
Hastelloy 2.4602 Oil And Gas Pipe
1.Standard: ASTM B622, ASTM B474
2.Size: 15″NB – 150″NB
3.Thickness: SCH5~SCHXXS
4.End: Beveled End, Plain End
Hastelloy 2.4602 , distinguished for its high resistance to corrosion and oxidation, even in extreme environments. Hastelloy C22 UNS N06022 exhibits exceptional resistance, including sulfuric acid, hydrochloric acid, and chloride solutions. With its high chromium and molybdenum content, 2.4602 material retains its mechanical strength and integrity even at elevated temperatures. Composed primarily of nickel, molybdenum, and chromium, with additions of tungsten and cobalt, make it ideal for demanding applications in the oil and gas industry.
Hastelloy ALLOY 2.4602 Tubing Applications:
- Oil and gas industry
- Downhole Equipment
- Pipeline Systems
- Chemical Processing
- Reactors
- Heat Exchangers
- Distillation Columns

Specification Chart of Hastelloy C22 Seamless Tubing
| Standard | ASTM, ASME B 622, B 619, B 775, B 516, B 626 |
| Size | 15NB TO 150 NB IN |
| Grade |
Hastelloy C22 Seamless Pipes & Tubes: ASTM B 622, ASME SB 622 Hastelloy C22 Welded Pipes and Tubes : ASTM B 619, B 626, B 575, B 574, UNS 6022 / Werkstoff Nr. 2.4617 |
| Type | Seamless / ERW / Welded / Fabricated / LSAW Pipes |
| Form | Round, Square, Rectangular, Hydraulic Etc. |
| End | Plain End, Bevelled End, Treaded |
| Length | Single Random, Double Ranidom & Cut Length |
Chemical Compatibility of Hastelloy C22 Seamless Tubing
| Element | Hastelloy C22 |
| Density | 8.69 g/cm3 |
| Melting Point | 1399 °C (2550 °F) |
| Tensile Strength | Psi – 1,00,000 , MPa – 690 |
| Yield Strength (0.2%Offset) | Psi – 45000 , MPa – 310 |
| Elongation | 45% |
Alloy C22 Seamless Tube
| Outside diameter | Wall thickness | Length |
|---|---|---|
| 5.0 ~ 203.2mm | As per requirement | Upto 6 Meters |
DIN 2.4602 Welded Tube
| Outside diameter | Wall thickness | Length |
|---|---|---|
| 5.0 ~ 1219.2mm | 1.0 ~ 15.0 mm | Upto 6 Meters |
Hastelloy 2.4602 High-temperature Stability
EN 2.4602 is renowned for its exceptional high-temperature stability, making it suitable for applications where exposure to elevated temperatures is commonplace. This alloy typically maintains its mechanical strength and integrity at temperatures exceeding 1000°C (1832°F).
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