vacuum Applied
Air Door Open to Outside Air
(Closed to Car Body)
Maximum Heat
Vacuum Applied to One Port Opens a Passage
Through the Valve to Allow Transducer Vacuum
to be Supplied to the Power Servo
Vacuum to Linkage Side
Air Flow Out Heater
Ducts
Full Airflow Out Heater
Outlet
Vacuum to Covered Side
Airflow Out of Upper
Outlets
Full Airflow Out Defroster
Outlets (Full De-ice)
No Vacuum Applied
Air Door Open to
Re circulated Air
(Open to Car Body)
Maximum Cooling
No Vacuum Applied Closes
Vacuum Supply to Power
Servo
Airflow Out of Upper and
Lower Outlets Door Open
1"
from 100% Lower Out-
let Position
Airflow Divided 1/3 Out
Defroster Outlets 2/3
Out Heater Outlets
Supplies Modulated Vacuum to Power Servo
Zero Voltage Applied to Transducer
Results in Maximum Vacuum Supply
10 Volts Applied to Transducer
Results in No Vacuum Supply
(Coolant Hot) Passes Vacuum When System is Calling For Outside Air
MAINTENANCE AND ADJUSTMENTS
EVAPORATOR CONTROL VALVE (POA)
(Chevrolet, Chevelle, Comoro, and Corvette
Four Season) (Chevrolet Comfortron)
The only check for proper POA valve operation is to
check the suction pressure at the valve as during a
performance test. The POA valve is an absolute valve
and will provide different gauge readings based on the
altitude where the readings are being taken. Correct
gauge reading at sea level is 29.5 psig. Gauge readings
will be one-half psi higher for each additional 1000 feet
of elevation. The following table lists gauge readings at
different altitudes. If a valve gives improper gauge
readings, it must be replaced since it is not repairable
or adjustable.
29.5
30.0
30.5
31.0
31.5
32.0
32.5
33.0
33.5
34.0
34.5
psig.
psig.
psig.
psig.
psig.
psig.
psig.
psig.
psig.
psig.
psig.
— Sea 1
— 1000
— 2000
— 3000
— 4000
— 5000
— 6000
— 7000
— 8000
— 9000
Level
ft.
ft.
ft.
ft.
ft.
ft.
ft.
ft.
ft.
— 10000 ft.
THERMOSTATIC SWITCH
(Universal and Chevy II All-Weather System)
Thermostatic switches used in Universal and All-
Weather systems differ only in the capillary tube sensing
unit.
The Chevy n All-Weather System thermostatic switch
has an air sensing capillary which is coiled and attached
to the front of the evaporator core with plastic plugs.
This type of unit is controlled by the temperature of the
air leaving the evaporator.
Universal systems make use of a thermostatic switch
with a fin sensing capillary or a self-supporting air sens-
ing capillary. This capillary controls the switch by
sensing the temperature of the metal fins or the air
leaving the fins.
Checking for Proper Operation
1.
Install the gauge set and set up the vehicle as
described under Performance Test.
2.
Movement of the temperature control knob should
result in a definite change in suction pressure and
cycling of the compressor clutch.
• If compressor continues to operate regardless of
the knob adjustment, it indicates that the points
CHEVROLET CHASSIS SERVICE MANUAL
SECTION
IB
CORVETTE BODY
INDEX
Page
General Description . . * • •.
•
^"i1
Maintenance and Replacements 1B-1
Front End 1B-1
Adjustments IBri
Hood 1B-1
Hood Catch 1B-2
Hood Assembly . 1B-2
Front Emblems 1B-2
Vent Grilles 1B-2
Instrument Panel Tray . 1B-2
Cowl Area Trim
....................
