Preheat A913 Gr.70 untuk SMAW (low-hydrogen) — 1-1/2" to 2-1/2"
Suhu pemanasan awal dan antar lajur minimum untuk A913 Gr.70 dilas dengan SMAW (low-hydrogen) pada ketebalan 1-1/2" to 2-1/2", sesuai AWS D1.1:2025 Tabel 5.11.
Berdasarkan AWS D1.1:2025 Tabel 5.11 — setiap nilai dilacak ke pasal.
Proses SMAW, SAW, GMAW atau FCAW hidrogen rendah (baja kekuatan tinggi)
SMAW (Low-Hydrogen)
Low-hydrogen SMAW (E7018/E7016) uses basic-coated electrodes requiring rod oven storage, assigned to Category B in Table 5.11.
For high-strength shapes and plate, E7018 provides adequate tensile match for steels up to Category C. E8018-C3 or E9018-M may be required for higher-strength steels to meet weld metal strength matching requirements. Bead sequencing on thick TMCP flanges should follow qualified WPS parameters precisely to avoid overheating the refined microstructure.
A913 Gr.70
ASTM A913 Grade 70 (70 ksi yield, 90 ksi minimum tensile) is a TMCP structural shape used in heavily loaded columns and seismic applications requiring higher strength than Gr.50/60/65. It falls under Category C for standard low-hydrogen processes, with preheat requirements reflecting its higher strength level and CE-IIW of approximately 0.42-0.48. With H8-certified consumables, it qualifies for Category F — 32°F up to 2-1/2”, 150°F above. The TMCP QST microstructure provides inherent resistance to hydrogen cracking through its fine-grained bainitic structure, which is why H8 consumables unlock a reduced-preheat path not available for conventional Q&T steels at similar strength. A913 Gr.70 is primarily available in W14 sections ranging from W14x233 through W14x730, with limited W12 and W36 availability.
Mengapa Preheat Ini untuk A913 Gr.70 dengan SMAW-LH
TMCP 70 ksi shape with Category F reduced preheat using H8 consumables. The higher strength level of this steel places it in Category C of Table 5.11, which carries elevated preheat requirements compared to Category B grades. At 225°F minimum with SMAW-LH, the preheat ensures the cooling rate stays slow enough to prevent hydrogen-induced cracking in this higher-hardenability material. Category C steels demand careful attention to interpass temperature control throughout the weld sequence.
Aplikasi Umum untuk A913 Gr.70
Used in heavily loaded interior columns of super-tall buildings, transfer truss compression chords, mega-brace members in outrigger systems, stadium roof cantilever supports, and seismic collectors in high-rise cores. A913 Gr.70 TMCP shapes enable smaller column sections, freeing usable floor space on every floor of the building. Column splice butt welds at upper stories and moment connection flange welds carry the highest inspection priority. The 70 ksi yield enables using W14x398 where conventional Gr.50 would require W14x550, saving 38% in material weight and 3-4 inches of floor space per column. Erection splices at every 2-3 stories use CJP groove welds with backing bars removed and back-gouged per seismic detailing requirements. The Category F path with H8 consumables (32°F up to 2-1/2", 150°F above) provides a practical alternative to full Category C preheat on these thick-flange column splices.
Mengapa Preheat Penting pada 1-1/2" to 2-1/2"
Heavy plate with significant restraint and thermal mass — preheat is critical to maintain slow cooling for hydrogen escape.
Preheat Kategori C untuk A913 Gr.70
Kategori C pada Tabel 5.11 berlaku untuk baja kekuatan tinggi di mana kombinasi kemampuan pengerasan dan tegangan sisa memerlukan preheat tinggi. Untuk A913 Gr.70 pada 1-1/2" to 2-1/2", preheat minimum 225°F memperlambat laju pendinginan las untuk mencegah pembentukan martensit rentan retak di zona terpengaruh panas.
Baja Lain dengan SMAW (low-hydrogen) pada 1-1/2" to 2-1/2"
A913 Gr.70 dengan SMAW (low-hydrogen)
Coba Kombinasi Berbeda
Gunakan kalkulator preheat interaktif untuk mencari kombinasi baja, proses, dan ketebalan dari D1.1:2025 Tabel 5.11.
Panduan Pengelasan A913 Gr.70
Data referensi D1.1:2025. Tidak berafiliasi dengan AWS.