A perfect O-ring in a bad groove still leaks. Groove design is where sealing is won or lost, and these five rules cover 90% of real-world designs.
Squeeze (compression of the cross-section) is the sealing force. Below ~10% the seal may not seat; above ~35% you risk extrusion and permanent set. For static face seals, 20–25% is the sweet spot.
Stretching an O-ring onto a piston reduces its cross-section and its squeeze. Keep ID stretch below 5% — above that, step up to the next standard size.
The groove must leave room for the rubber to deform plus thermal expansion. Over 90% fill with nowhere to go means the seal extrudes or the hardware cracks.
Groove corners need a 0.2–0.5 mm radius. Sharp edges cut the ring during installation — the most common cause of “mystery” leaks on new assemblies.
Pressure should push the O-ring against the low-pressure groove wall. On the high-pressure side, add a backup ring above ~5 MPa (static) to stop extrusion into the clearance gap.
If you have a housing drawing, send it over — we verify squeeze, fill and clearance free with every quotation, and flag problems before tooling is cut.
Send us your drawing or operating conditions — our engineers will recommend the right material and size within 24 hours.