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Checking cylinders for leaks - ra01006010015x (0015)

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Engines 601, 602 (except 602.98), 603 

Operation no. of operation texts and work units or standard texts and flat rates

01-1300 

Fig 1: Checking Cylinders For Leaks
G05438089Courtesy of MERCEDES-BENZ OF NORTH AMERICA.
Engine warm up to operating temperature (approx. 80°C) (step 1).
Nozzle holders (4) remove, install.
Engine 602.982 (DELA) : glow plugs remove, install.
Coolant expansion tank (1) IMPORTANT Open cap (2) on coolant expansion tank only at coolant temperatures below 90°C.
Unscrew filler cap (2), screw on. Top up coolant if necessary (steps 4 - 5).
Air cleaner on naturally aspirated engines (6) and on turbo-engines (3) take off air filter cap, fit on (step 6).
Oil filler cap (5) unscrew, screw on.
Engine position piston of cylinder to be tested to ignition TDC. Connect cylinder leak tester and calibrate (steps 9 - 12).
Cylinder determine pressure loss (steps 13 - 14).
NOTE: Check other cylinders in firing order.
PERMISSIBLE PRESSURE LOSS

Total, engine max. 25 %
Valves and cylinder head gasket max. 10 %
Piston rings max. 20 %
Tightening torques Nm
Union nuts on injection lines (reference value) 10 - 20
Nozzle holders for vertical injection 70+10
Nozzle holders for oblique injection 70+10
Glow plug 20

Special tools 

Fig 2: Identifying Special Tools (001 589 65 09 00)
G05438090Courtesy of MERCEDES-BENZ OF NORTH AMERICA.
Fig 3: Identifying Special Tools (602 589 06 63 00)
G05438091Courtesy of MERCEDES-BENZ OF NORTH AMERICA.
COMMERCIALLY AVAILABLE TOOLS AND TESTERS

Designation e.g. Make Order no.
Cylinder leak tester Bosch EFAW 210 A
Adapters and connectors Bosch 1 687 010 016

Testing 

  1. Warm engine up to operating temperature (approx. 80°C).
  2. Remove all nozzle holders.
  3. Engine 602.982: remove glow plugs.

    IMPORTANT Open cap on coolant expansion tank only at coolant temperatures below 90°C.

  4. Screw off cap on coolant expansion tank.
  5. Check coolant level in coolant expansion tank and add, if required.
  6. Open retaining strap on air cleaner cover on naturally aspirated engines or screw out hex. head bolts on air cleaner cap on Turbo-engines, remove air cleaner cap and take out filter cartridge.
  7. Screw off oil filler cap.
  8. Move piston in cylinder to be checked to TDC, ignition stroke.
  9. Screw appropriate adapter (01) with straight or angular connector (02) into precombustion chamber of cylinder to be checked.
  10. Engine 602.982 (DELA) : insert connector 602 589 06 63 00 with angled connection piece (02) into the glow plug bore of the cylinder to be tested.
    Fig 4: Identifying Adapter And Straight Or Angular Connector
    G05438092Courtesy of MERCEDES-BENZ OF NORTH AMERICA.
  11. Calibrate cylinder leak tester and fit connection hose (03) of tester onto the connection piece (02).
  12. Pressurize cylinder with compressed air and determine any pressure loss at the tester.
    Fig 5: Identifying Connection Hose And Connection Piece
    G05438092Courtesy of MERCEDES-BENZ OF NORTH AMERICA.
  13. If pressure loss exists, determine cause; check by listening at cylinder head gasket, air intake area, exhaust, oil filler opening and prechamber or glow plug bore of the cylinder and adjacent cylinders and check coolant in coolant expansion reservoir for air bubbles.
    NOTE: If pressure loss is present and air lost through the oil filler cap, the possible causes can be limited by spraying engine oil on the piston crown of the cylinder being tested. The oil seals the gap between the piston and cylinder. If pressure loss is no longer present for a short time, the cause is in all probability the piston, piston rings or cylinder running surface.

    The position of the piston ring gaps can result in incorrect determination of the cause. If it is suspected that the pressure loss results from the piston ring gaps being positioned directly above one another, completely assemble engine and repeat test after operating engine for a short time.

  14. Conduct the test of the remaining cylinders in the firing order of the engine.

    Ignition sequence, engine 601

    Fig 6: Identifying Ignition Sequence, Engine 601
    G05438094Courtesy of MERCEDES-BENZ OF NORTH AMERICA.

    Ignition sequence, engine 602

    Fig 7: Identifying Ignition Sequence, Engine 602
    G05438095Courtesy of MERCEDES-BENZ OF NORTH AMERICA.

    Ignition sequence, engine 603

    Fig 8: Identifying Ignition Sequence, Engine 603
    G05438096Courtesy of MERCEDES-BENZ OF NORTH AMERICA.
  15. Installation is performed in the reverse order.