Contents Section: Hoist/jack All sections

General - Lancer Evolution Mitsubishi Lancer Evolution IX

Hoist/jack 61 illustrations ~8716 words

MAINTENANCE, REPAIR AND SERVICING EXPLANATIONS

This article provides explanations, etc. concerning procedures for the inspection, maintenance, repair and servicing of the subject model. Unless otherwise specified, each service procedure covers all models. Procedures covering specific models are identified by the model codes, or similar designation (engine type, transaxle type, etc.). A description of these designations is covered in this article under "VEHICLE IDENTIFICATION."

ON-VEHICLE SERVICE

The "ON-VEHICLE SERVICE" information has procedures for performing inspections and adjustments of particularly important components. These procedures are done with regard to maintenance and servicing, but other inspections (looseness, play, cracking, damage, etc.) must also be performed.

SERVICE PROCEDURES

The service steps are arranged in numerical order. Attention to be paid in performing vehicle service are described in detail in SERVICE POINTS.

STANDARD VALUE

Indicates the value used as the standard for judging whether or not a part or adjustment is correct.

LIMIT

Shows the maximum or minimum value for judging whether or not a part or adjustment is acceptable.

REFERENCE VALUE

Indicates the adjustment value prior to starting the work (presented in order to facilitate assembly and adjustment procedures, and so they can be completed in a shorter time).

DANGER, WARNING, AND CAUTION

DANGER, WARNING, and CAUTION call special attention to a necessary action or to an action that must be avoided. The differences among DANGER, WARNING, and CAUTION are as follows

  1. If a DANGER is not followed, the result is severe bodily harm or even death.
  2. If a WARNING is not followed, the result could be bodily injury.
  3. If a CAUTION is not followed, the result could be damage to the vehicle, vehicle components or service equipment.

TIGHTENING TORQUE INDICATION

The tightening torque indicates a median and its tolerance by a unit of N. m (in-lb) or N. m (ft-lb). For fasteners with no assigned torque value, refer to TIGHTENING TORQUE .

SPECIAL TOOL NOTE

Only MMC special tool part numbers are called out in the repair sections of this information. Please refer to the special tool cross-reference chart located at the beginning of each article, for the special tool number that is available in your market.

ABBREVIATIONS

The following abbreviations are used in this information for classification of model types

M/T: Manual transaxle, or models equipped with manual transaxle.

MPI: Multipoint injection

DOHC: Engine with the double overhead camshaft

MIVEC: Mitsubishi Innovative Valve timing Electronic Control system

AWD: 4-wheel drive vehicles.

A/C: Air conditioning.

2.0L Engine: 2.0 liter < 4G63 > engine, or a model equipped with such an engine.

ECM: Engine control module

SWS: Simplified Wiring System

Scheme 72

Scheme 72: EXPLANATION OF CONTENTS

Scheme 73

Scheme 73

VERIFY THE COMPLAINT

  1. Make sure the customer's complaint and the service writer's work order description are understood before starting work.
  2. Make sure the correct operation of the system is understood. Read the description to verify normal system operation.
  3. Operate the system to see the symptoms. Look for other symptoms that were not reported by the customer, or on the work order, that may be related to the problem.

DETERMINE POSSIBLE CAUSES

Compare the confirmed symptoms to the diagnostic symptom indexes to find the right diagnosis procedure.

If the confirmed symptoms cannot be found on any symptom index, determine other possible causes.

  1. Analyze the system diagrams and list all possible causes for the problem symptoms.
  2. Rank all these possible causes in order of probability, based on how much of the system they cover, how likely they are to be the cause, and how easy they will be to check. Be sure to take experience into account. Consider the causes of similar problems seen in the past. The list of causes should be ranked in order from general to specific, from most-likely to least-likely, and from easy-to-check to hard-to-check.

FIND THE PROBLEM

After the symptoms have been confirmed, and probable causes have been identified, the next step is to make step-by-step checks of the suspected system components, junctions, and links in logical order.

Use the diagnostic procedures whenever possible. Follow these procedures carefully to avoid missing an important step in the diagnosis sequence. It might be the skipped step that leads to the solution of the problem.

If there aren't step-by-step procedures to help diagnose the problem, make a series of checks based on the ranked list of probable causes. Troubleshooting checks should be made in the order that the list of causes was ranked

  1. general to specific
  2. most-likely to least-likely
  3. easy-to-check to hard-to-check

REPAIR THE PROBLEM

When the step-by-step troubleshooting checks find a fault, perform the proper repairs. Make sure to fix the root cause of the problem, not just the symptom. Just fixing the symptom, without fixing the root cause, will cause the symptom to eventually return.

VERIFY THE REPAIR

After repairs are made, recheck the operation of the system to confirm that the problem is eliminated. Be sure to check the system thoroughly. Sometimes new problems are revealed after repairs have been made.

TROUBLESHOOTING CONTENTS

CAUTIONDuring diagnosis, a DTC code associated with other system may be set when the ignition switch is turned on with connector(s) disconnected. On completion, confirm all systems for DTC code(s). If DTC code(s) are set, erase them all. When the M.U.T.-III detects a diagnostic trouble code, its display informs users whether a mechanical problem currently exists ("current trouble") or whether it existed before but normal operation has been restored ("past trouble"). However, if an MFI, TPMS or SRS airbag-related DTC is set, "Active DTC/Stored DTC" is not displayed. In this case, follow the diagnosis procedure for current trouble.

Troubleshooting of electronic control systems for which the scan tool can be used follows the basic outline described below. Even in systems for which the scan tool cannot be used, part of these systems still follow this outline.

1. STANDARD FLOW OF DIAGNOSTIC TROUBLESHOOTING

Troubleshooting strategy is shown in each group.

2. SYSTEM OPERATION AND SYMPTOM VERIFICATION TESTS

If verification of the symptom(s) is difficult, procedures for checking operation and verifying symptoms are shown.

3. DIAGNOSTIC FUNCTION

The following trouble code diagnoses are shown.

  1. How to read diagnostic trouble codes
  2. How to erase diagnostic trouble codes
  3. Input inspection service points

4. DIAGNOSTIC TROUBLE CODE CHART

If the scan tool displays a diagnostic trouble code, find the applicable inspection procedure according to this chart.

5. SYMPTOM CHART

If there are symptoms, even though the scan tools show that no DTCs are set, inspection procedures for each symptom will be found by using this chart.

6. DIAGNOSTIC TROUBLE CODE PROCEDURES

Indicates the inspection procedures corresponding to each diagnostic trouble code. (Refer to HOW TO USE THE INSPECTION PROCEDURES ).

7. SYMPTOM PROCEDURES

Indicates the inspection procedures corresponding to each symptom listed in the Symptom Chart (Refer to HOW TO USE THE INSPECTION PROCEDURES ).

8. DATA LIST REFERENCE TABLE

Inspection items and normal judgment values have been provided in this chart as reference information.

9. CHECK AT ECU TERMINALS

Terminal numbers for the ECU connectors, inspection items, and standard values have been provided in this chart as reference information.

TERMINAL VOLTAGE CHECKS

  1. Connect a needle-nosed wire probe to a voltmeter probe. CAUTION: Short-circuiting the positive (+) probe between a connector terminal and ground could damage the vehicle wiring, the sensor, the ECU, or all three. Use care to prevent this!
  2. Insert the needle-nosed wire probe into each of the ECU connector terminals from the wire side, and measure the voltage while referring to the check chart. NOTE: Measure voltage with the ECU connectors connected. You may find it convenient to pull out the ECU to make it easier to reach the connector terminals. Checks don't have to be carried out in the order given in the chart.
  3. If voltage readings differ from normal condition values, check related sensors, actuators, and wiring. Replace or repair as needed.
  4. After repair or replacement, recheck with the voltmeter to confirm that the repair has corrected the problem.

TERMINAL RESISTANCE AND CONTINUITY CHECKS

  1. Turn the ignition switch to the "LOCK" (OFF) position.
  2. Disconnect the ECU connector. CAUTION: If resistance and continuity checks are performed on the wrong terminals, damage to the vehicle wiring, sensors, ECU, and/or ohmmeter may occur. Use care to prevent this!
  3. Measure the resistance and check for continuity between the terminals of the ECU harness-side connector while referring to the check chart. NOTE: Checks don't have to be carried out in the order given in the chart.
  4. If the ohmmeter shows any deviation from the Normal Condition value, check the corresponding sensor, actuator and related electrical wiring, then repair or replace.
  5. After repair or replacement, recheck with the ohmmeter to confirm that the repair has corrected the problem.

10. INSPECTION PROCEDURES USING AN OSCILLOSCOPE

When there are inspection procedures using an oscilloscope, these are listed.

HOW TO USE THE INSPECTION PROCEDURES

The causes of many of the problems occurring in electric circuitry are generally the connectors, components, the ECU, and the harnesses between connectors, in that order. These inspection procedures follow this order. They first try to discover a problem with a connector or a defective component.

Scheme 74

Scheme 74: HOW TO USE THE INSPECTION PROCEDURES

Scheme 75

Scheme 75

CURRENT TROUBLE

Indicates that the trouble is currently present. Carry out troubleshooting as described in the applicable inspection procedure.

PAST TROUBLE

Indicates that the status is "Stored" and the trouble is historic. Since the trouble may still be present, set the vehicle to the diagnosis code detection condition and check that the status changes to "Active". If the status does not change from "Stored", observe the applicable inspection procedure with particular emphasis on connector(s) and wiring harness.