1B-4
Rear View Mirror 1B-4
Outside 1B-4
Inside . 1B-4
Sun Visor . 1B-4
Cowl Ventilator Assembly 1B-4
Windshield ; 1B-5
Doors 1B-7
Adjustments 1B-7
Door Lock Striker 1B-7
Door Window and Vent 1B-7
Door Hinges 1B-7
Trim Panel and Inside Handles IB-11
Weatherstrip 1B-11
Door Ventilator Assembly 1B-12
19437 Model 1B-12
19467 Model 1B-13
Window Glass 1B-13
Glass Run Channel—Upper 1B-14
Window Outer Seal Assembly 1B-14
Window Inner Seal Assembly 1B-14
Glass Run Channel—Rear 1B-15
Window Regulator—Manual 1B-15
Window Regulator—Power 1B-15
Door Lock and Remote Controls 1B-16
Outer Handle . 1B-16
Lock Cylinder 1B-17
Hinges—Door Assembly . 1B-17
Rear Quarter .. . 1B-19
Door Sill and Molding . . 1B-19
Rear End . . r 1B-19
Folding Top Compartment Lid 1B-19
Adjustments . . 1B-19
1B-19
Page
Lock 1B-19
Control 1B-19
Rear Window—19437 Model 1B-21
Gas Tank Door and Rear Trim Plate.,. . . . . . . . 1B-23
Rear Filler Panel 1B-23
Spare Tire Mount 1B-23
Rugs and Interior Trim 1B-25
Cleaning Soft Trim 1B-25
Carpets and Covers—All Models 1B-26
Rear Body Trim , . 1B-26
Soft Covers 1B-26
Rigid Plastic Trim 1B-26
Garnish Moldings Plus-Headliner-19437 Model . . 1B-27
Seats 1B-27
Body Mounting 1B-27
Body Repairs . 1B-27
General Instructions . . . 1B-27
Repair Panels. 1B-28
Precautions 1B-29
Plastic Solder Kit 1B-29
Resin Kit 1B-30
Specific Repairs 1B-32
Scratched Panels-Spot Refinishing 1B-32
Dents in Panels-Surface Cracks !B-33
Cracked Panels . . 1B-35
Fractures 1B-37
Panel Replacement 1B-39
Hard Top . . 1B-41
Care and Storage 1B-41
Rear Window 1B-41
Garnish Moldings and Latches 1B-42
Headlining 1B-43
Weatherstrips and Drip Molding 1B-43
Vinyl Covering . 1B-43
Folding Top 1B-46
Care of Folding Top 1B-46
Care of Rear Window 1B-46
Adjustments 1B-48
Top Assembly, Removal and Installation 1B-49
Top Trim and Rear Window Assembly 1B-50
Frame and Linkage 1B-52
Weatherstrip 1B-52
Adding Hardtop 1B-52
Special Tools 1B-53
GENERAL DESCRIPTION
.
A
structural network
of
steel forms the backbone
of
the
Corvette body. When combined with
the
fiber-glass
re-
inforced plastic body panels,
the
steel-plastic marriage
results
in a
body with increased torsional rigidity
and
greater beaming strength.
Convertible models continue with two roof styles:
the
folding
top
and the removable hardtop. In operation, both
tops function similar to those
of
previous models. Either
top
is
standard and both
are
optional
as
determined by
the top selected
as
base equipment.
MAINTENANCE
&
REPLACEMENTS
FRONT
END
ADJUSTMENTS
(Refer to Figure
2)
Adjustments should
be
made
in
order
-
hood position
first, then catch adjustments.
Hood
The position
of the
hood
in
relation
to
the hood body
opening and the fender surfaces
is
controlled by the posi-
tion
of the
hinges and position
and
adjustment
of
catch
and bumpers.
The fore
and aft
position
of the
hood may be adjusted
CHEVROLET CHASSIS SERVICE MANUAL
SECTION
3
FRONT SUSPENSION
INDEX
Page
General Description
. . . . 3-1
Maintenance and Adjustments
3-3
Front Wheel Bearing Adjustment
3-3
Front End Alignment
3-5 .
Alignment Preliminary Steps ............
