AWS D1.1:2025 · 表5.11 · カテゴリーA

A53 Gr.BのSMAW (non-low-hydrogen)用予熱 — 3/4" to 1-1/2"

A53 Gr.BをSMAW (non-low-hydrogen)で板厚3/4" to 1-1/2"で溶接する場合の最低予熱およびパス間温度。AWS D1.1:2025 表5.11に基づく。

AWS D1.1:2025 表5.11に基づく — すべての値は条項に追跡可能。

最低予熱・パス間温度
150°F / 65°C
カテゴリーA
非低水素SMAWプロセス
AWS D1.1:2025 表5.11、§5.7
参考ツール。プロジェクト適用版およびエンジニア承認済みWPSで確認すること。

SMAW (Non-Low-Hydrogen)

Non-low-hydrogen SMAW (E6010/E6011) uses cellulosic electrodes with higher hydrogen potential, assigned to Category A in Table 5.11.

For common structural shapes and plate, non-low-hydrogen SMAW with E6010 or E6011 excels at root passes on open-root groove welds where burn-through control matters. Vertical-up technique with a slight weave keeps the puddle manageable. Rod consumption runs about 10-12 electrodes per pound of weld metal deposited. Electrode stubs should be no shorter than 2 inches to maintain adequate arc length control.

A53 Gr.B

ASTM A53 Grade B is a standard specification for welded (Type E/ERW and Type S/seamless) steel pipe used in mechanical and pressure applications, with a minimum yield of 35 ksi and 60 ksi minimum tensile strength. It shares chemistry similar to A36 (0.30% max carbon) and falls into the same Table 5.11 categories (A and B). A53 pipe is produced in nominal sizes from 1/8" through 26" NPS in Schedules 10 through XXH. Grade A (lower strength at 30 ksi yield) is also produced but Grade B dominates structural and mechanical service. The ERW weld seam has different properties than the base metal, which affects the heat-affected zone behavior during field welding adjacent to the seam.

A53 Gr.BとSMAWでこの予熱が必要な理由

Welded and seamless pipe for mechanical and pressure service at 35 ksi yield. At this thickness, SMAW with non-low-hydrogen electrodes places the joint in Category A of Table 5.11. The minimum preheat of 150°F compensates for the higher diffusible hydrogen from cellulosic electrode coatings. The thicker the material, the longer hydrogen takes to escape the heat-affected zone, which is why preheat rises with thickness even for this common grade.

A53 Gr.Bの代表的な適用例

Found in pipe columns supporting mezzanines, canopy posts, bollard barriers, sprinkler risers, mechanical chase framing, handrail tubing in industrial plants, and fence line posts. A53 pipe columns in light commercial buildings typically use fillet welds to cap plates and base plates with E70XX electrodes. In parking structures, A53 serves as guard rail posts welded to embed plates. Most A53 pipe comes in Schedule 40 wall thickness (0.237" on 2" NPS, 0.280" on 4" NPS), and typical column sizes range from 4" to 12" nominal pipe size. Joints at base plates often use a 1/4" fillet all-around with a 3/8" tack followed by a continuous pass. Cut ends are squared on a band saw or beveled for butt joints on larger diameters. Field fit-up on pipe columns requires checking plumbness before tacking, as round sections rotate freely and cannot self-align like W-shapes against shear plates.

3/4" to 1-1/2"で予熱が重要な理由

Preheat climbs at this range as thicker material slows heat dissipation, trapping hydrogen at crack-susceptible grain boundaries.

SMAW (non-low-hydrogen)と3/4" to 1-1/2"における他の鋼材

鋼材カテゴリー予熱
A36A150°F (65°C)
A106 Gr.BA150°F (65°C)

別の組み合わせを試す

インタラクティブ予熱計算機を使用して、D1.1:2025 表5.11のあらゆる鋼材・プロセス・板厚の組み合わせを検索できます。

3/4" to 1-1/2"でSMAWを使用したA53 Gr.Bの最小予熱温度は?
A53 Gr.BをSMAW (non-low-hydrogen)で3/4" to 1-1/2"の板厚で溶接する場合、最低予熱温度はAWS D1.1:2025 表5.11、カテゴリーAに基づき150°F(65°C)です。これはパス間温度の最低値でもあり、パス間でも継手が150°F以下に冷却されてはなりません。
A53 Gr.BとSMAWに適用される表5.11のカテゴリーは?
SMAW (non-low-hydrogen)で溶接されたA53 Gr.Bは、AWS D1.1:2025 表5.11のカテゴリーAに該当します。非低水素SMAWプロセス。3/4" to 1-1/2"板厚では、このカテゴリーは最低予熱150°F(65°C)を要求します。
3/4" to 1-1/2"でのA53 Gr.Bの予熱が150°Fである理由は?
SMAW (non-low-hydrogen)での3/4" to 1-1/2"板厚におけるA53 Gr.Bの150°F予熱は、鋼材の焼入性とこの板厚での拘束の増大の組み合わせを反映しています。高い予熱は熱影響部の冷却速度を遅くし、鋼材が割れ感受性ミクロ組織に変態する前に拡散性水素が逸散する時間を与えます。

D1.1:2025参考データ。AWSとの提携なし。