HARNESS INSPECTION

Check for an open or short circuit in the harness between the terminals which were faulty according to the connector measurements. Carry out this inspection while referring to HARNESS CONNECTOR INSPECTION . Here, "Check harness between power supply and terminal xx" also includes checking for blown fuse. For inspection service points when there is a blown fuse, refer to " INSPECTION SERVICE POINTS FOR A BLOWN FUSE ."

MEASURES TO TAKE AFTER REPLACING THE ECM OR ECU

If the trouble symptoms have not disappeared even after replacing the ECM or ECU, repeat the inspection procedure from the beginning.

CONNECTOR MEASUREMENT SERVICE POINTS

Turn the ignition switch to the "LOCK" (OFF) position when connecting and disconnecting the connectors. Turn the ignition switch to "ON" when measuring, unless there are instructions to the contrary.

IF INSPECTING WITH THE CONNECTOR CONNECTED < WATERPROOF CONNECTORS >

Be sure to use special tool. Never insert a test probe from the harness side, as this will reduce the waterproof performance and result in corrosion.

Scheme 76

Scheme 76: IF INSPECTING WITH THE CONNECTOR CONNECTED < WATERPROOF CONNECTORS >

IF INSPECTING WITH THE CONNECTOR CONNECTED < ORDINARY (NON-WATERPROOF) CONNECTORS >

Inspect by inserting a test probe from the harness side. If the connector is too small to insert a test probe (e.g. control unit connector), do not insert it forcibly. Use special tool extra fine probe (MB992006).

Scheme 77

Scheme 77: IF INSPECTING WITH THE CONNECTOR CONNECTED < ORDINARY (NON-WATERPROOF) CONNECTORS >

IF INSPECTING WITH THE CONNECTOR DISCONNECTED < WHEN INSPECTING A FEMALE PIN >

Required Special Tool

Scheme 78

Scheme 78: IF INSPECTING WITH THE CONNECTOR DISCONNECTED < WHEN INSPECTING A FEMALE PIN >
  1. MB991219: Inspection Harness (Included in MB991223, Harness Set)
  2. The special tool MB991219 for connector pin contact pressure should be used. The test probe should never be forcibly inserted, as it may cause a defective contact.
  3. From back side of the connector (SRS-ECU harness side connector)
  4. Since the SRS-ECU harness connector is plated to improve conductivity, observe the warning below when checking this connector. WARNING: Insert the backprobing tool into the connector from the harness side, and connect the tester to the backprobing tool. If any tool other than the backprobing tool is used, it may cause damage to the harness and other components. Furthermore, measurement should not be carried out by touching the backprobing tool directly against the terminals from the front of the connector. The terminals are plated to increase their conductivity, so that if they are touched directly by the backprobing tool, the plating may break, which will decrease reliability.

IF INSPECTING WITH THE CONNECTOR DISCONNECTED < WHEN INSPECTING A MALE PIN >

CAUTIONAt this time, be careful not to short the connector pins with the test probes. Doing so may damage the circuits inside the ECU.

Touch the pin directly with the test probe.

Scheme 79

Scheme 79

Scheme 80

Scheme 80

Scheme 81

Scheme 81: VISUAL INSPECTION
  1. Connector is disconnected or improperly connected
  2. Connector pins are pulled out
  3. Stretched an broken wires at terminal section
  4. Low contact pressure between male and female terminals
  5. Low connection pressure due to rusted terminals or foreign matter lodged in terminals

CONNECTOR PIN INSPECTION

If the connector pin stopper is damaged, the terminal connections (male and female pins) will not be perfect even when the connector body is connected, because the pins may pull out of the back side of the connector. Therefore, gently pull the wires one by one to make sure that no pins pull out of the connector.

Scheme 82

Scheme 82: CONNECTOR PIN INSPECTION

CONNECTOR ENGAGEMENT INSPECTION

Required Special Tool

  1. MB991219: Inspection Harness (contained in MB991223 Test Harness)

Use special tool MB991219 to inspect the engagement of the male pins and female pins. [Pin drawing force: 1 N (0.2 pound) or more]

Scheme 83

Scheme 83

HOW TO COPE WITH INTERMITTENT MALFUNCTIONS

Most intermittent malfunctions occur under certain conditions. If those conditions can be identified, the cause will be easier to find.

TO COPE WITH INTERMITTENT MALFUNCTION

  1. ASK THE CUSTOMER ABOUT THE MALFUNCTION Ask what it feels like, what it sounds like, etc. Then ask about driving conditions, weather, frequency of occurrence, and so on.
  2. DETERMINE THE CONDITIONS FROM THE CUSTOMER'S RESPONSES Typically, almost all intermittent malfunctions occur from conditions like vibration, temperature and/or moisture change, poor connections. From the customer's responses, it should be reasoned which condition is most likely.
  3. USE SIMULATION TEST Use the simulation tests below to attempt to duplicate the customer's complaint. Determine the most likely circuit(s) and perform the simulation tests on the connectors and parts of that circuit(s). Be sure to use the inspection procedures provided for diagnostic trouble codes and trouble symptoms. For temperature and/or moisture condition related intermittent malfunctions, try to change the conditions of the suspected circuit components, then use the simulation tests below.
  4. VERIFY THE INTERMITTENT MALFUNCTION IS ELIMINATED Repair the malfunctioning part and try to duplicate the condition(s) again to verify the intermittent malfunction has been eliminated.

SIMULATION TESTS

Note. In case of difficulty in finding the cause of the intermittent malfunction, the data recorder function in the scan tool is effective.

For these simulation tests, shake, then gently bend, pull, and twist the wiring of each of these examples to duplicate the intermittent malfunction.

Scheme 84

Scheme 84: SIMULATION TESTS
  1. Shake the connector up-and-down, and right-and-left.
  2. Shake the wiring harness up-and-down, and right-and-left. Especially, check the splice points of wiring harnesses carefully. Refer to «HARNESS CONNECTOR INSPECTION»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/body-electrical/#general-electrical-lancer-evolution) .
  3. Shake the part or sensor.

INSPECTION SERVICE POINTS FOR A BLOWN FUSE

Remove the blown fuse and measure the resistance between the load side of the blown fuse and the ground. Close the switches of all circuits which are connected to this fuse. If the resistance is almost 0 ohms at this time, there is a short somewhere between these switches and the load. If the resistance is not 0 ohm; there is no short at the present time, but a momentary short has probably caused the fuse to blow.

The main causes of a short circuit are the following.

Scheme 85

Scheme 85: INSPECTION SERVICE POINTS FOR A BLOWN FUSE
  1. Harness being clamped by the vehicle body
  2. Damage to the outer casing of the harness due to wear or heat
  3. Water getting into the connector or circuitry
  4. Human error (mistakenly shorting a circuit, etc).

HOW TO TREAT CURRENT TROUBLE

  1. Make a note of the diagnostic trouble code, and erase it.
  2. Check the trouble symptom again.
  3. Check for diagnostic trouble codes again.
  4. If a diagnostic trouble code is set, follow the applicable Diagnostic Trouble Code Chart.
  5. If no diagnostic trouble code is set, refer to " «HOW TO COPE WITH INTERMITTENT MALFUNCTION»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/hoistjack/#general-lancer-evolution__how-to-cope-with-intermittent-malfunctions) ."

HOW TO TREAT PAST TROUBLE

Since the trouble may still be present even the status is "Stored", set the vehicle to the diagnosis code detection condition and check that the status changes to "Active". If the status does not change from "Stored", carry out the following procedure.

  1. Establish from the customer whether a fuse or connector has been replaced or disconnected.
  2. If yes, erase the diagnosis code, and then check that no diagnostic code is reset. If no diagnosis code is reset, the diagnosis is complete.
  3. If no, follow the applicable Diagnostic Trouble Code Chart. Then check the wiring harness and connector, and refer to " «HOW TO COPE WITH INTERMITTENT MALFUNCTION»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/hoistjack/#general-lancer-evolution__how-to-cope-with-intermittent-malfunctions) ."

VEHICLES IDENTIFICATION NUMBER LOCATION

The vehicle identification number (VIN) is located on a plate attached to the left top side of the instrument panel.

Scheme 86

Scheme 86: VEHICLES IDENTIFICATION NUMBER LOCATION

VEHICLE IDENTIFICATION CODE CHART PLATE

All vehicle identification numbers contain 17 digits. The vehicle number is a code which tells country, make, vehicle type, etc.

NO.ITEMCONTENT
1CountryJJapan
2MakeAMitsubishi
3Vehicle type3Passenger car
4OthersADriver and passenger air bags
5LineHLANCER AWD
6Price class3Medium
8Sports
7Body64-door sedan
8EngineC2.0L DOHC-Intercooler Turbocharger (4G63) MIVEC
9Check digits*0, 1, 2, 3,-----------9, X
10Model year62006 year
11PlantUMizushima
12Serial number000001 to 999999
NOTE: *: Check digit means a singles number or letter X used to verify the accuracy of transcription of vehicle identification number.
NOTE
*: Check digit means a singles number or letter X used to verify the accuracy of transcription of vehicle identification number.

VEHICLE IDENTIFICATION CODE CHART PLATE

Scheme 87

Scheme 87

VEHICLES FOR FEDERAL EMISSION REGULATION

VIN (EXCEPT SEQUENCE NUMBER)BRANDENGINE DISPLACEMENTMODEL CODE
JA3AH36C_6UMITSUBISHI LANCER EVOLUTION-IXRS2.0L Intercooler TurbochargerCT9ASNDFZL2M
JA3AH86C_6UGSRCT9ASNGFZL2M
JA3AH86C_6UCT9ASJGFZL2M

VEHICLE IDENTIFICATION NUMBER LIST

VEHICLE INFORMATION CODE PLATE

The vehicle information code plate is riveted onto the engine hood in the engine compartment.

