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Cold Drawn Stainless Steel Seamless Tube, A213 / SA213 TP316L UNS S31603 Used In Seawater Desalination Unit

Cold Drawn Stainless Steel Seamless Tube, A213 / SA213 TP316L UNS S31603 Used In Seawater Desalination Unit

  • Cold Drawn Stainless Steel Seamless Tube, A213 / SA213 TP316L UNS S31603 Used In Seawater Desalination Unit
  • Cold Drawn Stainless Steel Seamless Tube, A213 / SA213 TP316L UNS S31603 Used In Seawater Desalination Unit
  • Cold Drawn Stainless Steel Seamless Tube, A213 / SA213 TP316L UNS S31603 Used In Seawater Desalination Unit
  • Cold Drawn Stainless Steel Seamless Tube, A213 / SA213 TP316L UNS S31603 Used In Seawater Desalination Unit
Cold Drawn Stainless Steel Seamless Tube, A213 / SA213 TP316L UNS S31603 Used In Seawater Desalination Unit
商品の詳細:
起源の場所: 中国
ブランド名: YUHONG
証明: ISO, TUV, PED etc.
モデル番号: A213 / SA213 TP316L (UNS S31603)
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最小注文数量: 治療部位により異なります
価格: 交渉可能
パッケージの詳細: 合板ケース/鉄ケース/プラスチックキャップ付きバンドル
受渡し時間: QTYによって
支払条件: T/T、L/C を確認できます
供給の能力: 月産100トン
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詳細製品概要
製品: ステンレス鋼の継ぎ目が無い管 材質グレード: TP316L / UNS S31603 / EN 1.4404
一般的なサイズ: 1/4インチから4インチ 一般的な肉厚: 0.035インチ~0.375インチ
終わり: 斜めか明白な端 研磨: 酸洗・サンドブラスト・光輝焼鈍
処理: 冷たい巻き / 冷たい引き出物 キーワード: 縫い目のないステンレス鋼管
ハイライト:

stainless steel seamless tube for seawater desalination

,

cold drawn stainless steel tube TP316L

,

SA213 seamless tube with corrosion resistance

Cold Drawn Stainless Steel Seamless Tube, A213 / SA213 TP316L UNS S31603 Used In Seawater Desalination Unit

 

 

1. Overview on A213/SA213 TP316L seamless tube

 

The ASME SA213 TP316L U-shaped seamless tube is a special austenitic stainless steel pipe manufactured in accordance with the standards of the American Society of Mechanical Engineers (ASME). Its core advantages lie in its ultra-low carbon (L) content and the addition of molybdenum (Mo), which provide excellent resistance to chloride pitting, crevice corrosion, and high temperatures. The U-shaped structure, formed through cold bending and solution heat treatment processes, effectively absorbs thermal stress. It is primarily used as the heat transfer tube in shell-and-tube heat exchangers and is widely applied in demanding equipment such as power station boilers, chemical plants, and marine environments.

 

 

2. Main characteristics of A213/SA213 TP316L seamless tube

 

ASME SA213 TP316L U-shaped seamless tube (or U-tube for heat exchangers) is a high-performance core component in industrial heat exchange equipment. Its main characteristics can be summarized from three dimensions: material properties, structural design, and manufacturing standards.

 

Dimension of Characteristics

Specific Feature

Explanation and Advantage

Material Chemical Properties Ultra-low carbon (C≤0.030%) Effectively prevents intergranular corrosion during welding and high-temperature service, ensuring long-term structural integrity.
Addition of Molybdenum (Mo 2.0-3.0%) Core corrosion resistance enhancement, significantly improving resistance to chloride-induced pitting and crevice corrosion. Suitable for seawater and chemical media.
Austenitic Chromium-Nickel Stainless Steel Provides excellent toughness, plasticity, and non-magnetic properties, with good overall mechanical performance.
Structure & Manufacturing Process U-shaped integral bent form Eliminates tube sheet inlet welds, reducing leakage risk; the bent structure automatically compensates for thermal expansion stress, preventing equipment damage from thermal expansion and contraction.
Cold bending and solution heat treatment Ensures the corrosion resistance of the material is not degraded in the bent section and relieves internal stress, restoring the material's optimal properties.
Seamless Steel Tube Compared to welded tubes, offers more uniform pressure-bearing capacity, higher reliability, and safety.
Standards & Quality Assurance Complies with ASME SA213 Standard Strict international control over material smelting, manufacturing processes, chemical composition, mechanical properties, hydrostatic testing, etc., ensuring traceable quality and safe reliability in demanding conditions such as high pressure, high temperature, and corrosive environments.

