height MITSUBISHI MONTERO 1991 User Guide
[x] Cancel search | Manufacturer: MITSUBISHI, Model Year: 1991, Model line: MONTERO, Model: MITSUBISHI MONTERO 1991Pages: 1333, PDF Size: 24.61 MB
Page 209 of 1333

length. If spring length is not 6.97-7.09 in. (177-180 mm), adjust
cable or support until correct length is obtained. See Fig. 1.
Fig. 1: Testing LSPV Spring Length (Pickup & Ram-50)
Courtesy of Mitsubishi Motor Sales of America.
MASTER CYLINDER PUSH ROD
Check and adjust clearance between back of master cylinder
piston and power brake push rod. See PUSH ROD CLEARANCE SPECIFICATIONS
table. See Fig. 2. After adjusting push rod clearance, adjust pedal
height, and bleed brake system.
Fig. 2: Adjusting Push Rod Clearance
Courtesy of Mitsubishi Motor Sales of America.
PUSH ROD CLEARANCE SPECIFICATIONS TABLE
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brake pedal to center shoes, and check pedal travel. Rotate brake drum
to verify free movement.
STOPLIGHT SWITCH
Loosen lock nut, and adjust switch-to-pedal arm clearance to
.02-.04" (.5-1.0 mm). Tighten lock nut. DO NOT depress master cylinder
push rod during stoplight switch adjustment.
TESTING
POWER BRAKE UNIT
Check Valve Inspection
Remove vacuum hose from power brake unit. Remove check valve
from hose (if possible). Using a vacuum pump, ensure airflow is in
direction of intake manifold only.
System Check
1) Run engine for 2 minutes, and shut it off. Depress brake
pedal several times with normal pressure. If pedal height gradually
becomes higher with successive applications, power brake unit is okay.
If pedal height remains steady, power brake unit is faulty.
2) With engine stopped, depress brake pedal repeatedly until
it's height no longer falls. Hold brake pedal down, and start engine.
If pedal moves downward slightly, power brake unit is okay. If pedal
height does not change, power brake unit is faulty.
3) With engine running, press and hold brake pedal and shut
off engine. Hold brake pedal for 30 seconds. Brake pedal height should
not change. If pedal height falls, power brake unit is faulty.
LOAD-SENSING PROPORTIONING VALVE (LSPV) (PICKUP & RAM-50)
1) Before diagnosing Load-Sensing Proportioning Valve (LSPV)\
,
ensure all other brake components are operating properly. When all
other brake system components are determined to be okay, perform LSPV
test beginning with next step.
2) Ensure unladen vehicle is on level ground. Ensure lever is
not contacting stopper bolt. See Fig. 1.
3) When lever is pushed toward valve, distance from LSPV
lever hole and support hole must be 6.97-7.09 in. (177-180 mm). If
measured distance is not within specification, loosen support bolt.
Adjust support until measured distance is within specification.
4) After measured distance is within specification, connect
pressure gauges to input and output ports of LSPV. See Fig. 4. Bleed
brake system. See BLEEDING BRAKE SYSTEM .
Fig. 4: Connecting Pressure Gauges to LSPV (Pickup & Ram-50)
Courtesy of Mitsubishi Motor Sales of America.
Page 215 of 1333

Installation
To install, reverse removal procedure. Tighten wheel bearings
to 22 ft. lbs. (30 N.m). Loosen nut, and then retighten to 72 INCH
lbs. (8 N.m). Install cotter pin. If pin does not align, loosen nut up\
to a maximum of 30 degrees.
REAR BRAKE DRUM & SHOES
Removal
1) Raise and support vehicle. Remove wheel and brake drum.
Remove shoe return spring and brake shoe adjuster. See Fig. 8. Remove
adjusting spring, shoe retaining spring and shoe hold-down pins.
2) Remove shoe and lining assembly with parking brake lever.
Remove cable from parking lever. Remove parking brake lever snap ring,
and disengage lever from brake shoe.
Fig. 8: Exploded View of Rear Brake Assembly
Courtesy of Mitsubishi Motor Sales of America.
Installation
1) To install, reverse removal procedure. Apply Lubriplate to
backing plate bosses, adjuster assembly threads and parking brake
lever pin.
2) Set adjustment assembly so brake shoes lightly contact
brake drum. Depress brake pedal to center shoes, and check pedal
travel. Rotate brake drum to ensure free movement.
WHEEL CYLINDERS
Removal & Installation
Raise and support vehicle. Remove rear brake drum and shoes.
See REAR BRAKE DRUM & SHOES under REMOVAL & INSTALLATION. Remove wheel
cylinder and seal assembly. To install, reverse removal procedure.
Bleed brakes.
MASTER CYLINDER
Removal
Drain brake fluid from master cylinder. Remove sensor
connector (if equipped). Disconnect brake lines from master cylinder,
and install plugs to prevent brake fluid spillage. Remove master
cylinder from booster unit and separate reservoirs from housing (if
necessary).
Installation
To install, reverse removal procedure. Before installation,
check and adjust clearance between back of master cylinder piston and
power brake push rod. Refer to MASTER CYLINDER PUSH ROD under
ADJUSTMENTS. After installation, adjust the brake pedal height. Refer
to BRAKE PEDAL HEIGHT & FREE PLAY under ADJUSTMENTS. Bleed brake
system. See BLEEDING BRAKE SYSTEM .
Page 265 of 1333

1) Install pinion bearing races in carrier. For front race
use Handle (MB990938-01) and Race Installer (MB990934-01) for 2.4L a\
nd
2.6L models and Race Installer (MB990935-01) for 3.0L models. For rear\
race, use Handle and Race Installer (MB990936-01). Ensure races are
fully seated.
2) Install Pinion Height Gauge (MB990901-01) and pinion
bearings. See Fig. 4. DO NOT install oil seal. Using INCH lb. torque
wrench, measure pinion rotating torque. Gradually tighten pinion
height gauge to increase rotating torque to proper specification. See
PINION ROTATING TORQUE SPECIFICATIONS table.
3) Install Cylinder Gauge (MB990903-01) in side bearing
seats. Ensure flat areas are aligned and gauge contacts side bearing
seat firmly. See Fig. 4.
4) Select adjusting shim with same thickness as gap between
cylinder gauge and pinion height gauge. Use minimum amount of
adjusting shims. Install selected adjusting shims between drive pinion
gear and rear pinion bearing. Using Bearing Installer (MB990802-01),
install rear pinion bearing.
PINION ROTATING TORQUE SPECIFICATIONS
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Application INCH Lbs. (N.m)
With Oil Seal
2.4L & 2.6L Engines . 3.04-3.91 (.35-.45)
3.0L Engine ........... 5.21-6.08 (.6-.7)
Without Oil Seal
2.4L & 2.6L Engines . 1.30-2.17 (.15-.25)
3.0L Engine ........... 3.47-4.34 (.4-.5)
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Fig. 4: Setting Pinion Depth
Courtesy of Chrysler Motors.
DRIVE PINION PRELOAD