The plate shows model code, engine model, transaxle model and body color code.

NO.ITEMCONTENT
1MODELCT9ASNGF ZL2MCT9AS: Vehicle model
NGFZL2M: Model series
2ENGINE4G63Engine model
3EXTZZZExterior code
4TRANS AXLEW5M51Transaxle model
5COLORW83Body color code
6INT33XInterior code
7OPTN22Equipment code

VEHICLE INFORMATION CODE PLATE

For monotone color vehicles, the body color code shall be indicated.

Scheme 88

Scheme 88

VEHICLE SAFETY CERTIFICATION LABEL

The vehicle safety certification label is attached to the face of the left door sill.

This label indicates the month and year of manufacture, Gross Vehicle Weight Rating (GVWR), front and rear Gross Axle Weight Rating (GAWR), and Vehicle Identification Number (VIN).

Scheme 89

Scheme 89: VEHICLE SAFETY CERTIFICATION LABEL

TIRE AND LOADING INFORMATION PLACARD

The tire and loading information placard is located on the inside sill of the driver's door.

Scheme 90

Scheme 90: TIRE AND LOADING INFORMATION PLACARD

ENGINE MODEL STAMPING

The engine model is stamped on the cylinder block. These engine model number are as shown as follows.

ENGINE MODELENGINE DISPLACEMENT
4G632.0L

ENGINE MODEL STAMPING

The engine serial number is stamped near the engine model number.

Scheme 91

Scheme 91

THEFT PROTECTION

In order to protect against theft, a Vehicle Identification Number (VIN) is attached as a plate or label to the following major parts of the engine and transaxle, as well as main outer panels: Engine cylinder block, Transaxle housing, Fender, Doors, liftgate, Quarter panel, Hood, Bumpers

In addition, a theft-protection label is attached to replacement parts for the body outer panel main components, and the same data is stamped into replacement parts for the engine and the transaxle.

CAUTIONWhen replacing a part that has the theft protection plate, label or stamp on it, be sure that the part has either A or B shown in the figure. It is illegal if both A and B are attached, or neither A nor B is attached.

Scheme 92

Scheme 92
CAUTIONCautions regarding panel repairs: When repainting original parts, do so after first masking the theft-protection label. After painting, be sure to peel off the masking tape. The theft-protection label for replacement parts is covered by masking tape, so such parts can be painted as is. The masking tape should be removed after painting is finished. The theft-protection label should not be removed from original parts or replacement parts.

LOCATIONS

Scheme 93

Scheme 93

Scheme 94

Scheme 94

SUPPLEMENTAL RESTRAINT SYSTEM (SRS)

  1. Items to review when servicing SRS Be sure to read GROUP 52B, Supplemental Restraint System (SRS). For safe operation, please follow the directions and heed all warnings. Wait at least 60 seconds after disconnecting the battery cable before doing any further work. The SRS system is designed to retain enough voltage to deploy the air bag even after the battery has been disconnected. Serious injury may result from unintended air bag deployment if work is done on the SRS system immediately after the battery cable is disconnected. Warning labels must be heeded when servicing or handling SRS components. Warning labels can be found in the following locations. Hood Front impact sensor Sun visor SRS-ECU Steering wheel Clock spring Joint cover Air bag module (Driver's and front passenger's) Seat belt pre-tensioner Always use the designated special tools and test equipment. Store components removed from the SRS in a clean and dry place. The air bag module should be stored on a flat surface and placed so that the pad surface is facing upward. Never attempt to disassemble or repair the SRS components (SRS-ECU, air bag module, clock spring and seat belt pre-tensioner). If there is a defect, replace the defective part. Whenever you finish servicing the SRS, check the SRS warning light operation to make sure that the system functions properly. Be sure to deploy the air bag before disposing of the air bag module or disposing of a vehicle equipped with an air bag. (Refer to «AIR BAG MODULE AND SEAT BELT PRE-TENSIONER DISPOSAL PROCEDURES»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/airbag/#supplemental-restraint-system-lancer-evolution__air-bag-module-and-seat-belt) .)
  2. Observe the following when carrying out operations on places where SRS components are installed, including operations not directly related to the SRS air bag. When removing or installing parts, do not allow any impact or shock to occur to the SRS components. If heat damage may occur during paint work, remove the SRS components. After re-installing them, check the SRS warning light operation to make sure that the system functions properly. SRS-ECU, air bag module, clock spring: 93° C (200° F) or more Seat belt pre-tensioner: 90° C (194° F) or more

HOW TO PERFORM VEHICLE IDENTIFICATION NUMBER (VIN) WRITING

The Vehicle Identification Number (VIN) is stored in the ECM by the vehicle manufacture. If the VIN to be stored in the ECM is eliminated fraudulently, the Malfunction Indicator Lamp (SERVICE ENGINE SOON) illuminates and Diagnostic Trouble Code (DTC) No. P0630 (VIN malfunction) is shown. When the ECM is replaced, and entry of the VIN necessary due to DTC No. P0630 (VIN malfunction). Enter the VIN in accordance with the procedure as follows

WRITING PROCEDURE

Required Special Tools

  1. MB991958: Scan Tool (M.U.T.-III Sub Assembly) MB991824: V.C.I. MB991827: USB Cable MB991911: Main Harness B
CAUTIONTo prevent damage to scan tool MB991958, always turn the ignition switch to the "LOCK" (OFF) position before connecting or disconnecting scan tool MB991958.
  1. Connect scan tool MB991958 to the data link connector.
  2. Turn the ignition switch to the "ON" position.
  3. Confirm DTC No. P0603 (EEPROM malfunction) is not shown. NOTE: When DTC No. P0603 (EEPROM malfunction) is shown, the VIN cannot be stored even if entered. Therefore, the troubleshooting is performed when this DTC is shown.
  4. Select "Coding" form the menu screen.
  5. Select "VIN writing" form the menu screen.
  6. Enter the VIN.
  7. After entry of the VIN, turn the ignition switch to the "LOCK" (OFF) position. After ten seconds or more passed, turn to the "ON" position again.
  8. Confirm DTC No. P0630 (VIN malfunction) is not shown. NOTE: When DTC No. P0630 (VIN malfunction) is shown, enter the VIN again because that would be not appropriate.

INITIALIZATION PROCEDURE FOR LEARNING VALUE IN MFI ENGINE

When the following service is performed, initialize the learning value.

  1. At replacing engine assembly
  2. At replacing throttle body and at cleaning
  3. At replacing knock sensor

INITIALIZATION PROCEDURE

Required Special Tools

Scheme 95

Scheme 95: INITIALIZATION PROCEDURE
  1. MB991958: Scan Tool (M.U.T.-III Sub Assembly) MB991824: V.C.I. MB991827: USB Cable MB991911: Main Harness B
CAUTIONTo prevent damage to scan tool MB991958, always turn the ignition switch to the "LOCK" (OFF) position before connecting or disconnecting scan tool MB991958.
  1. Connect scan tool MB991958 to the data link connector.
  2. Turn the ignition switch to the "ON" position.
  3. Select "Check Mode" form the menu screen.
  4. Select "ERASE MEMORY" form the menu screen.
  5. Initialize the learning value.
  6. After initialization of the learning value, learn the idling in MFI engine. (Refer to «LEARNING PROCEDURE FOR IDLING IN MFI ENGINE»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/hoistjack/#general-lancer-evolution) ).

PURPOSE

When the ECM is replaced, or when the learning value is initialized, the idling is not stabilized because the learning value in MFI engine is not completed. In this case, carry out the learning method for the idling through the following procedures.

LEARNING PROCEDURE

  1. Start the engine and carry out the warm-up for the engine coolant temperature to reach 80° C (176° F) or more.
  2. When the engine coolant temperature is 80° C (176° F) or more, the warm-up is not needed if the ignition switch is in "ON" position once.
  3. Place the ignition switch in "LOCK" (OFF) position and stop the engine.
  4. After 10 seconds or more, start the engine again.
  5. For 10 minutes, carry out the idling under the condition shown below and then confirm the engine has the normal idling. Transaxle: Neutral Operation in ignition-related, fan and attachments: Not to be operated Engine coolant temperature: 80° C (176° F) or more NOTE: When the engine stalls during the idling, check the dirtiness (on the throttle valve) of the throttle body and then perform the service from Procedure 1 again.

SERVICING ELECTRICAL SYSTEM

WARNINGBattery posts, terminals and related accessories contain lead and lead compounds. WASH HANDS AFTER HANDLING.

Scheme 96

Scheme 96
  1. Note the following before proceeding with working on the electrical system. Never perform unauthorized modifications to any electrical device or wiring. Such modifications might lead to a vehicle malfunction, over-capacity or short-circuit that could result in a fire in the vehicle. CAUTION: Before connecting or disconnecting the negative battery cable, be sure to turn the ignition switch to the "LOCK" (OFF) position and turn off the lights. (If this is not done, there is the possibility of semiconductor parts being damaged.) After completion of the work (and the negative battery terminals is connected), warm up the engine and allow it to idle for approximately 10 minutes under the conditions described below in order to stabilize engine control conditions, and then check to be sure that the idle is satisfactory. Engine coolant temperature: 85 - 95° C (185 - 203° F) Lights and all accessories: OFF Transaxle: "N" position Steering wheel: straight-forward position
  2. When servicing the electrical system, disconnect the negative cable terminal from the battery.

VEHICLE WASHING

If high-pressure car-washing equipment or steam car-washing equipment is used to wash the vehicle, be sure to maintain the spray nozzle at a distance of at least approximately 40cm (16 inches) from any plastic parts and all opening parts (doors, luggage compartment, etc.).