 

 

3. Chemical Composition of SS316L

 

Element Composition Range (%)
Carbon (C) ≤ 0.030%
Manganese (Mn) 2.00% max
Phosphorus (P) 0.045% max
Sulfur (S) 0.030% max
Silicon (Si) 0.75% max
Chromium (Cr) 16.00 – 18.00%
Nickel (Ni) 10.00 – 14.00%
Molybdenum (Mo) 2.00 – 3.00%
Iron (Fe) Balance

 

Key Points:

  • Low Carbon Content: The low carbon content (<0.03%) is essential for improved weldability and resistance to intergranular corrosion after welding.

  • Chromium (Cr): Provides corrosion resistance, especially against oxidation and scaling at elevated temperatures.

  • Nickel (Ni): Improves the toughness and resistance to corrosion, especially in acidic environments.

  • Molybdenum (Mo): Enhances resistance to pitting and crevice corrosion, especially in chloride-rich environments (such as seawater or salt-containing solutions).


4. Mechanical Properties of SS316L

Property Value
Tensile Strength (σ₀.₂) 70 – 90 ksi (485 – 620 MPa)
Yield Strength (0.2% Offset) 25 – 40 ksi (170 – 275 MPa)
Elongation (in 8 inches) ≥ 40%
Hardness ≤ 217 Brinell (HB)
Modulus of Elasticity ~ 193,000 ksi (1.33 × 10⁶ MPa)
Poisson's Ratio ~ 0.30

 

Key Mechanical Properties:

  • Tensile Strength: The material exhibits excellent tensile strength, typically between 485 MPa (70 ksi) and 620 MPa (90 ksi).

  • Yield Strength: The yield strength (0.2% offset) for TP316L ranges between 170 MPa (25 ksi) and 275 MPa (40 ksi), which ensures that the material can withstand significant stress before permanent deformation.

  • Elongation: TP316L stainless steel has a high degree of elongation (>40%), which means it is very ductile and can be easily formed without cracking.

  • Hardness: The material has a relatively low hardness compared to other stainless steels, ensuring it remains ductile and resistant to crack propagation.


5. Temperature Properties

  • Service Temperature Range: TP316L is effective for use at high temperatures. Its maximum service temperature is around 870°C (1,600°F) in intermittent service and 925°C (1,700°F) in continuous service.

  • Operating Temperature: For crevice corrosion resistance, the material remains stable even in temperatures exceeding 500°C (932°F), which makes it suitable for high-temperature applications such as boilers, superheaters, and heat exchangers.


6. Corrosion Resistance

  • General Corrosion: TP316L offers superior resistance to general corrosion compared to other stainless steels like 304 and 304L, especially in chloride environments (e.g., seawater).

  • Pitting and Crevice Corrosion: Due to the presence of molybdenum, TP316L provides excellent resistance to pitting and crevice corrosion, especially in environments with high chloride content.

  • Intergranular Corrosion: Thanks to its low carbon content, TP316L is less susceptible to sensitization and intergranular corrosion after welding, which is an advantage in high-temperature applications.


7. Fabrication & Welding

  • Weldability: TP316L has good weldability with most welding processes, including TIG, MIG, and stick welding. The low carbon content reduces the formation of carbide precipitates at the grain boundaries during welding, improving the material’s resistance to intergranular corrosion.

  • Formability: It has excellent formability and can be easily bent and shaped without losing its mechanical properties.

  • Heat Treatment: TP316L can be heat-treated to increase hardness or further improve its strength, but it does not require any post-weld heat treatment.

 

8. Conclusion

 

ASTM A213 TP316L stainless steel combines high strength, good weldability, and excellent resistance to corrosion, especially in aggressive environments like chlorides or acidic conditions. The material is commonly used in heat exchangers, boilers, petrochemical plants, and chemical processing equipment due to these outstanding properties. 

 

 

Cold Drawn Stainless Steel Seamless Tube, A213 / SA213 TP316L UNS S31603 Used In Seawater Desalination Unit 0

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Yuhong Group Co.,Ltd

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