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Home >> Toyota >> 2021 >> Supra Premium >> Repair and Diagnosis >> Engine Mechanical >> Blowers, Superchargers & Turbochargers >> Engine Intake / Exhaust System (B58) - Service Information >> Turbocharger >> On-Vehicle Inspection [03/2019 - ] >> Procedure

On-Vehicle Inspection [03/2019 - ]: Procedure

  1. EXTERNAL OIL LEAK 
    1. Leakage on oil supply or oil return line:
      1. When leaks are detected at the oil supply or oil return, check the bolt connections for tightening torques and correctly installed gaskets.
    2. Escaping blow-by oil
      GTY945788Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      *1 Compressor housing *2 Sealing ring
      *3 Fresh air, enriched with blow-by oil *4 Blow-by gas from ventilation hose
      *5 Fresh air - -
    3. Oil can penetrate into the air intake duct via the ventilation hose.
    4. If the gaskets of the air intake duct or charge air duct leak, blow-by oil can emerge there.
    5. Check the following when blow-by oil emerges:
      NOTE:

      When an excessive amount of blow-by oil is present in the air duct, the cause for that must be eliminated.

      1. Ventilation hose (measure internal pressure of the engine!)
      2. Gaskets of the air duct
    6. Turbocharger sub-assembly with normal deposits.
      GTY945787Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    7. Oil deposits on the compressor housing.
      GTY945785Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    8. Unacceptable oil leakage at the hose connection.
      GTY945688Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
  2. INTERNAL OIL LEAK 
    NOTE:

    The causes of the oil leaks described here are not caused by the turbocharger sub-assembly itself. If such oil leak occurs, the cause must be eliminated in the periphery!

    1. Oil return restricted
      GTY945694Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      1. If the oil return is restricted due to oil coking, the oil can no longer flow freely from the turbocharger sub-assembly bearing housing into the oil return. Excess pressure builds up in the bearing housing, and the oil is pressed out past the radial shaft seals and into the charge air duct and the turbine.
    2. Ventilation hose faulty
      GTY945695Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      1. If the pressure inside the cylinder block sub-assembly is too high as a result of faulty ventilation hose, the oil can no longer flow freely from the turbocharger sub-assembly bearing housing into the oil return. Excess pressure builds up in the bearing housing, and the oil is pressed out past the radial shaft seals and into the charge air duct and the turbine.
    3. Worn piston rings/increase in blow-by gas
      GTY945790Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      1. If the pressure inside the cylinder block sub-assembly is too high as a result of faulty piston rings, the oil can no longer flow freely from the turbocharger sub-assembly bearing housing into the oil return. Excess pressure builds up in the bearing housing, and the oil is pressed out past the radial shaft seals and into the charge air duct and the turbine.
    4. Bearing damage, turbocharger sub-assembly
      GTY945761Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      1. Impeller scraping against housing.
      2. The turbocharger sub-assembly has a dynamic plain bearing which stabilizes itself in operation. This means that in rest state, play in the shaft is normal.
      3. As long as the impeller does not scrape against the housing, play in the shaft bearing is OK and there is no bearing damage.
      4. If the impeller scrapes against the housing, the shaft bearing of the turbocharger sub-assembly is damaged.
      5. If the shaft bearing of the turbocharger sub-assembly is damaged, the radial shaft seals will no longer seal properly and oil flows from the bearing housing into the compressor and turbine.
  3. CRACKS IN THE TURBINE HOUSING 
    1. In the event of tears in the turbine housing that have led to exhaust leaks (soot traces at surrounding components), the turbocharger sub-assembly must be replaced.
      GTY945727Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      *a External crack in turbine housing.
  4. EXHAUST GAS LEAKS AT SCREW CONNECTIONS 
    1. Incorrect AZDs or tension can lead to leakage at the connection of the turbine housing to the exhaust manifold. The exhaust manifold must also be checked for leaks.
  5. EXHAUST LEAKS BETWEEN TURBINE AND BEARING HOUSINGS 
    1. Leaks at the connection of turbine housing and bearing housing can lead to heavy soot accumulations on the surrounding components. In the event of such leaks the turbocharger sub-assembly must be replaced.
      GTY945763Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      1. Exhaust leaks between turbine and bearing housings (1).
  6. EXHAUST GAS ESCAPING AT THE ADJUSTING MECHANISM 
    1. The adjusting mechanism is connected to the variable turbine geometry by the wall of the exhaust turbocharger housing. Limited leakage occurs at this point for design reasons. Such leaks may produce slight discoloration of the outer side of the turbocharger sub-assembly.
      GTY945829Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      *a Normal discoloration as a result of a leak.
    2. Excessive deposits.
      GTY945751Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002