Scheme 97

Scheme 97: VEHICLE WASHING

APPLICATION OF ANTI-CORROSION AGENTS AND UNDERCOATS

Be careful not to apply oil or grease to the heated oxygen sensor. If applied, the sensor may malfunction. Protect the heated oxygen sensor with a cover before applying anti-corrosion agent, etc.

SCAN TOOL (MULTI USE TESTER { M.U.T.-III } SUB ASSEMBLY)

CAUTIONTurn the ignition switch to the "LOCK" (OFF) position before disconnecting or connecting the scan tool.

Note. MB991826 M.U.T.-III Trigger Harness is not necessary when pushing V.C.I. ENTER key.

Scheme 98

Scheme 98

Scheme 99

Scheme 99: FRONT TOWING PICKUP

REAR TOWING PICKUP

CAUTIONThe vehicle must not be towed by placing only the rear wheels on a rolling dolly, because to do so will result in deterioration of the viscous coupling causing the vehicle to jump forward suddenly. If this vehicle is towed, use flat bed equipment.

SAFETY PRECAUTIONS

The following precautions should be taken when towing the vehicle

Scheme 100

Scheme 100: SAFETY PRECAUTIONS
  1. DO NOT LIFT OR TOW THE VEHICLE BY ATTACHING TO OR WRAPPING AROUND THE BUMPER.
  2. Any loose, protruding, or damaged parts such as hoods, doors, fenders, trim, etc. should be secured or removed prior to moving the vehicle.
  3. Refrain from going under a vehicle when it is lifted by the towing equipment, unless the vehicle is adequately supported by safety stands.
  4. Never allow passengers to ride in a towed vehicle.
  5. State and local rules and regulations must be followed when towing a vehicle.

Scheme 101

Scheme 101: FLOOR JACK

POST TYPE

Special care should be taken when raising the vehicle on a frame contact type hoist. The hoist must be equipped with the proper adapters in order to support the vehicle at the proper locations.

CAUTIONWhen service procedures require removing rear suspension, fuel tank and spare tire, place additional weight on rear end of vehicle or anchor vehicle to hoist to prevent tipping when the location of the center of gravity changes.

Scheme 102

Scheme 102

Scheme 103

Scheme 103: GENERAL SPECIFICATIONS
ITEMRSGSR
CT9ASNDFZL2MCT9ASNGFZL2MCT9ASJGFZL2M
Vehicle dimension mm (in)Overall length14,535 (178.5)
Overall width21,770 (69.7)
Overall height (unladen)31,450 (57.1)
Wheelbase42,625 (103.3)
Tread-front51,515 (59.6)
Tread-rear61,515 (59.6)
Front overhang7930 (36.6)
Rear overhang8980 (38.6)
Minimum running ground clearance9140 (5.5)
Vehicle weight kg (lb)Curb weight1,440 (3,174)1,485 (3,274)1,490 (3,284)
Gross vehicle weight rating1,915 (4,222)
Gross axle weight rating-front1,030 (2,270)
Gross axle weight rating-rear905 (1,995)
Seating capacity5
EngineModel type4G63-DOHC-Intercooler, Turbocharger
Piston displacement cm 3 (cu.in)1,997 (121.9)
Maximum output kW/rpm (HP/r/min)206/6,500 (276/6,500)
Maximum torque N. m/rpm (lbs-ft/r/min)387/3,500 (285/3,500)
TransaxleModel typeW5M51W6MAA
Transaxle type5-speed forward, 1-speed reverse constant mesh6-speed forward, 1-speed reverse constant mesh
Fuel systemFuel supply systemElectronic controlled multiport fuel injection

GENERAL DATA AND SPECIFICATIONS

TIGHTENING TORQUE

Each torque value in the table is a standard value for tightening under the following conditions.

  1. Bolts, nuts and washers are all made of steel and plated with zinc.
  2. The threads and bearing surface of bolts and nuts are all in dry condition.

The values in the table are not applicable

  1. If toothed washers are inserted.
  2. If plastic parts are fastened.
  3. If bolts are tightened to plastic or die-cast inserted nuts.
  4. If self-tapping screws or self-locking nuts are used. STANDARD BOLT AND NUT TIGHTENING TORQUE STANDARD BOLT AND NUT TIGHTENING TORQUE THREAD SIZE STANDARD TIGHTENING TORQUE NOMINAL BOLT DIAMETER (mm) PITCH (mm) HEAD MARK "4" HEAD MARK "7" HEAD MARK "8" M5 0.8 2.5 +/- 0.5 N. m (23 +/- 4 in-lb) 5.0 +/- 1.0 N. m (44 +/- 9 in-lb) 6.0 +/- 1.0 N. m (53 +/- 9 in-lb) M6 1.0 5.0 +/- 1.0 N. m (44 +/- 9 in-lb) 8.5 +/- 1.5 N. m (76 +/- 13 in-lb) 10 +/- 2 N. m (89 +/- 17 in-lb) M8 1.25 11 +/- 2 N. m (98 +/- 17 in-lb) 20 +/- 4 N. m (15 +/- 3 ft-lb) 24 +/- 4 N. m (18 +/- 3 ft-lb) M10 1.25 23 +/- 4 N. m (17 +/- 3 ft-lb) 42 +/- 8 N. m (31 +/- 6 ft-lb) 53 +/- 7 N. m (39 +/- 5 ft-lb) M12 1.25 42 +/- 8 N. m (31 +/- 6 ft-lb) 80 +/- 10 N. m (59 +/- 7 ft-lb) 93 +/- 12 N. m (68 +/- 9 ft-lb) M14 1.5 70 +/- 10 N. m (52 +/- 7 ft-lb) 130 +/- 20 N. m (96 +/- 15 ft-lb) 150 +/- 20 N. m (111 +/- 14 ft-lb) M16 1.5 105 +/- 15 N. m (78 +/- 11 ft-lb) 195 +/- 25 N. m (144 +/- 18 ft-lb) 230 +/- 30 N. m (170 +/- 22 ft-lb) M18 1.5 150 +/- 20 N. m (111 +/- 14 ft-lb) 290 +/- 40 N. m (214 +/- 29 ft-lb) 335 +/- 45 N. m (247 +/- 33 ft-lb) M20 1.5 210 +/- 30 N. m (155 +/- 22 ft-lb) 400 +/- 60 N. m (295 +/- 44 ft-lb) 465 +/- 65 N. m (343 +/- 48 ft-lb) M22 1.5 290 +/- 40 N. m (214 +/- 29 ft-lb) 540 +/- 80 N. m (398 +/- 59 ft-lb) 630 +/- 90 N. m (465 +/- 66 ft-lb) M24 1.5 375 +/- 55 N. m (277 +/- 40 ft-lb) 705 +/- 105 N. m (520 +/- 77 ft-lb) 820 +/- 120 N. m (605 +/- 88 ft-lb) FLANGE BOLT AND NUT TIGHTENING TORQUE FLANGE BOLT AND NUT TIGHTENING TORQUE THREAD SIZE STANDARD TIGHTENING TORQUE NOMINAL BOLT DIAMETER (mm) PITCH (mm) HEAD MARK "4" HEAD MARK "7" HEAD MARK "8" M6 1.0 5.0 +/- 1.0 N. m (44 +/- 9 in-lb) 10 +/- 2 N. m (89 +/- 17 in-lb) 12 +/- 2 N. m (107 +/- 17 in-lb) M8 1.25 13 +/- 2 N. m (111 +/- 22 in-lb) 24 +/- 4 N. m (18 +/- 3 ft-lb) 28 +/- 5 N. m (20 +/- 4 ft-lb) M10 1.25 26 +/- 5 N. m (19 +/- 4 ft-lb) 50 +/- 5 N. m (37 +/- 4 ft-lb) 58 +/- 7 N. m (43 +/- 5 ft-lb) M10 1.5 25 +/- 4 N. m (18 +/- 3 ft-lb) 46 +/- 8 N. m (34 +/- 6 ft-lb) 55 +/- 5 N. m (41 +/- 3 ft-lb) M12 1.25 47 +/- 9 N. m (35 +/- 6 ft-lb) 93 +/- 12 N. m (68 +/- 9 ft-lb) 105 +/- 15 N. m (78 +/- 11 ft-lb) M12 1.75 43 +/- 8 N. m (32 +/- 6 ft-lb) 83 +/- 12 N. m (61 +/- 9 ft-lb) 98 +/- 12 N. m (72 +/- 9 ft-lb)

LUBRICATION AND MAINTENANCE

Maintenance and lubrication service recommendations have been compiled to provide maximum protection for the vehicle owner's investment against all reasonable types of driving conditions. Since these conditions vary with the individual vehicle owner's driving habits, the area in which the vehicle is operated and the type of driving to which the vehicle is subjected, it is necessary to prescribe lubrication and maintenance service on a time frequency as well as mileage interval basis.

Oils, lubricants and greases are classified and graded according to standards recommended by the Society of Automotive Engineers (SAE), the American Petroleum Institute (API) and the National Lubricating Grease Institute (NLGI).

MAINTENANCE SCHEDULES

Information for service maintenance is provided in the "SCHEDULED MAINTENANCE TABLE." Three schedules are provided; one for "Required Maintenance." one for "General Maintenance" and one for "Severe Usage Service."

The item numbers in "SCHEDULED MAINTENANCE TABLE" correspond to the section numbers in "MAINTENANCE SERVICE."

SEVERE SERVICE

Vehicles operating under severe service conditions will require more frequent service.

