AASHTO/AWS D1.5:2025 · 표 12.4/12.5 · 파괴 임계 · H8

예열 M270M Gr.345 — H8, Low HI, > 60 mm: 325°F

AASHTO/AWS D1.5:2025 교량 용접 코드에 따른 > 60 mm (> 2½ in) 두께에서 M270M Gr.345 / M270 Gr.50의 파괴 임계 예열 요구사항 H8 수소 지정 포함.

AWS D1.5:2025 기반 — 모든 값이 조항까지 추적됨.

파괴 임계 최소 예열 및 층간온도
325°F / 160°C
수소 H8 · 입열량 1.2–2.0 kJ/mm · 두께 > 60 mm (> 2½ in)
AASHTO/AWS D1.5M/D1.5:2025 표 12.4/12.5
H8 지정: 용접재료가 AWS A4.3에 따라 ≤ 8 mL/100g 확산성 수소를 방출합니다. 낮은 수소 = 낮은 예열.
참조 도구. 프로젝트 적용 판본 및 엔지니어 승인 WPS와 대조 확인하십시오.

M270M Gr.345 / M270 Gr.50

AASHTO M270M Gr.345 (M270 Gr.50) is the standard bridge plate and shape grade with 345 MPa (50 ksi) minimum yield, corresponding to ASTM A709 Gr.50. It is the baseline strength for modern highway bridge design per AASHTO LRFD. Used for plate girder flanges, webs, floor beams, cross-frames, and splice plates. Flanges on large plate girders routinely reach 50–75 mm (2–3 in) thick, making preheat compliance at upper thickness tiers a significant production consideration. NFC preheat per Table 6.3 Group 1; FC per Tables 12.4/12.5.

M270M Gr.345 / M270 Gr.50의 FC 예열 이해

Standard 345 MPa (50 ksi) bridge plate for girders and floor beams. Under D1.5 fracture-critical requirements (Clause 12), the combination of H8 hydrogen designation and this heat input band requires 325°F minimum preheat at > 60 mm (> 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.

M270M Gr.345 / M270 Gr.50이 사용되는 곳

Standard for highway bridge plate girder flanges, box girder webs, cross-frame angles, bearing sole plates, and splice plates in bolted-welded connections. Gr.345 (50) is the baseline strength for modern AASHTO LRFD bridge design. Flange butt splices, web-to-flange continuous fillet welds, and bearing stiffener clips are the dominant weld types in girder fabrication. Girder flanges typically range from 20 to 75 mm (3/4 to 3 in) thick with widths from 300 to 750 mm (12 to 30 in), requiring extended preheat soak times on thicker flange splices.

M270M Gr.345 / M270 Gr.50의 H8 수소 제어

Gr.345 (50) with H8 is the standard specification for most bridge fabrication shops. H8 consumables are more widely stocked than H4, providing procurement flexibility without significantly increasing preheat requirements. The preheat increase from H4 to H8 is typically 10–25°F depending on thickness tier.

> 60 mm (> 2½ in)에서 예열이 중요한 이유

Material over 65 mm (2-1/2 in) includes the heaviest bridge girder flanges and box-section walls. Table 6.3 requires 110°C (225°F) for both groups at this thickness. Extended preheat soak time is necessary to achieve uniform through-thickness temperature. FC preheat for the heaviest sections reaches 180–200°C (350–400°F) at the H16 hydrogen level.

> 60 mm (> 2½ in)에서의 M270M Gr.345 / M270 Gr.50

Gr.345 (50) above 65 mm represents the heaviest plate girder flanges on long-span bridges. At 75–100 mm flange thickness, each CJP splice requires 80+ weld passes with continuous interpass monitoring. Preheat soak-through needs heating mats or induction coils because torch heating alone cannot maintain uniform temperature through 3+ inches of plate. Production rates drop to 1–2 splices per shift at this thickness, making preheat efficiency a major scheduling factor.

H8 1.2–2.0 kJ/mm · > 60 mm (> 2½ in)에서의 다른 교량 강재

강재예열
M270M Gr.250 / M270 Gr.36A325°F (160°C)
M270M Gr.345W / M270 Gr.50WB375°F (190°C)
M270M HPS345W / M270 HPS50WB375°F (190°C)
M270M HPS485W / M270 HPS70WB375°F (190°C)

다양한 조합 시도

D1.5 교량 예열 계산기를 사용하여 AASHTO M270 강재, 수소 수준 및 입열량 조합을 조회하세요. D1.1 예열 계산기도 참조하세요.

> 60 mm (> 2½ in)에서 H8을 사용하는 M270M Gr.345 / M270 Gr.50의 FC 예열은 얼마입니까?
H8 지정 용접재료로 > 60 mm (> 2½ in) 두께, 1.2–2.0 kJ/mm 입열량에서 용접하는 파괴 임계 M270M Gr.345 / M270 Gr.50의 최소 예열은 D1.5 표 12.4/12.5에 따라 325°F (160°C)입니다.
M270M Gr.345 / M270 Gr.50의 FC와 NFC 예열의 차이는 무엇입니까?
비파괴 임계 예열(표 6.3)은 단순한 두께 기반 조회입니다. 파괴 임계 예열(표 12.4–12.8)은 수소 수준과 입열량을 변수로 추가하여 일반적으로 더 높은 예열을 요구합니다.
입열량은 M270M Gr.345 / M270 Gr.50의 FC 예열에 어떤 영향을 미칩니까?
높은 입열량은 느린 냉각 속도를 의미하여 수소가 용접부에서 확산할 시간을 더 줍니다. 1.2–2.0 kJ/mm에서 325°F 예열은 수소 수준과 냉각 속도의 균형을 맞춥니다.
Why is preheat the same for both groups above 65 mm?
Table 6.3 converges at 110°C (225°F) for both groups at this thickness because the dominant factor becomes hydrogen diffusion distance through the thick section rather than the steel’s hardenability. Even Group 1 steels need substantial preheat at 65+ mm to keep cooling rates slow enough for safe hydrogen escape.

D1.5:2025 참조 데이터. AWS 또는 AASHTO와 무관.