AASHTO/AWS D1.5:2025 · Tabela 12.6/12.7 · Fratura Crítica · H8

Pré-aquecimento M270M Gr.345W — H8, Low HI, > 60 mm: 375°F

Requisito de pré-aquecimento de fratura crítica para M270M Gr.345W / M270 Gr.50W em espessura > 60 mm (> 2½ in) com designação de hidrogênio H8, conforme AASHTO/AWS D1.5:2025.

Baseado na AWS D1.5:2025 — cada valor rastreado à cláusula.

Pré-aquecimento e Interpasse Mínimo de Fratura Crítica
375°F / 190°C
Hidrogênio H8 · aporte de calor 1.2–2.0 kJ/mm · espessura > 60 mm (> 2½ in)
AASHTO/AWS D1.5M/D1.5:2025 Tabela 12.6/12.7
Designação H8: o consumível deposita ≤ 8 mL/100g de hidrogênio difusível conforme AWS A4.3. Menor hidrogênio = menor pré-aquecimento.
Ferramenta de referência. Verificar contra a edição aplicável ao projeto e EPS aprovada pelo Engenheiro.

M270M Gr.345W / M270 Gr.50W

AASHTO M270M Gr.345W (M270 Gr.50W) is a weathering bridge steel with 345 MPa (50 ksi) yield that forms a protective oxide patina for unpainted bridge service. The copper-chromium-nickel alloying provides atmospheric corrosion resistance, eliminating lifetime repainting costs estimated at $15–25 per square foot per cycle. Weld filler must match the weathering composition (E8018-W2 or equivalent) for exposed joints. NFC preheat per Table 6.3 Group 1; FC per Tables 12.6/12.7 which carry higher preheat than the non-weathering grades.

Entendendo o Pré-aquecimento FC para M270M Gr.345W / M270 Gr.50W

Weathering 345 MPa (50 ksi) bridge steel for unpainted service. Under D1.5 fracture-critical requirements (Clause 12), the combination of H8 hydrogen designation and this heat input band requires 375°F minimum preheat at > 60 mm (> 2½ in). Lower hydrogen levels (H4 < H8 < H16) allow lower preheat because less hydrogen enters the weld deposit. Similarly, higher heat input reduces preheat requirements because slower cooling rates give hydrogen more time to diffuse out.

Onde M270M Gr.345W / M270 Gr.50W é Usado

Deployed in unpainted bridge plate girders across humid, coastal, and high-maintenance-cost environments. The weathering patina eliminates lifetime repainting cycles estimated at $15–25/sq ft per cycle. Weld filler must match the weathering composition (E8018-W2 or ER80S-G-W) for exposed joints to ensure the weld face develops the same protective oxide as the base metal. Conventional Gr.345W is being replaced by HPS345W in new designs due to superior weldability.

Controle de Hidrogênio H8 para M270M Gr.345W / M270 Gr.50W

Weathering Gr.345W (50W) with H8 represents the standard practice for most unpainted bridge fabrication. Gas-shielded FCAW wires commonly achieve H8 designation, making this the natural hydrogen level for high-productivity shop welding on weathering grade plate girders.

Por que o Pré-aquecimento Importa em > 60 mm (> 2½ in)

Material over 65 mm (2-1/2 in) includes the heaviest bridge girder flanges and box-section walls. Table 6.3 requires 110°C (225°F) for both groups at this thickness. Extended preheat soak time is necessary to achieve uniform through-thickness temperature. FC preheat for the heaviest sections reaches 180–200°C (350–400°F) at the H16 hydrogen level.

M270M Gr.345W / M270 Gr.50W em > 60 mm (> 2½ in)

Gr.345W (50W) above 65 mm is increasingly rare as HPS345W replaces it in new designs. The conventional weathering composition at this thickness has elevated lamellar tearing risk from sulfide inclusion elongation — the problem that drove development of the HPS grades with calcium-treated, inclusion-shape-controlled steel. Existing bridges with thick 345W flanges require careful Z-direction tension checks during rehabilitation welding.

Outros Aços de Ponte em H8 1.2–2.0 kJ/mm · > 60 mm (> 2½ in)

AçoTabelaPré-aquecimento
M270M Gr.250 / M270 Gr.36A325°F (160°C)
M270M Gr.345 / M270 Gr.50A325°F (160°C)
M270M Gr.345S / M270 Gr.50SA325°F (160°C)
M270M HPS345W / M270 HPS50WB375°F (190°C)

Experimente Diferentes Combinações

Use a Calculadora de Pré-aquecimento D1.5 para Pontes para consultar qualquer aço AASHTO M270, nível de hidrogênio e combinação de aporte de calor. Veja também a Calculadora de Pré-aquecimento D1.1 para aço estrutural.

Qual é o pré-aquecimento FC para M270M Gr.345W / M270 Gr.50W com H8 em > 60 mm (> 2½ in)?
Para fratura crítica M270M Gr.345W / M270 Gr.50W soldado com consumíveis designados H8 em espessura > 60 mm (> 2½ in) e aporte de calor 1.2–2.0 kJ/mm, o pré-aquecimento mínimo é 375°F (190°C) conforme D1.5 Tabela 12.6/12.7.
Qual é a diferença entre pré-aquecimento FC e NFC para M270M Gr.345W / M270 Gr.50W?
O pré-aquecimento não fratura crítica (Tabela 6.3) é uma consulta simples baseada em espessura. O de fratura crítica (Tabelas 12.4–12.8) adiciona nível de hidrogênio e aporte de calor como variáveis.
Como o aporte de calor afeta o pré-aquecimento FC de M270M Gr.345W / M270 Gr.50W?
Maior aporte de calor significa taxas de resfriamento mais lentas, dando mais tempo ao hidrogênio para se difundir para fora da zona de solda. Em 1.2–2.0 kJ/mm, o pré-aquecimento de 375°F equilibra o nível de hidrogênio e a taxa de resfriamento.
Why is preheat the same for both groups above 65 mm?
Table 6.3 converges at 110°C (225°F) for both groups at this thickness because the dominant factor becomes hydrogen diffusion distance through the thick section rather than the steel’s hardenability. Even Group 1 steels need substantial preheat at 65+ mm to keep cooling rates slow enough for safe hydrogen escape.

Dados de referência D1.5:2025. Sem afiliação com AWS ou AASHTO.