Component service information is included for vehicles operating under one or more of the following conditions

  1. Trailer towing or police, taxi or commercial type operation
  2. Operation of Vehicle Short-trip operation at freezing temperature (engine not thoroughly warmed up) More than 50% operation in heavy city traffic during hot weather above 32° C (90° F) Extensive idling Driving in sandy areas Driving in salty areas Driving in dusty conditions Driving off-road

ENGINE OIL

CAUTIONTest results submitted to EPA have shown that laboratory animals develop skin cancer after prolonged contact with used engine oil. Accordingly, the potential exists for humans to develop a number of skin disorders, including cancer, from such exposure to used engine oil. Therefore, when changing engine oil, be careful not to touch it as much as possible. Protective clothing and gloves, that cannot be penetrated by oil, should be worn. The skin should be thoroughly washed with soap and water, or use waterless hand cleaner, to remove any used engine oil. Do not use gasoline, thinners, or solvents.

Either of the following engine oils should be used

  1. Engine oil displaying ILSAC certification symbol.
  2. Engine oil conforming to the API classification SL or SL/CF. For further details, refer to " «LUBRICANTS SELECTION»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/hoistjack/#general-lancer-evolution) ."

LUBRICANTS AND GREASES

Semi-solid lubricants bear the NLGI designation and are further classified as grades 0, 1, 2, 3, etc.

Whenever "Chassis Lubricant" is specified, Multipurpose Grease, NLGI grade Number 2, should be used.

FUEL USAGE STATEMENT

CAUTIONUsing leaded gasoline in this car will damage the catalytic converters and heated oxygen sensors, and affect the warranty coverage validity.

This vehicle must use unleaded gasoline only. This vehicle has a fuel filler tube which is especially designed to accept only the smaller-diameter unleaded gasoline dispensing nozzle. The 2.0L model is designed to operate on premium grade unleaded gasoline having a minimum octane rating of 93 [(MON + RON)/2], or 98 RON.

Note. MON: Motor Octane Number RON: Research Octane Number

GASOLINE CONTAINING ALCOHOL

Some gasoline sold at service stations contain alcohol although they may not be so identified.

Using fuels containing alcohol is not recommended unless the nature of the blend can be determined as being satisfactory.

Gasohol: A mixture of 10% ethanol (grain alcohol) and 90% unleaded gasoline may be used in your vehicle. If driveability problems are experienced as a result of using gasohol, it is recommended that the vehicle be operated on gasoline.

Methanol: Do not use gasoline containing methanol (wood alcohol). Using this type of alcohol can result in vehicle performance deterioration and damage critical parts in the fuel system components. Fuel system damage and performance problems resulting from the use of gasoline containing methanol may not be covered by the new vehicle warranty.

GASOLINE CONTAINING METHYL TERTIARY BUTYL ETHER (MTBE)

Unleaded gasoline containing 15% or less MTBE may be used in your vehicle. (Fuel containing MTBE over 15% in volume may cause reduced engine performance and produce vapor lock or hard starting.

MATERIALS ADDED TO FUEL

Indiscriminate use of fuel system cleaning agents should be avoided. Many of these materials intended for gum and varnish removal may contain highly active solvents or similar ingredients that can be harmful to gasket and diaphragm materials used in fuel system component parts.

LUBRICANTSPECIFICATIONREMARK
Engine oilFully synthetic engine oils displaying ILSAC certification symbol ("Starburst" symbol) or conforming to the API classification SL, SL/CF or higherFor further details, refer to " LUBRICANTS SELECTION " section.
Engine coolantLong Life Antifreeze Coolant or an equivalent
Manual transaxle oilW5M51DiaQueen NEW MULTI GEAR OIL API classification GL-3, SAE 75W-80 or Gear oil API classification GL-4, SAE 75W-85/75W-90
W6MAADIA QUEEN super multi gear 75W-85W (GL-4) or exact equivalent
Transfer oilMITSUBISHI limited slip differential oil (LSD) or equivalent
Active Center Differential (ACD) fluidDIAMOND ATF SP III
Rear differential gear oilMITSUBISHI Limited Slip Differential Oil (LSD) or equivalent
Power steering fluidGENUINE MITSUBISHI POWER STEERING FLUID
Brake fluidConforming to DOT 3 or DOT 4
Door hingesEngine oil

RECOMMENDED LUBRICANTS SPECIFICATION

LUBRICANT CAPACITY TABLE

DESCRIPTIONSPECIFICATION
Engine oil dm 3 (qt)Oil pan (excluding oil filter and oil cooler)4.5 (4.8)
Oil filter0.3 (0.32)
Oil cooler0.5 (0.52)
Fuel tank dm 3 (gal)53 (14.0)
Engine coolant dm 3 (qt)6.0 (6.3)
Manual transaxle oil dm 3 (qt)W5M512.8 (3.0)
W6MAA2.2 (2.3)
Transfer oil dm 3 (qt)0.6 (0.63)
Active Center Differential (ACD) fluid dm 3 (qt)0.9 (0.95)
Power steering fluid dm 3 (qt)Oil pump1.0 (1.1)
Gear boxAs required

LUBRICANT CAPACITY TABLE DESCRIPTION

CAUTIONNever use nondetergent or straight mineral oil. Oil Identification Symbol

Use only engine oils displaying the ILSAC certification symbol ("Starburst" symbol) on the container.

Scheme 104

Scheme 104

If these oils are not available, an API classification SL or SL/CF or higher can be used.

Scheme 105

Scheme 105

OIL VISCOSITY

The SAE grade number indicates the viscosity of the oil. A proper SAE grade number should be selected according to ambient temperature.

Scheme 106

Scheme 106: OIL VISCOSITY

COOLANT

Relationship between Coolant Concentration and Specific Gravity

CAUTIONIf the concentration of the coolant is below 30%, the anti-corrosion property will be adversely affected. In addition, if the concentration is above 60%, both the anti-freeze and engine cooling properties will decrease, affecting the engine adversely. For these reasons, be sure to maintain the concentration level within the specified range. Do not use a mixture of different brands of anti-freeze.
ENGINE COOLANT TEMPERATURE ° C (° F) AND SPECIFIC GRAVITYFREEZING TEMPERATURESAFE OPERATING TEMPERATURECOOLANT CONCENTRATION (SPECIFIC VOLUME)
10 (50)20 (68)30 (86)40 (104)50 (122)° C (° F)° C (° F)%
1.0541.0501.0461.0421.03616 (3.2)11 (12.2)30
1.0631.0581.0541.0491.04420 (-4)15 (5)35
1.0711.0671.0621.0571.05225 (-13)20 (-4)40
1.0791.0741.0691.0641.05830 (-22)25 (-13)45
1.0871.0821.0761.0701.06436 (-32.8)31 (-23.8)50
1.0951.0901.0841.0771.07042 (-44)37 (-35)55
1.1031.0981.0921.0841.07650 (-58)45 (-49)60

ENGINE COOLANT TEMPERATURE

Example

The safe operating temperature is -15° C (5° F) when the specific gravity is 1.058 at the engine coolant temperature of 20° C (68° F)

SCHEDULED MAINTENANCE SERVICE FOR EMISSION CONTROL AND PROPER VEHICLE PERFORMANCE

Inspection and service should be performed any time a malfunction is observed or suspected.

NO.EMISSION CONTROL SYSTEM MAINTENANCESERVICE INTERVALSKILOMETERS IN THOUSANDS24487296120144168192216240
MILEAGE IN THOUSANDS153045607590105120135150
MONTHS153045607590105120135150
1Fuel system (tank, pipe line and connection, and fuel tank filler tube cap)Check for leaksX *3XXXX
2Fuel hosesCheck conditionX *3XXXX
3Air cleaner elementReplaceX *1XXXXXXXXX
4Evaporative emission control system (except evaporative emission canister)Check for leaks and cloggingXX
5Spark plugsIridium-tipped typeReplaceXX
6Timing beltReplaceX *1X *2X *4
7Drive belts (for the generator, water pump, power steering pump)ReplaceXXXXX
8Exhaust system (connection portion of muffler, muffler pipes and converter heat shields)Check and serviceX *3XXXX

SCHEDULED MAINTENANCE SERVICE FOR EMISSION CONTROL AND PROPER VEHICLE PERFORMANCE

GENERAL MAINTENANCE SERVICE FOR PROPER VEHICLE PERFORMANCE

NO.GENERAL MAINTENANCESERVICE INTERVALSKILOMETERS IN THOUSANDS24487296120144168192216240
MILEAGE IN THOUSANDS153045607590105120135150
MONTHS153045607590105120135150
9Engine oilTurboChangeEvery 5 months or every 8,000 km (5,000 miles)
10Engine oil filterTurboReplaceEvery 5 months or every 8,000 km (5,000 miles)
11Manual transaxle oilCheck oil levelXXXXX
ChangeXXXXX
12Transfer oilCheck oil levelXXXXX
ChangeXXXXX
13Reserve tank for ACD *6Check fluid levelXXXXXXXXXX
14Engine coolantChangeXXXXX
15Coolant hoses (radiator hose, heater hose)InspectXXX
ReplaceXX
16Disc brake pads, rotorsInspect for wearEvery 5 months or every 8,000 km (5,000 miles)
17Brake hosesCheck for deterioration or leaksXXXXXXXXXX
18Ball joint and steering linkage sealsInspect for grease leaks and damageXXXXXXXXXX
19Suspension systemInspect for looseness and damageEvery 5 months or every 8,000 km (5,000 miles)
20Driveshaft bootsInspect for grease leaks and damageEvery 5 months or every 8,000 km (5,000 miles)
21Rear axle oilWith LSD *5ChangeXXXXX
22TiresRotateEvery 5 months or every 8,000 km (5,000 miles)
23Air purifier filterReplaceXXXXXXXXXX
NOTE: *1 : For California, Massachusetts, Vermont and Maine, this maintenance is recommended but not required to maintain the emissions warranty. *2 : This maintenance is not required if previously replaced. *3 : This maintenance is recommended but is not required to maintain the emissions warranty. *4 : In case of replaced at 96,000 km (60 miles) *5 : LSD (Limited Slip Differential) *6 : ACD (Active Center Differential)
NOTE
*1 : For California, Massachusetts, Vermont and Maine, this maintenance is recommended but not required to maintain the emissions warranty. *2 : This maintenance is not required if previously replaced. *3 : This maintenance is recommended but is not required to maintain the emissions warranty. *4 : In case of replaced at 96,000 km (60 miles) *5 : LSD (Limited Slip Differential) *6 : ACD (Active Center Differential)