3-5
Caster
and
Camber Adjustments
. . 3-5
Chevelle, Caxnaro
and
Corvette
3-5
Chevrolet and Chevy
II 3-6
Steering Axis Inclination
3-6
Toe-in Adjustment
3-6
Cornering Wheel Relationship
3-6
Riding Heigit
and
Coil Spring Sag
3-7
Repair Procedures
3-8
Front Brake Drum (Chevrolet, Camaro, Chevelle,
Chevy E)
. . 3-8
Removal
3-8
Installation
3-8
Front Wheel Hub
3-8
Replacement
. . . . . 3-8
Replacement
of
Hub Wheel Bolts
3-8
Front Wheel Bearings
. . 3-8
Removal
3-8
Inspection
3-9
Repairs
. . 3-9
Replacement
of
Bearing Cups
3-9
Installation
3-9
Steering Knuckle
. . . 3-9
Removal
3-9
Installation
3-9
Shock Absorber
3-10
Chevrolet, Chevelle, Camaro
and
Corvette
3-10
Removal
, . 3-10
Installation
3-10
Chevy
It 3-11
Removal
3-11
Installation
3-11
Stabilizer
Bar 3-11
Removal
3-11
Installation
3-11
Strut Rod
3-11
Chevrolet and Chevy
II 3-11
Removal
3-11
Installation
3-12
Front Coil Springs
3-12
Chevrolet
3-12
Removal
3-12
Installation
3-13
Chevelle
and
Camaro
3-13
Removal
3-13
Installation
3-14
Chevy H
3-14
Removal
3-14
Spring Seat Disassembly and Assembly
3-15
Installation
3-15
Corvette
3-15
Lower Control Arm Spherical Joint
.' 3-16
Chevrolet, Chevelle, Camaro and
Corvette
3-16
Inspection
. 3-16
Chevrolet and Corvette
3-16
Removal
3-16
Installation
3-16
Page
Chevelle
and
Camaro
3-17
Removal
3-17
Installation
. . . . 3-17
Chevy
II 3-17
Inspection
. 3-17
Removal
3-17
Installation
3-17
Lube Fittings
3-18
Lower Control Arm
. . . . 3-18
Chevrolet
. 3-18
Removal
3-18
Installation
3-18
Chevelle and Camaro
3-18
Removal
3-18
Installation
3-18
Chevy H
3-18
Removal
3-18
Installation
3-19
Corvette
3-19
Removal
3-19
mstallation
3-19
Lower Control Arm Bushings
3-20
Chevrolet
3-20
Removal
3-20
Installation
3-20
Chevelle and Camaro
. 3-20
Removal
3-20
Installation
3-20
Chevy H
3-21
Removal
* 3-21
InstaEation
3-21
Cross Shaft and/or Bushings
. 3-21
Corvette
3-21
Removal
3-21
Installation
3-21
Upper Control Arm Spherical Joint
3-21
Chevrolet, Chevelle, Camaro and Corvette
..... 3-21
Inspection.
3-21
Replacement
3-21
Chevy
II 3-21
Inspection
3-21
Replacement
3-21
Lube Fittings
3-22
Upper Control Arm
3-22
Chevrolet, Chevelle, Camaro
and
Corvette
3-22
Removal
3-22
Installation
3-22
Chevy H
3-22
Removal
3-22
Installation
3-23
Upper Control Arm Cross Shaft
and/or Bushings
3-23
Chevrolet, Camaro and Chevelle
3-23
Removal
. 3-23
Installation
3-23
Chevy H
3-24
Removal
3-24
Installation
. . . 3-25
Corvette
3-25
Removal
3-25
Installation
3-25
Special Tools
3-26
Specifications
...'..'
At rear of Book
GENERAL DESCRIPTION
The 1967 Chevrolet, Chevelle, Camaro, Chevy n and
Corvette front suspension systems are basically similar,
being of the
S.L.A.
(short-long arm) type with independent
coil springs. In the Chevrolet, Chevelle, Camaro and
Corvette the springs ride on the lower control arms; in
the Chevy II the springs ride on the upper control arms.
Spherical joints connect the upper and lower arms to the
steering knuckle. Tapered roller wheel bearings are
used.
Camber angle is adjusted, on the Chevrolet and Chevy n
CHEVROLET CHASSIS SERVICE MANIM
FRONT SUSPENSION 3-3
by means of a lower control arm inner pivot cam; on the
Chevelle, Camaro and Corvette by means of upper control
arm inner support shaft shims.
