Preheat M270M HPS345W — H4, High HI, 40–60 mm: 250°F
Persyaratan preheat fraktur kritis untuk M270M HPS345W / M270 HPS50W pada ketebalan 40–60 mm (1½–2½ in) dengan penunjukan hidrogen H4, sesuai AASHTO/AWS D1.5:2025, Kode Pengelasan Jembatan.
Berdasarkan AWS D1.5:2025 — setiap nilai dilacak ke pasal.
M270M HPS345W / M270 HPS50W
AASHTO M270M HPS345W (M270 HPS50W) is a high-performance weathering bridge steel with enhanced weldability through controlled chemistry — 0.11% max carbon, 0.006% max sulfur with calcium treatment for inclusion shape control. Developed under FHWA-funded research to eliminate the lamellar tearing and inconsistent toughness problems of earlier weathering steel bridge designs. The lower carbon equivalent compared to conventional Gr.345W reduces cracking sensitivity at flange splices. NFC preheat per Table 6.3 Group 1; FC per Tables 12.6/12.7.
Memahami Preheat FC untuk M270M HPS345W / M270 HPS50W
High-performance weathering 345 MPa steel with enhanced weldability. Under D1.5 fracture-critical requirements (Clause 12), the combination of H4 hydrogen designation and this heat input band requires 250°F minimum preheat at 40–60 mm (1½–2½ in). Lower hydrogen levels (H4 < H8 < H16) allow lower preheat because less hydrogen enters the weld deposit. Similarly, higher heat input reduces preheat requirements because slower cooling rates give hydrogen more time to diffuse out.
Di Mana M270M HPS345W / M270 HPS50W Digunakan
Preferred over conventional Gr.345W for new unpainted bridge construction. The HPS designation indicates FHWA-developed chemistry with 0.11% max carbon and controlled sulfur for enhanced weldability and lamellar tearing resistance. Flange splice CJP welds benefit from the lower carbon equivalent, reducing reject rates during cold-weather bridge fabrication. Material cost premium over standard Gr.345W is typically 15–25% per ton but eliminates weldability-related rework.
Kontrol Hidrogen H4 untuk M270M HPS345W / M270 HPS50W
HPS345W (HPS50W) already has inherently low carbon equivalent due to HPS chemistry control. Combined with H4 consumables, the preheat requirement drops to the lowest tier in Tables 12.6/12.7 — frequently 20–30°F lower than conventional 345W, compounding the weldability advantage of HPS chemistry with optimized hydrogen control.
Mengapa Preheat Penting pada 40–60 mm (1½–2½ in)
Material from 40 to 65 mm (1-1/2 to 2-1/2 in) covers heavy girder flanges, thick splice plates, and main member plate. This is the critical thickness range for bridge fabrication — preheat reaches 65°C (150°F) for Group 1 and 80°C (175°F) for Group 2. FC preheat at this thickness can exceed 200°C (400°F) depending on hydrogen level and heat input.
M270M HPS345W / M270 HPS50W pada 40–60 mm (1½–2½ in)
HPS345W (HPS50W) at 40–65 mm covers main flange plates on new unpainted highway bridges. The controlled chemistry gives better CVN toughness transition behavior than conventional 345W — 20–30 J higher at -29°C (−20°F) — which improves the fracture resistance of thick flange splices in cold-climate service. Fabricators report 30–40% fewer repair rates on HPS flange splice welds compared to conventional 345W at the same thickness.
Bahan Habis Pakai Bersertifikat H4 untuk Pengelasan FC Jembatan
Penunjukan tambahan H4 menyertifikasi bahwa bahan habis pakai mengendapkan tidak lebih dari 4 mL hidrogen difusibel per 100g logam yang diendapkan. Untuk fraktur kritis M270M HPS345W / M270 HPS50W pada ketebalan 40–60 mm (1½–2½ in) dengan masukan panas > 2.8 kJ/mm, bahan habis pakai H4 mencapai preheat terendah 250°F (120°C) di tabel FC.
Baja Jembatan Lain pada H4 > 2.8 kJ/mm · 40–60 mm (1½–2½ in)
| Baja | Tabel | Preheat |
|---|---|---|
| M270M Gr.250 / M270 Gr.36 | A | 150°F (70°C) |
| M270M Gr.345 / M270 Gr.50 | A | 150°F (70°C) |
| M270M Gr.345S / M270 Gr.50S | A | 150°F (70°C) |
| M270M Gr.345W / M270 Gr.50W | B | 250°F (120°C) |
M270M HPS345W / M270 HPS50W pada H4 > 2.8 kJ/mm
Coba Kombinasi Berbeda
Gunakan Kalkulator Preheat Jembatan D1.5 untuk mencari baja AASHTO M270, tingkat hidrogen, dan kombinasi masukan panas. Lihat juga Kalkulator Preheat D1.1 untuk baja struktural.
Panduan Terkait
Data referensi D1.5:2025. Tidak berafiliasi dengan AWS atau AASHTO.