GENERAL MAINTENANCE SERVICE FOR PROPER VEHICLE PERFORMANCE

SCHEDULED MAINTENANCE UNDER SEVERE USAGE CONDITIONS

Maintenance should be carried out according to the following table

NO.EMISSION CONTROL SYSTEM MAINTENANCESERVICE INTERVALSKILOMETERS IN THOUSANDS24487296120144168192216240
MILEAGE IN THOUSANDS153045607590105120135150
MONTHS163248648096112128144160
1Fuel system (tank, pipe line and connection, and fuel tank filler tube cap)Check for leaksXXXXX
2Fuel hosesCheck conditionXXXXX
3Air cleaner elementReplaceXXXXXXXXXX
4Evaporative emission control system (except evaporative emission canister)Check for leaks and cloggingXX
5Spark plugsIridium-tipped typeReplaceXX
6Timing beltReplaceXX
7Drive belts (for the generator, water pump, power steering pump)ReplaceXXXXX
8Exhaust system (connections portion of muffler, muffler pipes and converter heat shields)Check and serviceXXXXX
9Engine oilTurboChangeEvery 4 months or every 6,000 km (3,750 miles)
10Engine oil filterTurboReplaceEvery 4 months or every 6,000 km (3,750 miles)
11Manual transaxle oilChangeXXXXXXXXXX
12Transfer oilChangeXXXXXXXXXX
13Reserve tank for ACD *6Check fluid levelXXXXXXXXXX
14Engine coolantChangeXXXXX
15Coolant hoses (radiator hose, heater hose)InspectXXX
ReplaceXX
16Disc brake pads, rotorsInspect for wearEvery 4 months or every 6,000 km (3,750 miles)
17Brake hosesCheck for deterioration or leaksXXXXXXXXXX
18Ball joint and steering linkage sealsInspect for grease leaks and damageXXXXXXXXXX
19Suspension systemInspect for looseness and damageEvery 4 months or every 6,000 km (3,750 miles)
20Drive shaft bootsInspect for grease leaks and damageEvery 4 months or every 6,000 km (3,750 miles)
21Rear axle oilWith LSD *5ChangeXXXXX
22TiresRotateEvery 4 months or every 6,000 km (3,750 miles)
24Air purifier filterInspect for cloggingXXXXXXXXXX
NOTE: *5 : LSD (Limited Slip Differential) *6 : ACD (Active Center Differential)
NOTE
*5 : LSD (Limited Slip Differential) *6 : ACD (Active Center Differential)

SCHEDULED MAINTENANCE UNDER SEVERE USAGE CONDITIONS

Severe usage conditions

  1. Driving on dusty, rough, muddy or salt-spread roads
  2. Towing or police, taxi or commercial operation
  3. Extensive idling and/or low speed operation
  4. Repeated short-trip operation at freezing temperatures (engine not thoroughly warmed up)
  5. Extended use of brakes while driving
  6. Driving in sandy areas
  7. More than 50% operation in heavy city traffic during hot weather above 32° C (90° F)

1. FUEL SYSTEM (TANK, PIPE LINE AND CONNECTION, AND FUEL TANK FILLER TUBE CAP) (CHECK FOR LEAKS)

Check for damage or leakage in the fuel lines and connections.

2. FUEL HOSES (CHECK CONDITION)

  1. Inspect the surface of fuel hoses for heat and mechanical damage. Hard and brittle rubber, cracking, tears, cuts, abrasions and excessive swelling indicate deterioration of the rubber.
  2. If the fabric casing of the rubber hose is exposed by cracks and abrasions in the fuel system, the hoses should be replaced.

3. AIR CLEANER ELEMENT (REPLACE)

The air cleaner element will become dirty during use, reducing its effectiveness. Replace it with a new one.

REPLACEMENT OF AIR CLEANER ELEMENT

Scheme 107

Scheme 107: 3. AIR CLEANER ELEMENT (REPLACE)
  1. Unclamp the air cleaner cover.
  2. Remove the air cleaner element and install a new one.
  3. When clamping the air cleaner cover in place, be sure that the cover is completed closed.

4. EVAPORATIVE EMISSION CONTROL SYSTEM (EXCEPT EVAPORATIVE EMISSION CANISTER) (CHECK FOR CLOGGING)

If the fuel-vapor vent line is clogged or damaged, fuel vapor will escape into the atmosphere causing excessive emissions. Disconnect the line at both ends, and blow it clean with compressed air. Remove the fuel tank filler tube cap from the filler tube and check to see if there is evidence that the seal makes improper contact to the filler tube.

5. SPARK PLUGS (REPLACE)

CAUTIONIridium plugs are used. Use care not to damage the iridium and platinum tips of the plugs. Do not adjust the spark plug gap.

Scheme 108

Scheme 108
  1. Spark plugs must spark properly to assure proper engine performance and reduce exhaust emission level. Therefore, they should be replaced periodically with new ones. Spark plug type SPARK PLUGS (REPLACE) MAKER MAKER IDENTIFICATION NO. NGK ILFR7H
  2. The new plugs should be checked for the proper gap. Spark plug gap: 0.5 -0.6 mm (0.020 -0.024 inch)
  3. Install the spark plugs and tighten to 25+/-5 N. m (18+/-4 ft-lb).

6. TIMING BELT (REPLACE)

Replace the belt with a new one according to the maintenance schedule on ( SCHEDULED MAINTENANCE TABLE ) to assure proper engine performance. For removal and installation procedures, refer to REMOVAL AND INSTALLATION .

< When using scan tool MB991958 >

Required Special Tools

  1. MB991668: Belt Tension Meter Set
  2. MB991958: Scan Tool (M.U.T.-III Sub Assembly) MB991824: V.C.I. MB991911: Main Harness B

Scheme 109

Scheme 109

Scheme 110

Scheme 110
  1. Check the drive belt tension. (Refer to «DRIVE BELT TENSION CHECK»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/mechanical/#on-vehicle-service-lancer-evolution__drive-belt-tension-check) .)
  2. Measure the drive belt tension vibration frequency by the following procedures: CAUTION: To prevent damage to scan tool MB991824, always turn the ignition switch to the "LOCK" (OFF) position before connecting or disconnecting scan tool MB991824. Connect special tool MB991668 to scan tool MB991824. Connect scan tool MB991911 to scan tool MB991824. Connect scan tool MB991911 to the data link connector. Turn the ignition switch to the "ON" position and select "Belt Tension Measurement" from the menu scan tool MB991824 screen. CAUTION: The temperature of the surface of the belt should be as close to normal temperature as possible. Do not allow any contaminants such as water or oil to get onto the microphone. If strong gusts of wind blow against the microphone or if there are any loud sources of noise nearby, the values measured by the microphone may not correspond to actual values. If the microphone is touching the belt while the measurement is being made, the values measured by the microphone may not correspond to actual values. Do not take the measurement while the vehicle's engine is running. Hold special tool MB991668 to the middle of the drive belt between the pulleys (at the place indicated by arrow), approximately 10 -20 mm (0.40 -0.78 inch) away from the rear surface of the belt so that it is perpendicular to the belt (within an angle of +/- 15 degree). Gently tap the middle of the belt between the pulleys (the place indicated by the arrow) with your finger as shown in the illustration, and measure that the vibration frequency of the belt is within the standard value. Standard value: 110 -144 Hz
  3. If not within the standard value, replace the auto-tensioner. (Refer to .)

Scheme 111

Scheme 111: < When using a tension gauge >
  1. Check the drive belt tension. (Refer to «DRIVE BELT TENSION CHECK»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/mechanical/#on-vehicle-service-lancer-evolution__drive-belt-tension-check) ).
  2. Use a belt tension gauge in the middle of the belt between the pulleys (at the place indicated by the arrow) to measure that the belt tension is within the standard value. Standard value: 245 -412 N
  3. If not within the standard value, replace the auto-tensioner. (Refer to .)

8. EXHAUST SYSTEM (CONNECTION PORTION OF MUFFLER, MUFFLER PIPES AND CONVERTER HEAT SHIELDS) (CHECK AND SERVICE)

  1. Check for holes and exhaust gas leaks due to damage, corrosion, etc.
  2. Check the joints and connections for looseness and exhaust gas leaks.
  3. Check the rubber hangers and brackets for damage.

