How to specify O-Ring Grooves on a drawing

O-Ring Grooves is a groove that locates and compresses an elastomer seal between two faces. It is used for any assembly that has to hold pressure without a gasket or a sealant. This entry explains what it is, what the numbers on a data sheet mean, and what to put on a drawing.
It is written from the point of view of the buyer and the drawing office: the values that are realistic in production, the ones that cost money, and the way the result is verified. Where an industry sets the requirement, robotics is used as the example: repeatability across a family of near identical parts.
What belongs on the drawing
A clear drawing for O-Ring Grooves states the function, the tolerance and the verification, and leaves the route open where the function allows it.
- The feature and its tolerance: ±0.05 mm on the groove width and depth, applied to the features that locate the part.
- The material and its condition: 6082-T6 aluminium, with the certificate requirement.
- The surface finish: Ra 1.6 µm on the groove surfaces, called out only where it does something.
- The verification: dimensional report with the groove measured, and the standard the report is written to.
Mistakes that cost money
- A groove dimensioned to the seal's nominal size, with no allowance for compression, which makes the part more expensive without making it better.
- Sharp corners that cut the seal on assembly, which makes the part more expensive without making it better.
A workable note
Where a general note is used, say so once in the title block and keep the feature level call outs for the dimensions that matter. Specify the surface finish on the groove, because it decides whether the seal leaks

Applications
O-Ring Grooves is used for any assembly that has to hold pressure without a gasket or a sealant, and in practice it appears most often in hydraulic manifolds, pump housings, valve bodies, enclosures with an IP rating.
How it fits into a machining route
O-Ring Grooves is produced by whichever route reaches it most reliably, and it is usually the reason the rest of the part is dimensioned the way it is. Datums are chosen so that this feature is measured from what it actually has to be square or concentric with.The route is fixed before the first part is cut, and it is the route rather than the individual setting that holds the result: the tooling for a dovetail groove, which needs a form tool. Where a drawing calls for something the route cannot hold economically, that is raised at quotation rather than after the parts are made.
Standards, documentation and what is issued
The documentation requirement is dimensional report with the groove measured. Material is supplied against a certificate where the application calls for it, inspection results are recorded with the job, and the records are kept so that a repeat order can be compared with the first instead of being measured from scratch.
Depth micrometer and a radius check on the corners is the verification step. Where a customer format or a standard report is required, it is agreed before the batch starts, because a report written after the event is a report nobody can use.
Frequently asked questions
What tolerance should be specified for O-Ring Grooves?
±0.05 mm on the groove width and depth is realistic in production. Tightening it beyond the functional requirement increases cost without improving the part.
Which material is usually used?
6082-T6 aluminium is the usual choice, supplied against dimensional report with the groove measured.
How is the result verified?
Depth micrometer and a radius check on the corners, with the results recorded so a repeat order can be compared with the first.
What is the most common mistake?
Sharp corners that cut the seal on assembly.
How long does it take and what does it cost?
A realistic cycle is 5 to 15 minutes per groove, and the cost driver is the tooling for a dovetail groove, which needs a form tool.

Related capability
If you are specifying O-Ring Grooves on a drawing and want a second opinion on the route, send the model and the quantity. The first response is a manufacturability review with the likely risk points and a quotation, so the decision can be made on facts rather than on a price alone.
Machining, inspection and documentation are handled in one place, which is why the dimensional report and the material certificate arrive with the parts rather than after them.
Related entries
These entries sit next to O-Ring Grooves in the encyclopedia: Mould Inserts, Splined Shafts, ISO 2768 General Tolerances. Reading them together gives a fuller picture of how the process, the material and the measurement affect each other.