Caster angle is adjusted, on the Chevrolet and Chevy n
by means of a strut rod which runs from the lower con-
trol arm forward to a frame brace; on the Chevelle,
Camaro and Corvette by means of upper control arm
inner support shaft shims.
A stabilizer bar is used on all Chevelle and Corvette
models. Chevrolet Impalas, station wagons and V-8
engine equipped models are fitted with the stabilizer bar.
UPPER CONTROL ARM
STABILIZER
SPRING
LOWER CONTROL ARM
STEERING KNUCKLE
Fig.
3 - Front Suspension - Corvette
MAINTENANCE AND ADJUSTMENTS
Maintenance intervals recommended for lubrication of
front suspension components have been fully covered in
Section 0 of this manual. Only actual adjustment proce-
dures will be covered here.
NOTE:
Unless otherwise indicated all proce-
dures will apply to all five vehicles covered in
this manual.
FRONT WHEEL BEARING ADJUSTMENT
Proper front wheel bearing adjustment has a definite
bearing on the safe operation of a vehicle. Improperly
adjusted front wheel bearings will result in a lack of
steering stability causing wheel wander, shimmy and ex-
cessive tire wear. Very accurate adjustment is possible
because the spindles are drilled both vertically and hori-
zontally and the adjusting nuts are slotted in all six sides.
NOTE:
Wheel bearings should not
be.
repacked
or adjusted as a part of "New Car Conditioning".
1.
With wheel raised, remove hub cap and dust cap and
then remove the cotter pin from the end of the
spindle.
2.
While rotating wheel, tighten spindle nut to 12 lbs. ft
torque.
3.
Back off adjusting nut one flat and insert cotter pin.
If slot and pin hole do not line up, back off the adjust-
ing nut an additional 1/2 flat or less as required to
insert cotter pin.
4.
Spin the wheel to check that it rolls freely and then
lock the cotter pin by spreading the end and bending
it around.
NOTE:
Bearings should have zero preload and
.001"
to .008" end movement when properly ad-
justed on Chevrolet, Chevelle, Camaro and Cor-
vette; .000" to .004" on Chevy H.
5.
Install dust cap, hub cap or wheel disc and lower
wheel.
6. Perform the same operation on each front wheel.
CHEVROLET CHASSIS SERVICE MANUAL
FRONT SUSPENSION 3-10
CHEVROLET, CHEVELLE, CAMARO AND CORVETTE (TYPICAL)
CHEVY H
Fig.
14- Shock Absorber
NOTE:
If necessary, tighten one more notch to
insert cotter pins.
3.
Place brake backing plate and wheel cylinder in posi*-
tion on steering knuckle and insert anchor pin.
4.
Place steering arm in position on back of steering
knuckle and insert two bolts through backing plate,
steering knuckle and steering arm. Install locknuts
and tighten. (See Specifications.)
5. Torque brake anchor pin (See Specifications).
6. Install brake shoes, except Corvette. (See Section 5.)
7. Install wheel hub, brake drum (or, on Corvette--
brake caliper and disc and hub assembly), wheel and
tire assembly over spindle.
8. Insert outer wheel bearing race and roller assembly,
washer and nut. Adjust front wheel bearing as shown
under Maintenance and Adjustments in this section.
Install new cotter pin, dust cap and hub cap.
9. Lower vehicle, recheck and readjust wheel alignment
where necessary.
SHOCK ABSORBER
Chevrolet, Chevelle, Comoro and Corvette (Fig. 14)
Removal
1.
With an open end wrench hold the shock absorber
upper stem from turning, and then remove the upper
stem retaining nut, retainer and rubber grommet.
2.
Remove the two bolts retaining the lower shock ab-
sorber pivot to the lower control arm and pull the
shock absorber assembly out from the bottom.
Installation
1.
With the retainer and rubber grommet in place over
the upper stem, install the shock abosrber (fully ex-
tended) up through the lower control arm and spring
so that the upper stem passes through the mounting
hole in the upper support arm.
2.
Install the rubber grommet, retainer' and attaching
nut over the shock absorber upper stem.
3.
