| Maximum pressure | Up to 35 MPa (350 bar) | Peak and continuous pressure, pressure spikes, and whether pressure acts in one or both directions | Confirm the seal profile, material, and extrusion-gap limits at the maximum pressure. Check the gland and piston dimensions against the seal supplier’s design data. |
| Operating speed | 0.1–0.5 m/s as an example reciprocating range | Average and peak speed, direction changes, and time spent at each speed | Check friction, heat generation, lubrication, and wear at the actual pressure and speed combination. Do not assess speed as an independent limit. |
| Stroke length | 500 mm per working stroke as an example duty | Full stroke, stroke frequency, dwell time, and total daily operating time | Long or frequent strokes can increase frictional heat and wear. Evaluate the complete motion cycle and ensure the seal remains lubricated throughout travel. |
| Fluid temperature | 20–80°C operating range; record any short-duration peaks | Minimum start-up temperature, normal fluid temperature, and maximum peak temperature | Choose an elastomer or thermoplastic compatible with both the fluid and the full temperature range. Temperature capability depends on the specific compound and seal design. |
| Hydraulic fluid | For example, mineral-oil-based hydraulic fluid | Fluid type, additives, water content, and any change of fluid during service | Verify material compatibility with the exact fluid. Fluids such as water-glycol or phosphate ester may require different seal materials. |
| Extrusion gap and clearance | Measure the maximum clearance at operating pressure and temperature | Piston-to-bore clearance, tolerance stack-up, side loading, and housing deflection | High pressure can force seal material into an excessive gap. Confirm extrusion resistance and consider a suitable backup ring when the design requires one. |
| Surface finish and alignment | Use the cylinder and piston finish specified for the selected seal profile | Surface roughness, lead, scratches, bore roundness, and rod or piston alignment | Finish requirements vary by seal material and profile. Check the seal manufacturer’s surface-finish guidance and inspect for damage that could create a leak path. |
| Duty-cycle validation | Example: repeated extension and retraction under changing load | Pressure, speed, stroke, temperature, and cycle frequency together | Validate the combined duty in the intended cylinder or a representative test setup. A seal suitable for each individual condition may not suit their combined effects. |