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

A709 HPS50W Preheat for FCAW — up to 3/4"

Per AWS D1.1:2025 Table 5.11, the minimum preheat for A709 HPS50W welded with FCAW 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

FCAW (Flux Cored Arc Welding)

FCAW uses tubular flux-cored wire, available gas-shielded (E71T-1) or self-shielded (E71T-8) for field work. Category B in Table 5.11.

E71T-1 gas-shielded wire is the workhorse for structural steel erection fillet welds. Self-shielded E71T-8 is preferred for field welding where wind makes gas shielding unreliable. Deposition rates run 8-12 lb/hr depending on wire diameter and position. The flux core provides a protective slag that supports the puddle in vertical-up and overhead positions.

FCAW Tips for Common Structural Steels

For A709 HPS50W high-performance weathering bridge steel, FCAW provides all-position field capability for girder splice welds during bridge erection. Enhanced weldability (0.11% max carbon, controlled sulfur at 0.006% max) makes FCAW effective — lower CE-IIW means reduced sensitivity to hydrogen cracking compared to conventional A588. Use weathering-compatible wire on exposed joints.

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

Filler Metal for FCAW

Gas-shielded: E71T-1C (AWS A5.20, classified with 100% CO2) or E71T-1M (classified with 75 to 80 percent argon, balance CO2). The C and M designators identify the shielding gas used for classification; the actual gas must follow the electrode manufacturer and the qualified WPS. Self-shielded: E71T-8 (no external gas, field-ready). Diameter: 0.045" standard, 1/16" for high-deposition. Stick-out: 3/4" to 1-1/4" (longer than GMAW due to resistive heating of flux core).

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

A709 HPS50W

ASTM A709 HPS50W is a high-performance weathering steel (50 ksi yield, 70 ksi minimum tensile) developed specifically for unpainted bridge construction. The HPS designation indicates enhanced weldability through lower carbon (0.11% max), controlled sulfur (0.006% max with calcium treatment), and copper-nickel-chromium alloying for atmospheric corrosion resistance. These chemistry controls reduce the CE-IIW to approximately 0.38-0.42, well below conventional weathering steels. It falls under Category B in Table 5.11. The FHWA-funded development program that created HPS grades (starting in the 1990s) aimed to eliminate the weldability problems, lamellar tearing, and inconsistent toughness that plagued earlier weathering steel bridge designs. HPS50W has largely replaced conventional A709 Gr.50W in new unpainted bridge designs.

Why This Preheat for A709 HPS50W with FCAW

High-performance weathering bridge steel with enhanced weldability at 50 ksi. This steel is prequalified only with low-hydrogen processes under Table 5.11. With FCAW, flux-cored wire in FCAW provides a combination of deoxidizers and low-moisture flux formulations that control hydrogen. The 32°F minimum preheat balances the steel’s strength level and carbon equivalent against the hydrogen control provided by FCAW. Non-low-hydrogen SMAW is not an option for this grade under D1.1 prequalified WPS.

Typical Applications for A709 HPS50W

Deployed in unpainted bridge plate girders across humid or coastal environments, curved girders on interchange ramps, signature pedestrian bridges in architectural applications, and rural highway bridges where lifecycle paint costs exceed the HPS premium. The enhanced weldability of HPS50W reduces fabrication risk at flange splices and allows wider groove angles with reduced risk of lamellar tearing in thick flange plates through controlled sulfur and inclusion shape control via calcium treatment. The chemistry control (0.11% max carbon, controlled sulfur at 0.006% max) differentiates HPS from conventional weathering grades. Material cost premium over standard A709 Gr.50W is typically 15-25% per ton but eliminates lifetime repainting cycles estimated at $15-25 per square foot every 20-25 years. The lower CE-IIW of HPS50W compared to conventional weathering grades means it welds with less preheat sensitivity, reducing reject rates on thick flange CJP splices during cold-weather bridge fabrication.

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 FCAW at up to 3/4"

SteelCategoryPreheat
A913 Gr.50/60/65B32°F (0°C)
A709 HPS70WC50°F (10°C)
A710 Gr.AC50°F (10°C)
A913 Gr.70C50°F (10°C)

Application context

A709 HPS50W at or below 3/4 inch with FCAW is the field-erection high-performance bridge combination — outdoor connection-plate fillet runs and splice-plate erection welds on modern bridges where AASHTO LRFD specifies HPS members for fracture-critical applications and the higher deposition rate of cored wire suits the field schedule.

Pre-weld notes

Three constraints layer at this combination, none of them the 32°F preheat floor itself. First, FCAW classification per Table 5.4 — slightly different electrode-diameter and current limits than GMAW. Second, for exposed bare HPS50W applications the electrode must conform to Table 5.9 per Clause 5.6.3 (B2L, K2, Ni1, Ni2, Ni3, Ni4, or WX analysis under A5.29/A5.29M for FCAW). Third, bridge-grade rejection criteria for slag inclusions are stricter than general structural — incomplete inter-pass slag removal is the recurring defect lever on HPS bridge work, and bridge owners frequently specify CVN testing that elevates the WPS to qualified-rather-than-prequalified.

What a CWI verifies

A CWI on A709 HPS50W FCAW thin-section work verifies (1) the bridge-grade material certification against the WPS-cited steel, (2) electrode classification matches Table 5.9 for exposed bare applications and any project-specific CVN deposit requirements, (3) the FCAW classification on the spool against the WPS-cited variant (self-shielded vs gas-shielded is an essential variable per Table 6.6), and (4) inter-pass slag removal across the joint sequence. The 32°F preheat floor rarely binds at this thickness; consumable conformance and slag discipline dominate.

Primary sources

What is the minimum preheat for A709 HPS50W with FCAW at up to 3/4"?
When welding A709 HPS50W at up to 3/4" using FCAW, the minimum preheat temperature is 32°F (0°C) per AWS D1.1:2025 Table 5.11, Category B. FCAW 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 A709 HPS50W with FCAW?
When using FCAW on A709 HPS50W, 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 FCAW requires a minimum preheat of 32°F (0°C).
Does A709 HPS50W need preheat at up to 3/4"?
When welding with FCAW at up to 3/4" thickness, the minimum preheat is 32°F (0°C) — effectively ambient temperature above freezing. FCAW 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 A709 HPS50W with FCAW 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 matches a prequalified detail in D1.1:2025 Clause 5, the FCAW classification meets prequalified requirements per Table 5.4, the electrode meets Clause 5.6.3 weathering-steel match where the application is bare and exposed, and the WPS holds the 32°F minimum, the procedure is prequalified by Clause 5. Bridge owners commonly specify CVN testing on HPS members that moves the WPS to qualified rather than prequalified.
Which FCAW classifications are acceptable on bare HPS50W for atmospheric-corrosion match?
Per Table 5.9, FCAW electrodes for exposed bare weathering applications must deposit weld metal with a B2L, K2, Ni1, Ni2, Ni3, Ni4, or WX analysis per A5.29/A5.29M, in addition to meeting the matching-strength requirements of Table 5.7. Bridge owner CVN specifications may further narrow the acceptable list to electrodes meeting specific notch-toughness deposit chemistries.

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