AWS D1.1:2025 · الجدول 5.11 · الفئة B

التسخين المسبق لـ A588 مع SAW — over 2-1/2"

الحد الأدنى لدرجة حرارة التسخين المسبق وبين الممرات لـ A588 الملحوم بـ SAW عند سماكة over 2-1/2"، وفقاً لـ AWS D1.1:2025 الجدول 5.11.

مبني على AWS D1.1:2025 الجدول 5.11 — كل قيمة متتبعة إلى البند.

الحد الأدنى لدرجة حرارة التسخين المسبق وبين الممرات
225°F / 110°C
الفئة B
عملية SMAW أو SAW أو GMAW أو FCAW منخفضة الهيدروجين
AWS D1.1:2025 الجدول 5.11، §5.7
أداة مرجعية. تحقق من الإصدار المطبق على المشروع وإجراء اللحام المعتمد من المهندس.

SAW (Submerged Arc Welding)

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

SAW with F7A2-EM12K wire/flux delivers the highest deposition rates for flat-position fillet welds on building steel. Typical parameters: 500-700 amps, 28-32 volts, 18-30 IPM travel speed. Flux consumption runs approximately equal to wire consumption by weight. Unfused flux recovery and recycling systems are standard in production shops to control consumable costs.

SAW Tips for Common Structural Steels

For A588 weathering steel (50 ksi yield, CE-IIW 0.45–0.52), SAW with weathering-composition wire (EM12K-W or similar) and neutral flux handles girder web-to-flange fillet welds on unpainted bridge fabrication. The higher alloy content of A588 means the SAW heat input on thick flanges is a more critical parameter than on A36 — target 30–55 kJ/in to avoid excessive grain growth in the wide HAZ.

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

Filler Metal for SAW

Wire: EM12K or EL12 with matching flux (AWS A5.17). Common combo: F7A2-EM12K. Diameter: 3/32" or 7/64". Flux type: active (A) for single-pass, neutral (N) for multi-pass. Voltage: 28-34V. Current: 400-800A depending on joint size. Travel: 12-24 ipm.

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

A588

ASTM A588 is a weathering steel specification (50 ksi minimum yield, 70 ksi minimum tensile) that forms a protective iron oxide patina when exposed to atmospheric wet-dry cycling. The copper (0.25-0.40%), chromium (0.40-0.65%), and nickel (0.25-0.40%) alloying creates a dense, adherent rust layer that stabilizes after 2-5 years of exposure. Used in unpainted bridges and exposed structural members, it requires low-hydrogen processes (Category B) per Table 5.11 due to its higher alloy content pushing CE-IIW to 0.45-0.52. Weld filler metal must be a matching weathering composition (e.g., E8018-W2) to achieve corrosion-matching at exposed joints. A588 is produced as plate up to 8" thick and is available in structural shapes, though A709 Gr.50W is more commonly specified for bridge applications.

لماذا هذا التسخين المسبق لـ A588 مع SAW

Weathering steel forming protective patina for unpainted bridge applications. 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 225°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.

التطبيقات النموذجية لـ A588

Used in unpainted highway bridge girders, exposed pedestrian bridges, architectural weathering facades, transmission tower legs, rail bridge stringers, and marine navigation light structures. A588 welds must use compatible weathering-type filler metals (e.g., E8018-W2 or ER80S-G) to achieve matching corrosion resistance in the exposed weld face. Girder flange splices and stiffener fillet welds are primary fabrication joints. The distinctive brown-orange patina develops over 2-5 years of atmospheric exposure to form a stable, adherent oxide layer that does not require repainting. In coastal locations with salt spray or in areas where the surface stays wet for extended periods, the protective oxide layer may not form properly, limiting A588 to inland applications with reliable wet-dry cycling. Bolt holes and copes must be deburred to prevent corrosion concentration. Drainage details in the steel design prevent water traps that would undermine the patina formation process.

لماذا يهم التسخين المسبق عند over 2-1/2"

The heaviest sections demand the highest preheat in Table 5.11. Multi-pass sequences require maintaining interpass temperature throughout.

أنواع فولاذ أخرى مع SAW عند over 2-1/2"

الفولاذالفئةالتسخين المسبق
A36B225°F (110°C)
A633 Gr.EC300°F (150°C)
A709 HPS70WC300°F (150°C)
A710 Gr.AC300°F (150°C)

جرّب تركيبات مختلفة

استخدم حاسبة التسخين المسبق التفاعلية للبحث عن أي تركيبة من الفولاذ والعملية والسماكة من D1.1:2025 الجدول 5.11.

ما هو الحد الأدنى للتسخين المسبق لـ A588 مع SAW عند over 2-1/2"؟
لـ A588 الملحوم بـ SAW عند سماكة over 2-1/2"، الحد الأدنى لدرجة حرارة التسخين المسبق هو 225°F (110°C) وفقاً لـ AWS D1.1:2025 الجدول 5.11، الفئة B. هذا أيضاً الحد الأدنى لدرجة حرارة بين الممرات.
ما الفئة التي تنطبق على A588 مع SAW؟
A588 الملحوم بـ SAW يقع تحت الفئة B في AWS D1.1:2025 الجدول 5.11. عملية SMAW أو SAW أو GMAW أو FCAW منخفضة الهيدروجين. عند سماكة over 2-1/2"، تتطلب هذه الفئة تسخيناً مسبقاً بحد أدنى 225°F (110°C).
لماذا التسخين المسبق 225°F لـ A588 عند over 2-1/2"؟
التسخين المسبق بمقدار 225°F لـ A588 عند over 2-1/2" مع SAW يعكس مزيج قابلية التصلب للفولاذ والقيد المتزايد عند هذه السماكة.

بيانات مرجعية D1.1:2025. غير تابع لـ AWS.