HydTec measured the surface roughness and polished the sealing surfaces to determine whether the surface finish affected the leakage. The threaded holes were pressure-tested to verify their integrity and exclude them as possible leakage paths.
The block was also examined for cracks, porosity and other material defects. Valves and O-rings were inspected for deformation, damage or dimensional deviations that could affect sealing performance.
The available 3D drawings were reviewed, and the relevant bores and machined interfaces were measured to confirm that the block had been manufactured within the required dimensions.
After the most likely mechanical, dimensional and sealing-related causes had been eliminated, attention turned to the protective surface coating. The affected surfaces were ground to remove the coating, after which the block was pressure-tested again.
The treated block remained leak-tight. The investigation concluded that hydraulic oil had migrated beneath the surface coating, creating a leakage path that was not visible during conventional inspection.
After eliminating the most likely mechanical and sealing-related causes, we decided to surface-grind the blocks to remove the electro-zinc coating. After this treatment, the blocks became leak-tight. The conclusion was that oil had migrated beneath the surface coating, even though this was not an obvious or expected failure mode.