Contents Section: A/c Compressor All sections

Heating, Air Conditioning & Ventilation - Lancer: Other Mitsubishi Lancer X рестайлинг

A/c Compressor 12 illustrations ~1627 words

SAFETY PRECAUTIONS

WARNINGWear safety goggles and gloves when servicing the refrigeration system to prevent severe damage to eyes and hands.

Because R-134a refrigerant is a hydro fluorocarbon (HFC) which contains hydrogen atoms in place of chlorine atoms, it will not cause damage to the ozone layer.

Ozone filters out harmful radiation from the sun. To assist in protecting the ozone layer, Mitsubishi Motors Corporation recommends an R-134a refrigerant recycling device.

Refrigerant R-134a is transparent and colorless in both the liquid and vapor state. Since it has a boiling point of -29.8°C (-21.64°F) at atmospheric pressure, it will be a vapor at all normal temperatures and pressures. The vapor is heavier than air, non-flammable, and non-explosive. The following precautions must be observed when handling R-134a.

WARNINGDo not heat R-134a above 40°C (104.0°F) or it may catch fire and explode.

R-134a evaporates so rapidly at normal atmospheric pressures and temperatures that it tends to freeze anything it contacts. For this reason, extreme care must be taken to prevent any liquid refrigerant from contacting the skin and especially the eyes. Always wear safety goggles when servicing the refrigeration part of the A/C system. Keep a bottle of sterile mineral oil handy when working on the refrigeration system.

  1. Should any liquid refrigerant get into your eyes, use a few drops of mineral oil to wash them out. R-134a is rapidly absorbed by the oil.
  2. Next, splash your eyes with plenty of cold water.
  3. Call your doctor immediately even if irritation has ceased.
CAUTIONKeep R-134a containers upright when charging the system.

In most instances, moderate heat is required to bring the pressure of the refrigerant in its container above the pressure of the system when charging or adding refrigerant.

A bucket or large pan of hot water not over 40°C (104.0°F) is all the heat required for this purpose. Do not heat the refrigerant container with a blow torch or any other means that would raise temperature and pressure above this temperature. Do not weld or steam-clean on or near the system components or refrigerant lines.

WARNINGThe leak detector for R-134a should be used to check for refrigerant gas leaks.
CAUTIONDo not allow liquid refrigerant to touch bright metal or it will be stained.

When metering R-134a into the refrigeration system, keep the supply tank or cans in an upright position. If the refrigerant container is on its side or upside down, liquid refrigerant will enter the system and damage the compressor.

Refrigerant will tarnish bright metal and chrome surfaces, and in combination with moisture can severely corrode all metal surfaces.

CONDENSER FAN AND RADIATOR FAN CONTROL

The ECM judges the required revolution speed of radiator fan motor and condenser fan motor using the input signals transmitted from A/C switch, secondary pulley speed sensor < CVT > or vehicle speed sensor (VSS) < M/T > and engine coolant temperature sensor.

When Operating The A/C Switch

  1. The air thermo sensor, which senses the temperature of the air flowing out of the evaporator, deactivates the compressor at 1°C (33.8°F) or below.
  2. The dual pressure switch turns OFF when the refrigerant pressure becomes excessively high or low, thus protecting the compressor circuit (See Table below).
  3. When the air thermo sensor is activated, and the ignition switch, blower switch, and A/C switch are ON, the A/C compressor clutch relay is energized.

When Operating The Mode Selection Dial

  1. The A/C will work when the mode selection dial is set to the "Defroster" or "Defroster/foot" position, or the temperature control dial is set to the "MAX A/C" position. In other dial positions, when the A/C switch is turned on, the A/C will work.

A/C Compressor Clutch Relay ON Conditions

Ignition switch (IG2)ONNOTE: A/C compressor clutch relay is de-energized when any one switch, sensor or control unit turns off. NOTE: The components marked by* communicate with the ECM. If the air thermo sensor detects a temperature of 1°C (33.8°F), the A/C-ECU will turn off the A/C compressor clutch relay.
Blower switchON
A/C switch, mode selection dial defroster, defroster/foot position or temperature control MAX A/CON
Air thermo sensor*
Pressure detected by A/C pressure sensor2.94 MPa (427 psi) or less (If the refrigerant pressure exceeds 2.94 MPa (427 psi), A/C compressor clutch relay is not ON condition until the refrigerant pressure has been measured up to 2.35 MPa (341 psi) a or less.)ON
0.19 MPa (27 psi) or more (If the refrigerant pressure falls short of 0.19 MPa (27 psi), A/C compressor clutch relay is not ON condition until the refrigerant pressure has been measured up to 0.22 MPa (32 psi) or more.)
A/C compressor clutch relay driving transistor (within powertrain control module)ON
NOTE
A/C compressor clutch relay is de-energized when any one switch, sensor or control unit turns off.
NOTE
The components marked by* communicate with the ECM. If the air thermo sensor detects a temperature of 1°C (33.8°F), the A/C-ECU will turn off the A/C compressor clutch relay.

