AWS D1.1:2025 · Tableau 5.11 · Catégorie B

Préchauffage de A537 Cl.1/2 pour SAW — up to 3/4"

Température minimale de préchauffage et entre passes pour A537 Cl.1/2 soudé avec SAW à up to 3/4" d'épaisseur, selon AWS D1.1:2025 Tableau 5.11.

Basé sur AWS D1.1:2025 Tableau 5.11 — chaque valeur tracée à l'article.

Température Minimale de Préchauffage et Entre Passes
32°F / 0°C
Catégorie B Procédé SMAW, SAW, GMAW ou FCAW bas hydrogène
AWS D1.1:2025 Tableau 5.11, §5.7
Lorsque la température du métal de base est inférieure à 32°F [0°C], préchauffer à minimum 70°F [20°C] et maintenir pendant le soudage (Tableau 5.11 note a).
Outil de référence. Vérifier contre l'édition applicable au projet et DMOS approuvé par l'Ingénieur.

Have a preheat question? Ask Flux

SAW (Submerged Arc Welding)

SAW submerges the arc beneath granular flux for highest deposition rates, flat/horizontal only. Category B in Table 5.11.

For pressure vessel longitudinal and circumferential seams, SAW is the primary process. Tandem or multi-wire configurations on specialized manipulators achieve consistent quality over seam lengths exceeding 40 feet. Flux basicity index per ASME Section II Part C determines the mechanical properties of the weld deposit.

SAW Tips for Pressure Vessel and Low-Temperature Steels

For A537 Class 1/2 heat-treated pressure vessel plate (50–60 ksi yield), SAW F7A2-EM12K handles vessel shell seams with consistent heat input and weld profile. Class 2 Q&T condition requires interpass temperature monitoring — maintain below 400°F to preserve the tempered microstructure. Neutral flux is essential on multi-pass seams; active flux can alter weld metal composition across successive layers by transferring deoxidizing elements.

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

Why SAW for A537 Cl.1/2 at up to 3/4"

Why SAW for A537 Cl.1/2 at up to 3/4"? SAW delivers 15-40 lb/hr deposition — the highest deposition rate among available processes. Position capability: flat and horizontal only. Suitability: shop only.

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.

Pourquoi ce Préchauffage pour A537 Cl.1/2 avec SAW

Heat-treated pressure vessel plate with normalized and quenched-tempered options. This steel is prequalified only with low-hydrogen processes under Table 5.11. With SAW, the submerged arc process with granular flux produces controlled hydrogen levels, with flux condition being the primary variable. The 32°F minimum preheat balances the steel’s strength level and carbon equivalent against the hydrogen control provided by SAW. Non-low-hydrogen SMAW is not an option for this grade under D1.1 prequalified WPS.

Applications Typiques de A537 Cl.1/2

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.

Pourquoi le Préchauffage est Important à up to 3/4"

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

Autres Aciers avec SAW à up to 3/4"

AcierCatégoriePréchauffage
A36B32°F (0°C)
A633 Gr.EC50°F (10°C)
A709 HPS70WC50°F (10°C)
A710 Gr.AC50°F (10°C)

Essayez Différentes Combinaisons

Utilisez le calculateur interactif de préchauffage pour consulter toute combinaison acier, procédé et épaisseur du D1.1:2025 Tableau 5.11.

Quel est le préchauffage minimum pour A537 Cl.1/2 avec SAW à up to 3/4" ?
Pour A537 Cl.1/2 soudé avec SAW à up to 3/4" d'épaisseur, la température minimale de préchauffage est 32°F (0°C) selon AWS D1.1:2025 Tableau 5.11, Catégorie B. C'est aussi la température minimale entre passes.
Quelle catégorie du Tableau 5.11 s'applique à A537 Cl.1/2 avec SAW ?
A537 Cl.1/2 soudé avec SAW relève de la Catégorie B dans AWS D1.1:2025 Tableau 5.11. Procédé SMAW, SAW, GMAW ou FCAW bas hydrogène. À up to 3/4" d'épaisseur, cette catégorie exige un préchauffage minimum de 32°F (0°C).
A537 Cl.1/2 nécessite-t-il un préchauffage à up to 3/4" ?
À up to 3/4" d'épaisseur avec SAW, le préchauffage minimum est 32°F (0°C) — effectivement la température ambiante au-dessus du point de congélation. Aucun préchauffage actif n'est requis sauf si le métal de base est en dessous de 32°F.

Données de référence D1.1:2025. Non affilié à l'AWS.