AWS D1.1:2025 · 表5.11 · カテゴリーB

A537 Cl.1/2のSMAW (low-hydrogen)用予熱 — up to 3/4"

A537 Cl.1/2をSMAW (low-hydrogen)で板厚up to 3/4"で溶接する場合の最低予熱およびパス間温度。AWS D1.1:2025 表5.11に基づく。

AWS D1.1:2025 表5.11に基づく — すべての値は条項に追跡可能。

最低予熱・パス間温度
32°F / 0°C
カテゴリーB
低水素SMAW、SAW、GMAW、またはFCAWプロセス
AWS D1.1:2025 表5.11、§5.7
母材温度が32°F [0°C]未満の場合は、最低70°F [20°C]まで予熱し、溶接中も維持すること(表5.11 脚注a)。
参考ツール。プロジェクト適用版およびエンジニア承認済みWPSで確認すること。

SMAW (Low-Hydrogen)

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

On pressure vessel plate, E7018 is the standard manual electrode for nozzle welds, manhole reinforcements, and repair welding. ASME Section IX procedure qualifications typically require all-weld-metal tensile and guided bend tests. Rod moisture control is critical in vessel fabrication because vessel codes impose stricter hydrogen limits than structural codes.

A537 Cl.1/2

ASTM A537 Class 1 and Class 2 are heat-treated carbon-manganese-silicon steel plates for pressure vessels. Class 1 is normalized (50 ksi yield, 70-90 ksi tensile up to 2.5"); Class 2 is quenched and tempered for higher strength (60 ksi yield, 80-100 ksi tensile up to 2.5"). Both fall under Category B in Table 5.11, requiring low-hydrogen processes for their improved strength and toughness properties. Carbon content is limited to 0.24% max, but the manganese range (0.70-1.35%) and silicon (0.15-0.50%) contribute to a CE-IIW of approximately 0.40-0.46. A537 Class 2 Q&T plates require careful attention to maximum interpass temperature to avoid re-austenitizing the heat-affected zone and degrading the tempered microstructure achieved during mill heat treatment.

A537 Cl.1/2とSMAW-LHでこの予熱が必要な理由

Heat-treated pressure vessel plate with normalized and quenched-tempered options. This steel is prequalified only with low-hydrogen processes under Table 5.11, which is why it appears in Category B but not Category A. The 32°F minimum preheat with SMAW-LH balances the steel's strength level and carbon equivalent against the controlled hydrogen input from the consumable. Non-low-hydrogen SMAW is not an option for this grade under D1.1 prequalified WPS.

A537 Cl.1/2の代表的な適用例

Applied in cryogenic storage tanks for LNG and liquid nitrogen, elevated-temperature pressure vessels in chemical processing, heavy-wall reactor components, and nuclear containment liner plates. A537 Class 2 quenched-and-tempered plate serves in vessels requiring both high strength and superior impact toughness at sub-zero testing temperatures. Shell course welds and head-to-shell junctions are the primary high-restraint joints where preheat compliance is most critical. Impact testing temperatures for cryogenic service can be as low as -150°F, requiring CVN testing at the design minimum temperature plus a safety margin. The quenched-and-tempered condition of Class 2 means interpass temperature maximums (typically 400-450°F per the qualified WPS) must also be controlled to avoid re-austenitization of the heat-affected zone. Vessel head pressing and spinning from flat plate introduces residual stress concentrations at the knuckle radius that influence the welding sequence for head-to-shell circumferential seams.

up to 3/4"で予熱が重要な理由

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

SMAW (low-hydrogen)とup to 3/4"における他の鋼材

鋼材カテゴリー予熱
A36B32°F (0°C)
A633 Gr.EC50°F (10°C)
A709 HPS70WC50°F (10°C)
A710 Gr.AC50°F (10°C)

別の組み合わせを試す

インタラクティブ予熱計算機を使用して、D1.1:2025 表5.11のあらゆる鋼材・プロセス・板厚の組み合わせを検索できます。

up to 3/4"でSMAW-LHを使用したA537 Cl.1/2の最小予熱温度は?
A537 Cl.1/2をSMAW (low-hydrogen)でup to 3/4"の板厚で溶接する場合、最低予熱温度はAWS D1.1:2025 表5.11、カテゴリーBに基づき32°F(0°C)です。これはパス間温度の最低値でもあり、パス間でも継手が32°F以下に冷却されてはなりません。
A537 Cl.1/2とSMAW-LHに適用される表5.11のカテゴリーは?
SMAW (low-hydrogen)で溶接されたA537 Cl.1/2は、AWS D1.1:2025 表5.11のカテゴリーBに該当します。低水素SMAW、SAW、GMAW、またはFCAWプロセス。up to 3/4"板厚では、このカテゴリーは最低予熱32°F(0°C)を要求します。
up to 3/4"でA537 Cl.1/2に予熱は必要?
SMAW (low-hydrogen)でのup to 3/4"板厚では、最低予熱は32°F(0°C)— 実質的に氷点以上の周囲温度です。母材が32°F未満でない限り、積極的な予熱は不要です。表5.11 脚注(a)により、氷点下で作業する場合は少なくとも70°F(20°C)まで予熱し、溶接中も維持すること。

D1.1:2025参考データ。AWSとの提携なし。