Préchauffage de A106 Gr.B pour GMAW — up to 3/4"
Température minimale de préchauffage et entre passes pour A106 Gr.B soudé avec GMAW 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.
Procédé SMAW, SAW, GMAW ou FCAW bas hydrogène
GMAW (Gas Metal Arc Welding)
GMAW (MIG) feeds continuous solid wire with shielding gas — an inherently low-hydrogen process assigned to Category B in Table 5.11.
GMAW on pipe requires specialized gun angles and travel speed control for circumferential joints. Pulsed GMAW is increasingly popular for pipe root passes as an alternative to SMAW. The absence of slag between passes eliminates inter-pass cleaning time, significantly improving productivity on multi-pass pipe joints.
A106 Gr.B
ASTM A106 Grade B covers seamless carbon steel pipe for high-temperature service up to about 750°F, with 35 ksi minimum yield and 60 ksi minimum tensile strength. Produced in sizes from 1/4" through 30" NPS, it is the standard pipe material for power plants, refineries, and process piping where elevated temperature and pressure coexist. Chemistry limits (0.30% max carbon, 0.29-1.06% manganese) give it a weldability profile that matches common structural grades with Category A and B preheat requirements. A106 is exclusively seamless, which eliminates the ERW seam concern present in A53. Grade C (40 ksi yield) exists but Grade B handles the vast majority of process piping service.
Pourquoi ce Préchauffage pour A106 Gr.B avec GMAW
Seamless pipe rated for high-temperature service up to 750°F. With low-hydrogen GMAW, this combination falls under Category B rather than Category A, reflecting the lower hydrogen potential of the consumable. The 32°F minimum preheat is lower than what non-low-hydrogen SMAW would require at the same thickness. Low-hydrogen electrodes and inherently low-hydrogen wire processes reduce the driving force for hydrogen-induced cracking in the heat-affected zone.
Applications Typiques de A106 Gr.B
Used in boiler steam headers, refinery piping racks, process plant branch connections, heat exchanger nozzle welds, power plant main steam lines, petrochemical reactor feed piping, and high-temperature manifolds. A106 Gr.B butt welds in process piping require joint preparation to B31.1 (power piping) or B31.3 (process piping) depending on service classification. Socket welds on small-bore A106 drain lines and instrument take-offs are common in utility stations, typically 1/2" to 2" NPS. Typical wall thicknesses range from Schedule 40 (0.237" wall on 2" NPS) to Schedule 160 (0.500" wall on 4" NPS) in critical high-energy service. Weld procedure qualification often includes side bend tests and tensile tests specific to the pipe diameter and wall thickness being joined. Field welds at pipe-to-flange connections and valve set-on joints require portable preheating equipment when wall thickness exceeds 1/2".
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 GMAW à up to 3/4"
| Acier | Catégorie | Préchauffage |
|---|---|---|
| A36 | B | 32°F (0°C) |
| A633 Gr.E | C | 50°F (10°C) |
| A709 HPS70W | C | 50°F (10°C) |
| A710 Gr.A | C | 50°F (10°C) |
A106 Gr.B avec GMAW
Essayez Différentes Combinaisons
Utilisez le calculateur interactif de préchauffage pour consulter toute combinaison acier, procédé et épaisseur du D1.1:2025 Tableau 5.11.
Guides de Soudage de A106 Gr.B
Données de référence D1.1:2025. Non affilié à l'AWS.