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

A1066 Gr.60/65 Preheat for FCAW — over 2-1/2"

Per AWS D1.1:2025 Table 5.11, the minimum preheat for A1066 Gr.60/65 welded with FCAW at over 2-1/2" is 300°F (150°C), Category C. 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
300°F / 150°C
Category C Low-hydrogen SMAW, SAW, GMAW, or FCAW process (higher-strength steels)
AWS D1.1:2025 Table 5.11, §5.7
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.

High-strength FCAW wire follows the steel's Table 5.6 base-metal group, not its Table 5.11 preheat category: Table 5.7 marks AWS A5.20 carbon-steel wire N/A for Groups III, IV and V and lists AWS A5.29 low-alloy classifications such as E8XTX-K2X for Group III and E9XTX-K2X for Group IV. The flux system in these wires is formulated for low diffusible hydrogen, often meeting H8 supplementary limits when tested per AWS A4.3. Wire storage requires climate-controlled conditions similar to SMAW electrodes to prevent moisture absorption.

FCAW Tips for High-Strength and TMCP Steels

For A1066 Grades 60/65 HSLA plate (60–65 ksi yield, Category C or H8 Category E), FCAW with H8-certified E81T1-Ni1 or E81T1-K2 handles multi-pass groove welds on offshore transition pieces and bridge flange plates up to 4" thick. H8 Category E reduces preheat to 50°F up to 1" and 120°F above — saving 45–90 minutes per joint on thick plate compared to full Category C.

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.

A1066 Gr.60/65

ASTM A1066 Grades 60 (60 ksi yield, 75 ksi tensile) and 65 (65 ksi yield, 80 ksi tensile) are higher-strength low-alloy plates used in bridges and structural applications requiring both strength and toughness at sub-zero temperatures. They fall under Category C for standard low-hydrogen processes, reflecting their higher CE-IIW of approximately 0.44-0.50, and qualify for Category E reduced preheat (50°F up to 1”, 120°F above 1”) with H8-certified consumables. The dual-path preheat option (Category C standard vs. Category E with H8) gives fabricators economic flexibility — choosing H8 consumables adds a small material premium but can save significant preheating time and fuel cost on thick-section joints. Both grades are produced in plate thicknesses up to 6" and require ASTM supplementary toughness requirements for bridge or offshore service.

Why This Preheat for A1066 Gr.60/65 with FCAW

Higher-strength 60/65 ksi HSLA plate for bridges with H8 preheat option. The higher strength level of this steel places it in Category C of Table 5.11, which carries elevated preheat requirements compared to Category B grades. At 300°F minimum with FCAW, flux-cored wire in FCAW provides a combination of deoxidizers and low-moisture flux formulations that control hydrogen, but the preheat must still ensure the cooling rate stays slow enough to prevent hydrogen-induced cracking in this higher-hardenability material.

Typical Applications for A1066 Gr.60/65

Specified for long-span bridge plate girder flanges, cable-stayed deck plates, offshore wind monopile transition pieces, heavy-wall tubular joints in jacket structures, and demanding structural applications requiring both 60+ ksi yield and sub-zero toughness. The H8 preheat reduction to Category E (50°F up to 1", 120°F above 1") makes these grades economically competitive for heavy plate fabrication where heating thick sections adds hours to the welding cycle. Plate thicknesses in offshore monopile transition pieces can reach 4" or more, with individual circumferential seams requiring sustained preheating over several hours. The combination of high strength, toughness, and H8 preheat eligibility positions A1066 Gr.60/65 as a premium alternative to conventional plate grades in demanding offshore environments. Filler metal selection must achieve tensile matching (80+ ksi) while meeting CVN requirements at the service temperature — typically -4°F to -40°F for North Sea and US Gulf offshore installations.

Why Preheat Matters at over 2-1/2"

The heaviest sections demand the highest preheat in Table 5.11. Multi-pass sequences require maintaining interpass temperature throughout.

Category C Preheat for A1066 Gr.60/65

Category C in Table 5.11 applies to higher-strength steels where the combination of hardenability and residual stress requires elevated preheat. For A1066 Gr.60/65 at over 2-1/2", the 300°F minimum preheat slows the weld cooling rate to prevent formation of crack-susceptible martensite in the heat-affected zone. Maintaining interpass temperature at or above this minimum is especially critical for multi-pass welds on restrained joints.

Other Steels with FCAW at over 2-1/2"

SteelCategoryPreheat
A36B225°F (110°C)
A53 Gr.BB225°F (110°C)
A106 Gr.BB225°F (110°C)
A1066 Gr.70C300°F (150°C)
What is the minimum preheat for A1066 Gr.60/65 with FCAW at over 2-1/2"?
When welding A1066 Gr.60/65 at over 2-1/2" using FCAW, the minimum preheat temperature is 300°F (150°C) per AWS D1.1:2025 Table 5.11, Category C. FCAW places this combination in Category C. This is also the minimum interpass temperature — the joint must not cool below 300°F between passes.
What Table 5.11 category applies to A1066 Gr.60/65 with FCAW?
When using FCAW on A1066 Gr.60/65, the combination falls under Category C in AWS D1.1:2025 Table 5.11. Low-hydrogen SMAW, SAW, GMAW, or FCAW process (higher-strength steels). At over 2-1/2" thickness, Category C with FCAW requires a minimum preheat of 300°F (150°C).
Why is preheat 300°F for A1066 Gr.60/65 at over 2-1/2"?
The 300°F preheat for A1066 Gr.60/65 at over 2-1/2" when using FCAW reflects the combination of the steel's hardenability and the increased restraint at this thickness. FCAW delivers controlled hydrogen levels, but at this thickness the preheat must slow the cooling rate in the heat-affected zone, giving diffusible hydrogen more time to escape before the steel transforms to a crack-susceptible microstructure.
How do I maintain preheat on very thick plate?
For material over 2-1/2”, preheat is typically applied with oxy-fuel torches or electric resistance blankets and monitored with contact thermometers or temp-sticks. The entire weld zone must reach the minimum temperature before welding begins, and interpass temperature is checked before each new pass. Insulating blankets help retain heat during pauses in multi-pass welding.

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