Scheme 112

Scheme 112: 9. ENGINE OIL (CHANGE)

Scheme 113

Scheme 113

Scheme 114

Scheme 114
  1. Start the engine and allow it to warm up until the temperature of the coolant reaches 80° C (176° F) to 90° C (194° F). WARNING: Use care as oil could be hot.
  2. Remove the engine oil filler cap.
  3. Remove the drain plug to drain oil.
  4. Install a new drain plug gasket so that it faces in the direction shown in the illustration, and then tighten the drain plug to the specified torque. Tightening torque: 39 +/- 5 N. m (29 +/- 3 ft-lb) CAUTION: Do not use conventional petroleum based motor oil. Using conventional motor oil may cause engine or turbocharger damage. Do not used "blends" of conventional oil and synthetic oil.
  5. Refill the specified quantity of oil. Specified Engine Oil: Fully synthetic engine oils displaying ILSAC certification symbol ("Starburst" symbol) or conforming to the API classification SL or SL/CF or higher Total quantity (Includes volume inside oil filter and oil cooler): 5.1 dm 3 (5.4 quarts) NOTE: SAE 5W-30 fully synthetic engine oil can be used to improve engine startability in very cold weather areas where the lowest atmospheric temperature is below -18 °C (0 °F).
  6. Install the engine oil filler cap.
  7. Start the engine and run it at idle for a few minutes.
  8. Stop the engine and check to ensure that the engine oil level is within the level range indicated on the dip stick.

10. ENGINE OIL FILTER (REPLACE)

The quality of replacement filters varies considerably. Only high quality filters should be used to assure most efficient service. Genuine oil filters require that the filter is capable of withstanding a pressure of 1,800 kPa (261 psi) are high quality filters and are recommended as follows

Mitsubishi Oil Filter Part Number: MD356000 or equivalent

Engine Oil Filter Selection

The same type of filter is recommended as a replacement filter for this vehicle. It is possible, particularly in cold weather, that this vehicle may develop high oil pressure for a short duration. Make sure that any replacement filter used on this vehicle is a high-quality filter. The filter must withstand a pressure of 1,800 kPa (261 psi) [manufacturer's specifications] to avoid filter and ultimately engine damage. The following is a high-quality filter and is strongly recommended for use on this vehicle: Mitsubishi Engine Oil Filter Part number MD356000. Any replacement oil filter should be installed in accordance with the oil filter manufacturer's installation instructions.

Scheme 115

Scheme 115: Oil Filter Replacement

Scheme 116

Scheme 116
  1. Start the engine and allow it to warm up until the temperature of the coolant reaches 80° C (176° F) to 90° C (194° F). WARNING: Use care as oil could be hot.
  2. Remove the engine oil filler cap.
  3. Remove the drain plug to drain oil.
  4. Remove the side cover.
  5. Use the commercially-available tool to remove the engine oil filter.
  6. Clean the filter bracket side mounting surface and ensure the old O-ring has been removed.
  7. Apply a small amount of engine oil to the O-ring of the new oil filter.
  8. Where the oil filter O-ring touches the oil pan flange, tighten the oil filter to the specified torque using the commercially-available tool. Tightening torque: Approximately 3/4 turn [14 +/- 2 N. m (124 +/- 18 in-lb)]
  9. Install the side cover.
  10. Install the drain plug and refill engine oil. (Refer to «ENGINE OIL REPLACEMENT»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/lubrication-system/#lubrication-lancer-evolution) .)
  11. Rev the engine a few times, and check to be sure that no engine oil leaks from the installation section of the oil filter.

CHECK OIL LEVEL

Inspect each component for evidence of leakage. Check the oil level by removing the filler plug.

Scheme 117

Scheme 117: CHECK OIL LEVEL
  1. Remove the filler plug.
  2. Check that the oil level is up to the lower edge of the filler plug hole.
  3. Check that the oil is not noticeably dirty.
  4. Tighten the filler plug to the specified torque. Tightening torque: 32 +/- 2 N. m (23 +/- 2 ft-lb)

Scheme 118

Scheme 118: CHANGE OIL

Scheme 119

Scheme 119
  1. Remove the filler plug.
  2. Remove the drain plug and drain the oil.
  3. Tighten the oil drain plug to the specified torque. Tightening torque < W5M51 >: 32 +/- 2 N. m (23 +/- 2 ft-lb) Tightening torque < W6MAA >: 35 +/- 4 N. m (26 +/- 3 ft-lb)
  4. Fill with specified oil till the level comes to the lower portion of oil filler plug hole. Specified transmission oil < W5M51 >: Gear oil API classification GL-4 SAE 75W-85W or 75W-90 Specified transmission oil < W6MAA >: DIA QUEEN SUPER MULTI GEAR SAE 75W-85 (GL-4) or exact equivalent Quantity < W5M51 >: 2.8 dm 3 (2.9 quart) Quantity < W6MAA >: 2.2 dm 3 (2.3 quart)
  5. Tighten the oil filler plug to the specified torque. Tightening torque < W5M51 >: 32 +/- 2 N. m (23 +/- 2 ft-lb) Tightening torque < W6MAA >: 35 +/- 4 N. m (26 +/- 3 ft-lb)

Scheme 120

Scheme 120: TRANSFER OIL LEVEL CHECK
  1. Remove the filler plug.
  2. Check that the oil level is up to the lower edge of the filler plug hole.
  3. Check that the oil is not noticeably dirty.
  4. Tighten the filler plug to the specified torque. Tightening torque: 32 +/- 2 N. m (23 +/- 2 ft-lb)

Scheme 121

Scheme 121: TRANSFER OIL CHANGE
  1. Remove the filler plug.
  2. Remove the drain plug and drain the oil.
  3. Tighten the drain plug to the specified torque. Tightening torque: 32 +/- 2 N. m (23 +/- 2 ft-lb) CAUTION: Cover the heat protector of the front exhaust pipe with cardboard or something similar when refilling transfer oil so that transfer oil does not enter the area between the front exhaust pipe and heat protector.
  4. Fill with hypoid gear oil API classification GL-5 SAE90 until the level comes to the lower portion of filler plug hole. Quantity: 0.6 dm 3 (0.63 quart)
  5. Tighten the filler plug to the specified torque. Tightening torque: 32 +/- 2 N. m (23 +/- 2 ft-lb)

Scheme 122

Scheme 122: 13. RESERVE TANK FOR ACD (CHECK FLUID LEVEL)

Scheme 123

Scheme 123
  1. < Not using scan tool MB991958 > If the vehicle has been run, leave it for 90 min. or more in an ordinary temperature [10° C - 30° C (50° F - 86° F)] to allow the accumulator internal pressure to drop. NOTE: If the ambient temperature is 10° C (50 °F) or less, allow more time to leave the vehicle to stand idle.
  2. < Using scan tool MB991958 > CAUTION: To prevent damage to scan tool MB991958, always turn the ignition switch to the "LOCK" (OFF) position before connecting or disconnecting scan tool MB991958. Connect scan tool MB991958 to the data link connector. Turn "ON" the ignition switch, perform scan tool MB991958 actuator test (Item No.03), forcibly drive the hydraulic unit and remove the pressure in the accumulator. NOTE: In the actuator test (Item No.03: Oil Level Check Mode), the proportioning valve of the hydraulic unit is moved to the left and right for 20 times, and then the differential is cleared automatically. Drive can also be cleared forcibly using the clear key of the scan tool MB991958 . If the function has been stopped by fail-safe, the hydraulic unit cannot be cleared forcibly .
  3. Check that the fluid level in the oil reservoir is in the range between MAX and MIN.
  4. If the fluid level is lower than MIN, add the specified fluid. Specified fluid: DIAMOND ATF SP III
  5. Reinstall the maintenance lid.

14. ENGINE COOLANT (CHANGE)

Check the cooling system parts such as the radiator, heater and oil cooler hoses, thermostat and their connections for leakage and damage.

CHANGING COOLANT

Required Special Tool

  1. MB991871: LLC Changer

Scheme 124

Scheme 124

Scheme 125

Scheme 125
  1. Remove the under cover (Refer to «FRONT BUMPER»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/mirrors/#exterior-lancer-evolution) ). WARNING: When removing the radiator cap, use care to avoid contact with hot coolant or steam. Place a shop towel over the cap and turn the cap counterclockwise a little to let the pressure escape through the vinyl tube. After relieving the steam pressure, remove the cap by slowly turning it counterclockwise.
  2. Drain the water from the radiator, heater core and engine after unplugging the radiator drain plug and removing the radiator cap.
  3. Drain the water in the water jacket by unplugging the drain plug of the cylinder block.
  4. Remove the reserve tank and drain the coolant.
  5. Drain the cooling water then clean the path of the cooling water by injecting water into the radiator from the radiator cap area.
  6. Apply the designated sealant to the screw area of the cylinder block drain plug, and then tighten to the standard torque. Specified sealant: 3M™ AAD Part No. 8731 or equivalent Tightening torque: 44 +/- 5 N. m (33 +/- 3 ft-lb)
  7. Securely tighten the drain plug of the radiator.
  8. Assemble the reserve tank. CAUTION: Do not use alcohol or methanol anti-freeze or any engine coolants mixed with alcohol or methanol anti-freeze. The use of an improper anti-freeze can cause corrosion of the aluminum components.
  9. By referring to the section on coolant, select an appropriate concentration for safe operating temperature within the range of 30 to 60%. Use special tool MB991871 to refill the coolant. A convenient mixture is a 50% water and 50% antifreeze solution [freezing point: -31 ° C (-23.8 °F)]. Recommended antifreeze: Long Life Antifreeze Coolant or an equivalent Quantity: 6.0 dm 3 (6.3 quarts) NOTE: For how to use special tool MB991871, refer to its manufacturer's instructions .
  10. Reinstall the radiator cap.
  11. Start the engine and let it warm up until the thermostat opens.
  12. After repeatedly revving the engine up to 3,000 r/min several times, then stop the engine.
  13. Remove the radiator cap after the engine has become cold, and pour in coolant up to the brim. Reinstall the cap. CAUTION: Do not overfill the reserve tank.
  14. Add coolant to the reserve tank between the "FULL" and "LOW" mark if necessary.
  15. Install the under cover (Refer to «FRONT BUMPER»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/mirrors/#exterior-lancer-evolution) ).

