A hydraulic machine operating under high-temperature duty in the UAE developed a problem that appeared only after continuous operation.
The hydraulic motor initially produced normal speed and useful torque.
After the system became hot, however:
Main working pressure remained within the expected operating range for the machine.
That combination suggested that the motor’s main power circuit and housing pressure should be treated separately.
Many hydraulic motors allow a small amount of internal leakage for lubrication and component clearance.
That leakage is routed through the case-drain circuit.
The simplified path is:
High-pressure working chambers → Small internal leakage → Motor housing → Case-drain port → Low-pressure return
If the case drain becomes restricted:
Normal internal leakage enters housing → Oil cannot leave freely → Housing pressure rises
This elevated pressure can act directly on shaft seals and internal rotating components.
The main work ports continued to show normal operating pressure.
That measurement reflected the motor’s torque-producing circuit.
It did not show pressure inside the motor housing.
The investigation therefore added a separate question:
What is happening to pressure behind the shaft seal?
The motor was observed from cold operation through sustained duty.
The pattern was consistent:
This temperature-dependent behavior supported investigation of a flow restriction in a low-volume drain circuit.
Inspection followed the drain path through:
A restriction in the case-drain path prevented internal leakage oil from returning with sufficiently low backpressure.
The shaft seal itself had become a visible symptom, but it was not necessarily the initiating fault.
A new seal installed into a motor housing that remains over-pressurized can again be exposed to abnormal load.
The diagnostic distinction is:
seal cannot contain normal housing pressure
versus
housing pressure is no longer normal because the drain is restricted.
This UAE hydraulic case demonstrates why main work-port pressure does not describe every pressure inside a hydraulic motor.
When a motor operates normally at first but develops heat and shaft-seal leakage after extended use, the case-drain circuit should be evaluated as an independent low-pressure path.
Yes. The two circuits perform different functions.
Excessive housing backpressure can place abnormal load on the seal and contribute to leakage.