AWS D1.1:2025 · Table 5.11 · Category B

A516 Gr.55/60 Preheat for GMAW — up to 3/4"

Per AWS D1.1:2025 Table 5.11, the minimum preheat for A516 Gr.55/60 welded with GMAW at up to 3/4" is 32°F (0°C), Category B. Preheat below this raises hydrogen-cracking risk in the heat-affected zone; the same temperature is the minimum interpass limit maintained through the weld.

Built on AWS D1.1:2025 Table 5.11 — every value traced to the clause.

Minimum Preheat & Interpass Temperature
32°F / 0°C
Category B Low-hydrogen SMAW, SAW, GMAW, or FCAW process
AWS D1.1:2025 Table 5.11, §5.7
When base metal temperature is below 32°F [0°C], preheat to minimum 70°F [20°C] and maintain during welding (Table 5.11 footnote a).
Reference tool. Verify against project-applicable edition and Engineer-approved WPS.

Have a preheat question? Ask Flux

GMAW (Gas Metal Arc Welding)

GMAW (MIG) feeds continuous solid wire with shielding gas — an inherently low-hydrogen process assigned to Category B in Table 5.11.

For pressure vessel work, GMAW with ER70S-6 provides excellent deposition rates on long seam welds. Gas backing with argon on back-purged root passes produces a smooth internal weld profile that satisfies radiographic acceptance criteria. Shielding gas purity is critical for vessel code quality; dew point must be below -40°F.

Why GMAW for A516 Gr.55/60 at up to 3/4"

Why GMAW for A516 Gr.55/60 at up to 3/4"? GMAW delivers 8-12 lb/hr deposition — compared to <a href="/welding/preheat-calculator/a516-5560/saw/up-to-3-4-inch/">SAW</a> at 15-40 lb/hr. Position capability: all positions (not GMAW-S). Suitability: primarily shop.

Filler Metal for GMAW

Common wire: ER70S-6 (AWS A5.18). Diameter: 0.035" for thin sections and out-of-position, 0.045" for production flat/horizontal. Shielding gas: 75/25 Ar/CO2 (standard), 90/10 Ar/CO2 (less spatter, better profile), or 100% CO2 (deeper penetration, more spatter). Contact-tip-to-work distance: 1/2" to 3/4".

Typical values for reference — always verify against your approved WPS and electrode manufacturer data.

A516 Gr.55/60

ASTM A516 Grades 55 and 60 are carbon steel plates designed for moderate and lower temperature pressure vessel service. Grade 55 (55 ksi tensile, 30 ksi yield) and Grade 60 (60 ksi tensile, 32 ksi yield) are widely used in storage tanks, heat exchangers, and process drums. Chemistry limits (0.24% max carbon for Gr.55, 0.27% max carbon for Gr.60 on thicker plate) and typical carbon equivalent of 0.38-0.44 qualify them for both Category A (non-low-hydrogen) and Category B preheat in Table 5.11. A516 is produced in plate thicknesses from 1/4" through 12". Grades 55 and 60 may be ordered as-rolled, normalized, or stress-relieved depending on the ASME Code requirements for the specific vessel design temperature and thickness.

Why This Preheat for A516 Gr.55/60 with GMAW

Pressure vessel plate for storage tanks and heat exchangers at moderate strength. With low-hydrogen GMAW, this combination falls under Category B rather than Category A — the continuous solid wire and gas shielding in GMAW produce inherently low hydrogen levels, typically 2-4 mL/100g. The 32°F minimum preheat is lower than what non-low-hydrogen SMAW would require at the same thickness because GMAW significantly reduces the driving force for hydrogen-induced cracking in the heat-affected zone.

Typical Applications for A516 Gr.55/60

Specified for atmospheric storage tank shells per API 650, heat exchanger tube sheets, air receiver vessels, condensate drums, deaerator shells, and low-pressure separator vessels. A516 Gr.60 is the workhorse for ASME VIII Division 1 vessels under 650°F design temperature. Shell-to-head circumferential seams and nozzle reinforcement pads are the primary weld details. Plate thicknesses for API 650 tank shells typically range from 5/16" at the top course to 1" or more at the bottom course depending on tank diameter and liquid specific gravity. Vertical seam welds carry the full hydrostatic head and require complete joint penetration with radiographic examination. Tank diameters range from 15 feet for small day tanks to over 300 feet for crude oil terminal storage. Shop-welded vessel shells are rolled from flat plate with longitudinal seams welded first, then circumferential seams joining shell courses together on the vessel rotator.

Why Preheat Matters at up to 3/4"

Thin material sheds heat quickly, allowing hydrogen to escape the HAZ readily — lowest preheat tier in Table 5.11.