15. COOLANT HOSES (RADIATOR HOSE, HEATER HOSE) (INSPECT)

Inspect the surface of radiator hoses and heater hoses for heat and mechanical damage. Hard and brittle rubber, cracking, tears, cuts, abrasions and excessive swelling indicate deterioration of the rubber.

Disc Brake Pads Check

Check for fluid contamination and wear. Replace the complete set of pads if any one pad is defective.

Thickness of lining

Minimum limit: 2.0 mm (0.08 inch)

CAUTIONThe pads for the right and left wheels should be replaced at the same time. Never split or intermix brake pad sets. All four pads must be replaced as a complete set.

Scheme 126

Scheme 126

Rotors Check

Check whether the ABS rotor teeth are broken or deformed. Replace the Eight Ball Fixed Joint (EBJ) assembly of the drive-shaft, respectively, if the teeth are damaged or deformed.

Scheme 127

Scheme 127: Rotors Check

17. BRAKE HOSES (CHECK FOR DETERIORATION OR LEAKS)

Inspection of brake hoses should be included in all brake service operations.

The hoses should be checked for

Scheme 128

Scheme 128: 17. BRAKE HOSES (CHECK FOR DETERIORATION OR LEAKS)
  1. Incorrect length, severe surface cracking, pulling, scuffing or worn spots. (If the fabric casing of the hoses is exposed by cracks or abrasion in the rubber hose cover, the hoses should be replaced. Eventual deterioration of the hose and possible bursting failure may occur.)
  2. Incorrect installation, twisting or interference with wheel, tire or chassis.

Scheme 129

Scheme 129: 18. BALL JOINT AND STEERING LINKAGE SEALS (INSPECT FOR GREASE LEAKS AND DAMAGE)
  1. These components, which are permanently lubricated at the factory, do not require periodic lubrication. Damaged seals and boots should be replaced to prevent leakage or grease contamination.
  2. Inspect the dust cover and boots for proper sealing, leakage and damage. Replace them if defective.

19. SUSPENSION SYSTEM (INSPECT FOR LOOSENESS AND DAMAGE)

Visually inspect the front/rear suspension components for deterioration and damage. Re-tighten the front/rear suspension components retaining bolts to specified torque.

Scheme 130

Scheme 130: 20. DRIVESHAFT BOOTS (INSPECT FOR GREASE LEAKS AND DAMAGE)
  1. These components, which are permanently lubricated at the factory, do not require periodic lubrication. Damaged seals and boots should be replaced to prevent leakage or grease contamination.
  2. Inspect the dust cover and boots for proper sealing, leakage and damage. Replace them if defective.

21. REAR AXLE OIL (CHANGE)

Before the changing the rear axle oil, check that there is no oil leakage from the rear axle housing.

  1. Remove the filler plug.
  2. Remove the drain plug and drain out the oil.
  3. Replace the packing for drain plug and tighten the drain plug to the specified torque. Tightening torque: 64 +/- 4 N. m (47 +/- 3 ft-lb)
  4. Refill engine oil via the filler hole. Specified gear oil: Hypoid gear oil MITSUBISHI Genuine Gear Oil Part No. 8149630 EX or equivalent Quantity: 0.55 dm 3 (0.58 quart)
  5. Replace the gasket for drain plug and tighten the drain plug to the specified torque. Tightening torque: 49 +/- 9 N. m (37 +/- 6 ft-lb) 22.

22. TIRES (ROTATE)

Rotate tires regularly to equalize tire wear and help extend tire life. Recommended tire rotation is every 5 months or 8,000 km (5,000 miles) under normal driving conditions and every 4 months or 6,000 km (3,750 miles) in severe driving conditions. Timing for the rotation may vary according to vehicle condition, road surface conditions, and individual driver's habits.

When rotating tires, check for uneven wear, damage, and wheel alignment. Abnormal wear is usually caused by incorrect tire pressure, improper wheel alignment, out-of balance wheels, or severe braking.

The first rotation is the most important, to achieve more uniform wear for all tires on the vehicle.

Scheme 131

Scheme 131: 22. TIRES (ROTATE)

Scheme 132

Scheme 132: 23. AIR FILTER (REPLACE)
  1. Remove the glove box (Refer to «INSTRUMENT PANEL»(/mitsubishi/lancer-evolution/ix-2005-2007/remont/gauges-instrument-panels/#interior-lancer-evolution) .)
  2. Remove the two screws as shown, and replace the clean air filter.
  3. Remove the clean air filter.
  4. Install the glove box.

MAIN SEALANT AND ADHESIVE TABLE

APPLICATION3M™ NO.LOCTITE®/PERMATEX® NO.
ENGINE AND DRIVETRAINBetween rocker cover and camshaft bearing cap. Between rocker cover, semicircular packing and cylinder head. Between oil pressure switch and engine.3M™ AAD Part No. 8672 Ultrapro High Temp. Silicone Gasket or 3M™ AAD Part No. 8679 Black/8678 Black Press-In-Place Silicone gasket stripsPermatex® Ultra Black 598, No.82180
Between engine coolant temperature switch, engine coolant temperature sensor, thermo valve, thermo switch, joint, engine coolant temperature gauge unit (large-size) and engine3M™ AAD Part No. 8731 Medium Strength Blue ThreadlockerLoctite® 242 Blue Service Tool Removable 24200
Between oil pan and engine block3M™ AAD Part No. 8672, 3M™ AAD Part No. 8704 or 3M™ AAD Part No. 8679/3M™ AAD Part No. 8678Permatex® Ultra Gray 599, No.82194
WEATHER-STR IPPING FOR GLASSBetween tempered glass, body flanges, and weatherstrip3M™ AAD Part No. 8509 Auto Bedding and Glazing Compound or 3M™ AAD Part No. 8633 Windo-weld Resealant
WEATHER-STR IPPING FOR GLASSBetween laminated glass and weatherstrip3M™ AAD Part No. 8633
INTERIORSAdhesive of vinyl chloride cloth3M™ AAD Part No. 8088 General Trim Adhesive or 3M™ AAD Part No. 8064 Vinyl Trim AdhesivePermatex® Vinyl Repair Kit No.81786
Adhesion of door weatherstrip3M™ AAD Part No. 8001 (yellow) or 3M™ AAD Part No. 8008 (black) Super Weatherstrip Adhesive or 3M ™AAD Part No. 8011 Black Weatherstrip AdhesivePermatex® Super Black Weatherstrip Adhesive No.82, 81850
Sealing of various grommets and packing3M™ AAD Part No. 8509 or 3M™ AAD Part No. 8678
Adhesion of headliners and various interior decorative materials3M™ AAD Part No. 8088 General Trim Adhesive or 3M™ AAD Part No. 8090 Super Trim AdhesivePermatex® Spray Adhesive No.82019
BODY SEALANTSSealing of sheet metal joints, drip rail, floor, side panels, trunk, front panel, tail gate hinge3M™ AAD Part No. 8531 Heavy Drip-Check Sealer (gray) or 3M™ AAD Part No. 8302 Ultrapro Autobody Sealant (clear) or 3M™ AAD Part No. 8361 Urethane A/B Sealant (gray or white)
Miscellaneous body sealants (originally mounted w/adhesive tape) Waterproof door film Fender panel Splash shield Mud guard Rear combination lamp3M™ AAD Part No. 8633 Windo-weld Resealant
Fuel Tank and Pad3M™ AAD Part No. 8088 General Trim Adhesive or 3M™ AAD Part No. 8090 Super Trim AdhesivePermatex® Spray Adhesive No.82019
CHASSIS SEALANTSealing of various flange faces and threaded parts. Packing of fuel level sensor3M™ AAD Part No. 8730 High Strength Red Thread lock or 3M™ AAD Part No. 8731 Medium Strength Blue ThreadlockerLoctite® 272 High Strength and High Temperature 27200
Sealing of various threaded parts, dust covers. Differential carrier packing, dust covers and ball joint and linkage. Packing and shims of steering box, sealing of rack support cover and top cover of steering box housing, seal of junction face of knuckle arm flange3M™ AAD Part No. 8672 Ultrapro High Temp. Silicone Gasket or 3M™ AAD Part No. 8679 (black) or 3M™ AAD Part No. 8678 (black) Press-In-Place Silicone gasket strips 3M™ AAD Part No. 8661 or 3M™ AAD Part No. 8663 Super Silicone sealantPermatex® The Right Stuff No.25223
Seal of brake shoe hold-down pin and wheel cylinder of drum brakes3M™ AAD Part No. 8633 Windo-weld Resealant
QUICK FIX ADHESIVE3M™ AAD Part No. 8155 Quick Fix AdhesiveLoctite®Quicktite Super Glue 21309
ANAEROBIC STRONG SEALING AGENTFixing of various threads, bolts, screws. Fixing of differential drive gear bolt, Connecting of tilt steering bolt. Fan, pulley, gear sealing of small gaps and flange faces3M™ AAD Part No. 8730 High Strength Threadlocker or 3M™ AAD Part No. 8731 Medium Strength ThreadlockerLoctite®271, High-Strength Threadlocker 27100 or 27200
UNDERCOATING AGENT3M™ AAD Part No. 8883 Rubberized Undercoating Aerosol or 3M™ AAD Part No. 8864 Body Schutz Undercoating (qt)Permatex® Heavy-Duty Undercoating 81833

MAIN SEALANT AND ADHESIVE TABLE