A high-hour heavy diesel engine operating in Mexico required repeated coolant top-ups.
External hoses, radiator connections and obvious coolant-system components showed no clear leakage.
The engine’s fuel-injection system was functioning normally, and no simple external explanation matched the gradual coolant loss.
Because the engine used wet cylinder liners, the investigation expanded to the physical boundary between the liner wall and surrounding coolant.
In a wet-liner engine, part of the cylinder liner is directly exposed to engine coolant.
The structure can be viewed as:
Combustion inside liner → Liner wall → Coolant outside liner
The liner must therefore survive:
A loss of liner-wall integrity can create an internal coolant leak even when no hose or radiator connection is wet.
Rapid liner-wall vibration can contribute to localized pressure changes in the coolant adjacent to the liner.
Under suitable conditions, vapor bubbles can form and collapse near the metal surface.
Repeated bubble collapse can gradually damage the liner wall.
Over a long service period, this process may contribute to:
The exact risk depends on engine design, coolant specification, maintenance and operating history.
Technicians reviewed:
The investigation did not assume cavitation solely because the engine used wet liners.
The diagnosis required evidence of actual liner-wall damage.
A small liner-wall defect may initially allow only limited coolant migration.
The operator may see:
That makes trend monitoring important.
The engine had accumulated extensive operating time, making long-term material condition and cooling-system maintenance relevant.
The geographic setting was therefore tied to the application through heavy commercial service rather than simply added to the title.
Not every unexplained coolant loss originates from a hose, gasket or external heat exchanger.
On wet-liner engines, the cylinder liner itself is part of the coolant boundary and must be considered when evidence supports that path.
Yes. Severe material erosion can compromise liner-wall integrity.
No. Risk depends on engine design, coolant condition, maintenance and operating environment.