With an open end wrench, hold the upper stem
from turning and tighten the retaining nut. (See
Specifications.)
4.
Install the two bolts attaching the shock abosrber
lower pivot to the lower control arm and tighten.
(See Specifications.)
Fig.
15 - Upper Control Arm Support Installed - Chevy II
CHEVROLET CHASSIS SERVICE MANUAL
SECTION
4
REAR SUSPENSION
AND
DRIVE LINE
CONTENTS
OF
THIS SECTION
Page
Rear Suspension
4-1
Drive Line.
. 4-26
Rear Axle ......
4-26
Propeller Shaft
and
Universal Joints
Special Tools
4-37
4-43
REAR SUSPENSION
INDEX
General Description
4-1
Chevrolet
4-1
Chevelle
4-1
Chevy
n and
Camaro
. . . . . 4-2
Corvette
. . . . . . 4-3
Maintenance
and
Adjustments ...............
4-4
Riding Height Check (Chevrolet, Camaro,
Chevelle
and
Chevy
II) 4-5
Wheel Alignment (Corvette)
4-5
Wheel Bearing Adjustment (Corvette)
4-6
Component Parts Replacement (Chevrolet, Camaro,
Chevelle
and
Chevy
JJ) 4-7
Coil Spring
4-7
Chevrolet
4-7
Removal
4-7
Installation
4-7
Chevelle
4-8
Removal
4-8
4-8
Installation
.
Leaf Spring, Spring Seat Pads, Spring
Eye
Bushings
4-9
Chevy
H 4-9
Removal
4-9
Installation
4-9
Camaro
4-10
Removal
4-10
Installation
4-11
Shock Absorber
4-11
Chevrolet
and
Chevelle
. 4-11
Removal
4-11
Installation
. . 4-12
Chevy
II 4-12
Removal
4-12
Installation
4-rl2
Camaro
4-12
Removal
. 4-12
Installation
4-12
Control
Arm . . 4-12
Chevrolet Upper
4-12
Removal
. 4-12
Page
Bushing Replacement
. 4-13
Installation
4-14
Chevrolet Lower
4-14
Removal
4-14
Bushing Replacement
4-14
Installation
. 4-15
Chevelle Upper
and
Lower.
. 4-15
Removal
4-15
Bushing Replacement
4-15
Installation
4-17
Rear Suspension
Tie Rod
(Chevrolet)
. . .
......
. . . 4-17
Removal
4-17
Bushing Replacement
4-17
Installation
4-17
Component Parts Replacement (Corvette)
. . 4-17
Wheel Spindle
and
Support
4-17
Removal
4-17
Repairs
', . 4-17
Installation
4-18
Differential Carrier Support Bracket Replacement.
. 4-20
Shock Absorber
4-20
Removal
4-20
Installation
* .... 4-20
Strut
Rod and
Bracket
4-20
Removal
4-20
Repairs
4-21
Installation
4-21
Spring
4-21
Removal
4-21
Repairs
4-22
Installation
4-22
Torque Control
Arm 4-23
Removal
4-23
Repairs
. 4-23
Installation
4-24
Suspension Crossmember
4-24
Removal
4-24
Repairs—Isolation Mount
4-25
Installation
4-25
Stabilizer Shaft Replacement
4-25
GENERAL DESCRIPTION
CHEVROLET
The link type rear suspension (fig. 1) has two lower
control arms which maintain proper axle to frame re-
lationship and also take the acceleration, drive and
braking forces. A single upper control arm on light-
duty models (or two upper control arms on heavy-duty
models and all station wagons) limits axle rotation when
drive, acceleration or braking forces are applied. Lateral
movement of the axle is restricted by the axle-to-frame
tie rod. Two full coil springs and two direct, double
acting shock absorbers are provided for additional ride
control.
CHEVELLE
The rear suspension (fig. 2) is of the four-link design
utilizing axle mounted, full coil springs and direct,
double-acting shock absorbers.
Two rubber-bushed lower control arms, stretching
slightly outboard from axle-mounted brackets to frame
side member mounted brackets, maintain fore and aft
CHEVROLET CHASSIS SERVICE MANUAL