Other Steels with GMAW at up to 3/4"

SteelCategoryPreheat
A516 Gr.65/70B32°F (0°C)
A633 Gr.EC50°F (10°C)
A709 HPS70WC50°F (10°C)
A710 Gr.AC50°F (10°C)

Application context

A516 Grade 55/60 plate at or below 3/4 inch with GMAW shows up in pressure-vessel-adjacent structural fabrication — vessel skid frames, support saddles, walkway brackets on tank assemblies, and structural connections to PV-grade plate where the welding falls under D1.1 (structural) rather than ASME Section IX (pressure boundary). The gas-shielded process suits shop conditions where stable gas integrity is achievable.

Pre-weld notes

Same scope question as every A516 weld: D1.1 prequalified WPS under Clause 5 covers structural welding only. Welds that form part of the pressure boundary fall under ASME Section IX. For D1.1 structural work at this thickness, the 32°F preheat floor is satisfied by ordinary shop ambient. The binding constraints are shielding-gas integrity per Table 5.10 (Ar/CO₂ 75–90 / 10–25, Ar/O₂ 95–98 / 2–5, or 100% CO₂ for ER70S-X / E70C-X electrodes per A5.18/A5.18M) and matching-strength filler per Table 5.7 Group I.

What a CWI verifies

A CWI on A516 Gr.55/60 GMAW thin-section structural work first verifies the WPS scope by reading the WPS title block and the contract documents — D1.1 structural vs ASME Section IX pressure-boundary. For D1.1 structural work, the inspection covers shielding gas conformance to Table 5.10 with flow-rate sampled at the torch, the matching-strength filler classification against Table 5.7 Group I, and the prequalified GMAW limits in Table 5.3. Pressure-boundary welds get bumped to a separate ASME-qualified procedure.

Primary sources

What is the minimum preheat for A516 Gr.55/60 with GMAW at up to 3/4"?
When welding A516 Gr.55/60 at up to 3/4" using GMAW, the minimum preheat temperature is 32°F (0°C) per AWS D1.1:2025 Table 5.11, Category B. GMAW places this combination in Category B. This is also the minimum interpass temperature — the joint must not cool below 32°F between passes.
What Table 5.11 category applies to A516 Gr.55/60 with GMAW?
When using GMAW on A516 Gr.55/60, the combination falls under Category B in AWS D1.1:2025 Table 5.11. Low-hydrogen SMAW, SAW, GMAW, or FCAW process. At up to 3/4" thickness, Category B with GMAW requires a minimum preheat of 32°F (0°C).
Does A516 Gr.55/60 need preheat at up to 3/4"?
When welding with GMAW at up to 3/4" thickness, the minimum preheat is 32°F (0°C) — effectively ambient temperature above freezing. GMAW with this steel requires no active preheating unless the base metal is below 32°F. Per Table 5.11 footnote (a), if working below freezing, preheat to at least 70°F (20°C) and maintain during welding.
Is preheat needed for plate under 3/4 inch?
For most structural steels at this thickness, the Table 5.11 minimum is 32°F (0°C) — ambient temperature above freezing. The thin cross-section allows hydrogen to diffuse out readily. Per footnote (a), if working below freezing, preheat to at least 70°F (20°C) and maintain during welding.
Which D1.1 edition is this preheat from?
AWS D1.1:2025. Table 5.11 places A516 Grade 55/60 with GMAW at up to 3/4 in [20 mm] inclusive in Category B with a 32°F (0°C) minimum preheat. When base metal temperature is below 32°F [0°C], preheat to minimum 70°F [20°C] and maintain during welding (Table 5.11 footnote a).
Does my joint qualify for prequalified WPS at this preheat?
If the joint is structural — not pressure-boundary — and matches a prequalified detail in D1.1:2025 Clause 5, the shielding gas conforms to Table 5.10, the matching-strength filler is from Table 5.7 Group I, and the WPS holds the 32°F minimum, the procedure is prequalified by Clause 5. Pressure-boundary welds fall outside D1.1 and must be qualified under ASME Section IX.
Can I use the same WPS for D1.1 structural and ASME pressure-boundary work on the same vessel skid?
No — the two codes have separate qualification paths and separate essential-variable lists. A single WPS qualified under ASME Section IX may also satisfy D1.1 prequalified requirements (D1.1 Clause 5 gates), but the converse is not generally true: a D1.1 prequalified WPS is not automatically valid for ASME pressure-boundary welds. The ASME qualification has its own essential variables, including supplementary essentials when notch toughness is in scope, that D1.1 Clause 5 does not address.

D1.1:2025 reference data. Not affiliated with AWS.