What counts as a pipeline fitting
Pipeline fittings are the manufactured pieces that change the direction, size or branching of a piping run. In oil and gas the overwhelming majority are butt-weld fittings — their ends are beveled so they are welded directly to the matched pipe, creating a smooth, strong, inspectable joint. The three families every buyer needs are elbows, tees and reducers.
Elbows — 90°, 45° (and 180°)
The most specified fitting of all, normally supplied as long-radius (LR), meaning the centerline radius is 1.5 × nominal pipe size — the default in pipeline service because it reduces turbulence and pressure drop. 45° elbows steer a run through gentler turns. LR elbows to ANSI B16.9 are interchangeable between suppliers.
Tees — equal and reducing
A tee takes a branch off the main run or joins three pipe runs. An equal tee has all three openings the same nominal size (e.g. 8" × 8" × 8"); a reducing tee has a smaller branch (e.g. 12" × 12" × 8"). The dimensioned notation is always run × run × branch.
Reducers — concentric and eccentric
Reducers step the pipe run down to a smaller size, e.g. 10" × 6". A concentric reducer keeps the centerline straight — used where flow is not carrying a heavy phase. An eccentric reducer flattens one side, used on pump suctions and horizontal piping where the line must drain or avoid air pockets.
Schedules: what the wall thickness means
The nominal size (e.g. NPS 8) is the outside diameter family, but the wall thickness is set by the schedulenumber. Standard schedules you will see on carbon steel fitting lists:
| Schedule | Wall thickness | Typical service |
|---|---|---|
| Sch. STD | The long-standing "standard" wall | General-purpose carbon steel process and pipeline service |
| Sch. 40 | STD thickness on most sizes up to NPS 10 | The default for a wide range of liquid and gas service |
| Sch. 80 | Thicker wall, higher pressure capability | High-pressure lines and smaller bores |
| Sch. XS / XXS | Extra strong / double extra strong | Severe service, high pressure and mechanical loads |
The fitting schedule must match the pipe schedule of the line it serves: a Sch. 40 pipe run needs Sch. STD fittings butt-welded to it, because the ends must align and the weld joint must hold the same design pressure. When in doubt, put the schedule on the BOQ — "Sch. STD" and "Sch. 40" are written differently from one supplier to another, so spell it out.
Materials: ASTM A234 WPB and beyond
For carbon steel butt-weld fittings the standard grade is ASTM A234 WPB — the fitting companion to carbon steel pipe (ASTM A106 / API 5L), suitable for temperatures from roughly −20°F to 400°F and widely used in field equipment. Fittings can also be supplied in higher-strength or low-temperature grades where the pipe specification demands them. The material certificate (EN 10204 Type 3.1) is how you prove the grade.
Six fields that complete a fittings line item
- Type — elbow, tee, reducer (not just "fitting")
- Angle or configuration — 90°, 45°, equal or reducing
- Nominal size(s), e.g. 12" × 12" × 8"
- Schedule / wall thickness, e.g. Sch. STD
- Material and standard, e.g. ASTM A234 WPB, ANSI B16.9
- Ends and quantities, e.g. beveled ends, qty per the drawing
Related: pipeline fittings · how to write a bill of quantities