COMPRESSOR CLUTCH RELAY CONDITIONS

LUBRICANTS

ItemSpecified lubricantQuantity
Each connection of refrigerant lineSUN PAG 56As required
Compressor refrigerant unit lubricant cm 3 (fl.oz)SUN PAG 5670 - 90 (2.4 - 3.0)

LUBRICANTS

CAUTION LABELS

The refrigerant gas caution label must be affixed in the location shown in the illustration. Follow the instructions on the label when servicing.

Scheme 114

Scheme 114: CAUTION LABELS
No.Contents
1Name of A/C manufacturer
2Amount of refrigerant
3Name of compressor oil

CAUTION LABEL CONTENTS

Scheme 115

Scheme 115

CHECK OF FREEZE FRAME DATA

The freeze frame data can be checked by using the scan tool (Refer to HOW TO COPE WITH INTERMITTENT MALFUNCTIONS ).

When detecting fault and storing the DTC, the ECU connected to CAN bus line obtains the data before the determination of the DTC and the data when the DTC is determined, and then stores the ECU status of that time. By analyzing the data from scan tool, the troubleshooting can be performed more efficiently. The displayed items are as shown in the table below.

Item No.Item nameContent itemUnit
01OdometerTotal driving distance after the diagnostic trouble code is generatedMile (1)
02Ignition cycleNumber of times the ignition switch is turned "ON" or "LOCK (OFF)" after the past failure transitionNumber of counts is displayed.
04Current trouble accumulative timeCumulative time for current malfunction of diagnostic trouble codeMin
(1) If a failure occurs to both the ABS-ECU and ETACS-ECU, 0000 mile or FFFF mile is displayed to the scan tool MB991958.
(1)If a failure occurs to both the ABS-ECU and ETACS-ECU, 0000 mile or FFFF mile is displayed to the scan tool MB991958.

DISPLAY ITEM LIST

FUNCTION

Compressor that recovers the refrigerant, which evaporated in the evaporator and became a high-temperature and high-pressure gas, and turns it into liquid again.

PROBABLE CAUSES

  1. Insufficient refrigerant
  2. Malfunction of connector.
  3. Malfunction of the harness (A/C compressor circuit is open/shorted to ground)
  4. Malfunction of the A/C pressure sensor.
  5. Malfunction of the A/C compressor.
  6. Malfunction of the A/C compressor clutch relay.
  7. Malfunction of the A/C controller assembly (A/C-ECU).

DATA LIST REFERENCE TABLE

Refer to DATA LIST REFERENCE TABLE ).

CHARGING

Use the refrigerant recovery station to charge the refrigerant.

METHOD BY USING REFRIGERANT RECOVERY AND RECYCLING UNIT

Using the refrigerant recovery and recycling unit, refill the refrigerant.

Note. Refer to the refrigerant recovery and recycling unit's Instruction Manual for operation of the unit.

DISCHARGING SYSTEM

Use the refrigerant recovery unit to discharge refrigerant gas from the system.

Note. Refer to the refrigerant recovery and recycling unit's Instruction Manual for operation of the unit.

PERFORMANCE TEMPERATURE CHART

Garage ambient air temperature °C (°F)20 (68)25 (77)30 (86)35 (95)40 (104)45 (113)50 (122)
Discharge air temperature °C (°F)4.7 (40) - 17 (63)10 (50) - 23 (73)15 (59) - 28 (82)20 (68) - 33 (91)26 (79) - 38 (100)31 (88) - 44 (111)36 (97) - 49 (120)
Compressor high pressure kPa (psi)934 (136) - 1700 (247)1068 (155) - 1850 (268)1201 (174) - 2000 (290)1335 (193) - 2150 (312)1468 (213) - 2300 (334)1602 (232) - 2450 (355)1735 (252) - 2600 (377)
Compressor low pressure kPa (psi)170 (24.7) - 359 (52.1)215 (31.2) - 406 (58.9)260 (37.7) - 452 (65.6)305 (44.2) - 499 (72.4)350 (50.8) - 545 (79.1)395 (57.3) - 592 (85.9)440 (63.8) - 638 (92.6)

PERFORMANCE TEMPERATURE CHART

LOST CHARGE

If the system has lost all charge due to a leak

  1. Evacuate the system. (Refer to «REFRIGERANT LEVEL TEST»(ref-592562-S08394521632014011000000) ).
  2. Charge the system with approximately 0.453 kg (1 pound) of refrigerant.
  3. Check for leaks.
  4. Discharge the system.
  5. Repair leaks. CAUTION: Replacement filter-drier units must be sealed while in storage. The drier used in these units will saturate water quickly upon exposure to the atmosphere. When installing a drier, have all tools and supplies ready for quick assembly to avoid keeping the system open any longer than necessary.
  6. Replace receiver drier.
  7. Evacuate and charge system.

LOW CHARGE

If the system has not lost all of its refrigerant charge; locate and repair all leaks. If it is necessary to increase the system pressure to find the leak (because of an especially low charge) add refrigerant. If it is possible to repair the leak without discharging the refrigerant system, use the procedure for correcting low refrigerant level.

