“Line pipe” is a specific category in steel trade — pipe manufactured to API 5L or equivalent standards specifically for transporting oil, gas, and water over distance, as opposed to structural pipe or general mechanical tube that happens to be a similar shape. Getting the manufacturing type and grade right matters more here than in most steel products, since line pipe sits at the center of pressure-containing systems where a wrong specification isn’t just a quality issue — it’s a safety and regulatory one. This article covers the types and grades that account for most of what actually moves in export trade.
ERW (Electric Resistance Welded) Line Pipe Formed by rolling steel plate or coil into a cylindrical shape and welding the seam using high-frequency electric resistance welding, with no filler metal added. ERW is the most cost-effective manufacturing method for line pipe in small to medium diameters and is widely used for onshore gathering lines, water pipelines, and lower-to-medium pressure gas distribution. Modern ERW lines with proper heat treatment of the weld seam (normalizing) have closed much of the historical quality gap with seamless pipe for these applications.
LSAW (Longitudinal Submerged Arc Welded) Line Pipe Formed from steel plate rolled into a cylinder with a single longitudinal seam, welded using submerged arc welding (both internal and external passes) with filler metal added. LSAW is typically specified for larger diameters and higher pressure ratings than ERW can reliably serve, and is the standard choice for long-distance oil and gas transmission pipelines where diameter and pressure requirements exceed ERW’s practical range.
SSAW (Spiral Submerged Arc Welded) Line Pipe Formed by coiling steel strip in a spiral (helical) pattern and welding the seam along that spiral path. SSAW is efficient for producing large-diameter pipe from narrower strip widths than LSAW would require, making it a cost-effective option for large-diameter, lower-to-medium pressure applications — water transmission pipelines, some gas gathering systems, and piling applications where the spiral weld doesn’t compromise the pipe’s intended use.
| Type | Diameter Range | Pressure Rating | Typical Use |
|---|---|---|---|
| ERW | Small to medium (up to ~24″) | Low to medium | Gathering lines, water pipe, gas distribution |
| LSAW | Medium to large (16″–100″+) | Medium to high | Long-distance oil/gas transmission pipelines |
| SSAW | Medium to large (16″–120″) | Low to medium | Water transmission, piling, gas gathering |
API 5L Grade B The baseline grade for line pipe, offering moderate strength suitable for lower-pressure applications and general water or gas distribution. The most widely available and cost-effective grade, and the default choice unless project pressure requirements call for something higher.
API 5L X42 / X46 Slightly higher strength than Grade B, used where moderate pressure increases justify a small step up without moving into the higher-cost X-grade range. Common in mid-pressure gas distribution and gathering systems.
API 5L X52 / X56 A common mid-tier specification for regional gas transmission and larger water transmission projects, balancing strength gains against the cost premium of higher-grade steel.
API 5L X60 / X65 Higher-strength grades specified for long-distance, higher-pressure transmission pipelines, where increased yield strength allows thinner wall thickness for the same pressure rating — reducing material weight and, at scale, project cost, despite the higher per-ton price of the steel itself.
API 5L X70 (and higher, for major transmission projects) Used on major long-distance transmission pipeline projects where wall thickness reduction from higher strength steel delivers meaningful project-wide savings in steel tonnage, transport, and welding costs, justifying the additional metallurgical control required to reliably produce these grades.
| Specification | Range |
|---|---|
| Outer diameter | 21.3mm – 2032mm (ERW/LSAW/SSAW combined range) |
| Wall thickness | 3mm – 40mm |
| Length | Random (11–12m) or double random, per project requirement |
| Common grades | API 5L Gr.B, X42, X46, X52, X56, X60, X65, X70 |
| Standards | API 5L, ISO 3183, GB/T 9711 |
| End finish | Beveled for welding, plain end |
| PSL level | PSL1 (standard) or PSL2 (enhanced testing and traceability requirements) |
API 5L pipe is certified to one of two product specification levels. PSL1 covers standard requirements for chemical composition, mechanical properties, and basic testing. PSL2 adds more stringent requirements — tighter carbon equivalent limits (important for weldability), mandatory Charpy impact testing, additional non-destructive testing requirements, and full material traceability.
Many buyers assume “API 5L” alone specifies enough, but PSL1 and PSL2 pipe from the same nominal grade can have meaningfully different toughness and weldability characteristics. For critical transmission pipelines, particularly in regions with low-temperature service conditions, PSL2 is typically the appropriate specification; for lower-consequence applications, PSL1 offers a genuine cost saving without compromising suitability.
The decision usually comes down to diameter, pressure, and project economics rather than a single “best” type:
Line pipe selection genuinely is a decision tree — manufacturing type follows from diameter and pressure, grade follows from the pressure and wall thickness economics, and PSL level follows from the project’s toughness and traceability requirements. Working through that sequence with real project parameters, rather than defaulting to whatever a supplier has readily in stock, is what keeps a pipeline project both within budget and within spec.
For API Monogram verification, mill test certificate samples, or a quotation matched to your project’s diameter, pressure, and grade requirements, our export team can help specify the right line pipe for your project.