AWS D1.1:2025 · Tabela 5.11 · Categoria B

Pré-aquecimento de A1066 Gr.50 para SMAW (low-hydrogen) — 3/4" to 1-1/2"

Temperatura mínima de pré-aquecimento e interpasse para A1066 Gr.50 soldado com SMAW (low-hydrogen) em espessura 3/4" to 1-1/2", conforme AWS D1.1:2025 Tabela 5.11.

Baseado na AWS D1.1:2025 Tabela 5.11 — cada valor rastreado à cláusula.

Temperatura Mínima de Pré-aquecimento e Interpasse
50°F / 10°C
Categoria B
Processo SMAW, SAW, GMAW ou FCAW de baixo hidrogênio
AWS D1.1:2025 Tabela 5.11, §5.7
Ferramenta de referência. Verificar contra a edição aplicável ao projeto e EPS aprovada pelo Engenheiro.

SMAW (Low-Hydrogen)

Low-hydrogen SMAW (E7018/E7016) uses basic-coated electrodes requiring rod oven storage, assigned to Category B in Table 5.11.

For high-strength shapes and plate, E7018 provides adequate tensile match for steels up to Category C. E8018-C3 or E9018-M may be required for higher-strength steels to meet weld metal strength matching requirements. Bead sequencing on thick TMCP flanges should follow qualified WPS parameters precisely to avoid overheating the refined microstructure.

SMAW-LH Tips for High-Strength and TMCP Steels

For A1066 Grade 50 HSLA plate (50 ksi yield, Category B or H8 Category E), E7018-H8 certified electrodes qualify for Category E preheat (50°F up to 1", 120°F above) — the H8 marking must appear on the rod package, not just the manufacturer literature. Standard E7018 (non-H8) falls under full Category B. SMAW-LH handles positional repair welds and connection details.

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

Filler Metal for SMAW-LH

Electrode: E7018 (AWS A5.1) — the universal low-hydrogen structural rod. Diameter: 1/8" (general/out-of-position), 5/32" (production), 3/16" (heavy plate flat only). Storage: 250°F rod oven minimum per D1.1 §7.3.2.1. Exposure limit: 4 hours out of oven per Table 7.1, then re-bake at 500-800°F for minimum 2 hours per §7.3.2.4 (A5.1 classification).

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

A1066 Gr.50

ASTM A1066 Grade 50 is a high-strength low-alloy plate (50 ksi yield, 65 ksi minimum tensile) with options for enhanced toughness and weldability through controlled chemistry and supplementary requirements. It falls under Category B for standard low-hydrogen processes and qualifies for the reduced Category E preheat (50°F up to 1”, 120°F above 1”) with H8-certified consumables. The specification includes S-series supplementary requirements for impact testing at various temperatures, allowing engineers to select the toughness grade appropriate for their service environment. Carbon content is limited to 0.20% max with CE-IIW controlled to approximately 0.38-0.44. A1066 Gr.50 competes with A572 Gr.50 plate in applications where the H8 preheat reduction provides meaningful fabrication cost savings on thick-section joints.

Por que Este Pré-aquecimento para A1066 Gr.50 com SMAW-LH

HSLA plate with H8-eligible Category E reduced preheat option at 50 ksi. This steel is prequalified only with low-hydrogen processes under Table 5.11. With SMAW-LH, E7018 low-hydrogen electrodes produce typically 4-8 mL/100g diffusible hydrogen under proper rod oven conditions. The 50°F minimum preheat balances the steel’s strength level and carbon equivalent against the hydrogen control provided by SMAW-LH. Non-low-hydrogen SMAW is not an option for this grade under D1.1 prequalified WPS.

Aplicações Típicas de A1066 Gr.50

Applied in bridge plate girder webs where enhanced toughness is required beyond A709 Gr.50, cold-region building plate elements, heavy equipment support platforms, wind turbine tower flanges, and modular building frames. A1066 Gr.50 with H8 consumables qualifies for Category E reduced preheat (50°F up to 1", 120°F above 1"), offering a cost advantage over standard Category B procedures on thick plate where preheat time is a significant production bottleneck. Plate procurement requires specifying the supplementary toughness requirements (S-series) appropriate for the service temperature — S30 for -30°F, S50 for -50°F testing. The H8 preheat reduction becomes increasingly valuable as plate thickness increases, saving 30-60 minutes of preheating time per joint on material over 1 inch. For a bridge fabricator welding 200+ stiffener fillet welds per girder, the cumulative preheat savings from H8 consumables can reduce shop cycle time by 15-20% compared to full Category B procedures.

Por que o Pré-aquecimento Importa em 3/4" to 1-1/2"

Preheat climbs at this range as thicker material slows heat dissipation, trapping hydrogen at crack-susceptible grain boundaries.

Outros Aços com SMAW (low-hydrogen) em 3/4" to 1-1/2"

AçoCategoriaPré-aquecimento
A36B50°F (10°C)
A633 Gr.EC150°F (65°C)
A709 HPS70WC150°F (65°C)
A710 Gr.AC150°F (65°C)

A1066 Gr.50 com SMAW (low-hydrogen)

Experimente Diferentes Combinações

Use a calculadora interativa de pré-aquecimento para consultar qualquer combinação de aço, processo e espessura da D1.1:2025 Tabela 5.11.

Qual é o pré-aquecimento mínimo para A1066 Gr.50 com SMAW-LH em 3/4" to 1-1/2"?
Para A1066 Gr.50 soldado com SMAW (low-hydrogen) em espessura 3/4" to 1-1/2", a temperatura mínima de pré-aquecimento é 50°F (10°C) conforme AWS D1.1:2025 Tabela 5.11, Categoria B. Esta é também a temperatura mínima de interpasse.
Qual categoria da Tabela 5.11 se aplica a A1066 Gr.50 com SMAW-LH?
A1066 Gr.50 soldado com SMAW (low-hydrogen) se enquadra na Categoria B da AWS D1.1:2025 Tabela 5.11. Processo SMAW, SAW, GMAW ou FCAW de baixo hidrogênio. Em espessura 3/4" to 1-1/2", esta categoria requer pré-aquecimento mínimo de 50°F (10°C).

Dados de referência D1.1:2025. Sem afiliação com AWS.