HANDLING TUBING AND FITTINGS

Kinks in the refrigerant tubing or sharp bends in the refrigerant hose lines will greatly reduce the capacity of the entire system. High pressures are produced in the system when it is operating. Extreme care must be exercised to make sure that all connections are pressure tight. Dirt and moisture can enter the system when it is opened for repair or replacement of lines or components. The following precautions must be observed. The system must be completely discharged before opening any fitting of connection in the refrigeration system. Open fittings with caution even after the system has been discharged. If any pressure is noticed as a fitting is loosened, allow trapped pressure to bleed off very slowly.

Never attempt to re-bend formed lines to fit. Use the correct line for the installation you are servicing. A good rule for the flexible hose lines is keep the radius of all bends at least 10 times the diameter of the hose.

Sharper bends will reduce the flow of refrigerant. The flexible hose lines should be routed so that they are at least 80 mm (3.1 inches) from the exhaust manifold. It is good practice to inspect all flexible hose lines at least once a year to make sure they are in good condition and properly routed.

On standard plumbing fittings with O-rings, these O-rings are not reusable.

A/C COMPRESSOR CLUTCH RELAY CONTINUITY CHECK

Battery voltageTester connectionSpecified condition
Not applied3 - 4Open circuit
Connect terminal 2 to the positive battery terminal Connect terminal 1 to the negative battery terminal3 - 4Less than 2 ohms

CLUTCH RELAY CONDITIONS

BLOWER RELAY CONTINUITY CHECK

Battery voltageTester connectionSpecified condition
Not applied3 - 4Open circuit
Connect terminal 1 to the positive battery terminal Connect terminal 2 to the negative battery terminal3 - 4Less than 2 ohms

BLOWER RELAY CONDITIONS

<< A >> SUCTION PIPE AND LIQUID PIPE DISCONNECTION

CAUTIONAs the compressor oil and receiver are highly moisture absorbent, use a non-porous material to plug the hose and nipples.

To prevent the entry of dust or other foreign bodies, plug the dismantled hose and the nipples of the expansion valves.

AIR THERMO SENSOR CHECK

Measure the resistance between the sensor terminals under at least two temperatures. The resistance values should meet the values shown in the illustration.

Note. The temperature should be within the range shown in the illustration.

Scheme 116

Scheme 116: REMOVAL AND INSTALLATION

BLOWER MOTOR CHECK

Check that the motor turns when applying battery power between the connector terminals. Also check to see that there is no abnormal sound emitted from the motor at this time.

Scheme 117

Scheme 117: REMOVAL AND INSTALLATION

AMBIENT AIR TEMPERATURE SENSOR CHECK

CAUTIONThe ambient air temperature sensor should be checked without removing it. If the sensor is removed, it is no longer serviceable.

Measure the resistance between the sensor terminals under at least two temperatures. The resistance values should meet the values shown in the illustration.

Note. The temperature should be within the range shown in the illustration.

Scheme 118

Scheme 118: REMOVAL AND INSTALLATION

Scheme 119

Scheme 119: REMOVAL AND INSTALLATION

Note. The service points which are not described are the same as before.

<< A >> FLEXIBLE DISCHARGE HOSE / FLEXIBLE SUCTION HOSE DISCONNECTION

CAUTIONAs the compressor oil and receiver are highly moisture absorbent, use a non-porous material to plug the hose and nipples.

To prevent the entry of dust or other foreign bodies, plug the dismantled hoses and compressor nipples.

>> B << FIELD CORE ATTACHMENT

Line up the pin hole on the compressor unit with the field core projection and attach.

Scheme 120

Scheme 120: >> B << FIELD CORE ATTACHMENT

A/C REFRIGERANT TEMPERATURE SWITCH

CAUTIONDo not heat more than necessary.

Scheme 121

Scheme 121

Scheme 122

Scheme 122
  1. Dip the metal part of the A/C refrigerant temperature switch into engine oil and increase the oil temperature using a gas burner or similar.
  2. When the oil temperature reaches the standard value, check that voltage is supplied between the terminals. STANDARD VALUE Item Temperature Less than 2 ohms Slightly below 120°C (248°F) No continuity 135°C (275°F) or more NOTE: When the oil temperature is 135°C (275°F) or more and there is no continuity, the resistance will not be 2ohms or lower until the oil temperature reduces to 120°C (248°F) or less.

Scheme 123

Scheme 123: REMOVAL AND INSTALLATION

<< A >> FLEXIBLE SUCTION HOSE AND LIQUID PIPE A DISCONNECTION

CAUTIONAs the compressor oil and receiver are highly moisture absorbent, use a non-porous material to plug the hose and nipples.

To prevent the entry of dust or other foreign bodies, plug the dismantled hose and condenser assembly nipples.

Scheme 124

Scheme 124: << B >> CONDENSER ASSEMBLY DISCONNECTION
  1. Lift the condenser while pressing the claw B.
  2. Lift the condenser while pressing the claw A and remove it.

Scheme 125

Scheme 125: REMOVAL AND INSTALLATION

<< A >> HOSE/PIPE DISCONNECTION

CAUTIONAs the compressor oil and receiver are highly moisture absorbent, use a non-porous material to plug the hose and nipples.

To prevent the entry of other foreign bodies, plug the condenser, compressor, and expansion valve nipples.