UNS N06625 Inconel 625 Tube
As a leading supplier and manufacturer in China, GNEE Steel provides cost-effective nickel-based alloy products.
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Inconel 625 Tube is a nickel chromium super alloy pipe that is made up of 58% nickel, 20% chromium, carbon, manganese, silicon, iron, sulfur, aluminum and titanium in the composition. The pipes are highly corrosion resistant. GNEE Steel is a leading manufacturer and supplier of the Inconel 625 Pipe. The material has 517MPa minimum yield strength and 930MPa minimum tensile strength.
Alloy 625 Tubing Specification Schedule
| Thickness | 0.3mm – 50 mm, SCH 5, SCH10, SCH 40, SCH 80, SCH 80S, SCH 160, SCH XXS, SCH XS |
| Outer Diameter | 6.00 mm OD up to 914.4 mm OD, Sizes up to 24" NB |
| Type | Seamless / ERW / Welded / Fabricated / CDW |
| Form | Round Tubes, Square Tubes, Rectangular Tubes, Coiled Tubes, "U" Shape, Pan Cake Coils, Hydraulic Tubes |
| Length | Single Random, Double Random & Required Length |
| End | Plain End, Beveled End, Treaded. |

Characteristics of UNS N06625 Inconel 625 Pipe
Corrosion Resistance
Alloy 625 has excellent corrosion resistance in a wide range of environments, including reducing and oxidizing acids, organic acids, salts, alkalis, and seawater. The high molybdenum content protects against pitting and other forms of localized corrosion.
Elevated Temperature Resistance
The high chromium content in Alloy 625 provides excellent oxidation and scaling resistance at temperatures up to 1800°F (982°C). Additionally, alloy 625 exhibits superior resistance to recurrent heating/cooling cycles.
Mechanical Properties
Alloy 625 is a solid solution alloy strengthened by additions of molybdenum and niobium. It can be provided in the annealed (Grade 1) condition, solution annealed (Grade 2) condition, or strengthened through the pilger process. Alloy 625 has excellent impact toughness at temperatures down to -320°F.
Workability
Alloy 625 has good hot and cold workability in the annealed condition. Hot-working should be done above 1600°F (871°C) to ensure adequate ductility, while cold work is performed below 1200°F (649°C).
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