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Alloys like Nickel 200/201 (≥99.6% Ni), Inconel 600/625 (Ni-Cr-Fe), Monel 400 (Ni-Cu), and Hastelloy C276 (Ni-Mo-Cr) are used to make nickel alloy mechanical tubing. These alloys have outstanding ductility, weldability, and impact resistance, and their tensile strengths range from 400 MPa to over 900 MPa. Mechanical tubing made of nickel alloys is resistant to oxidation, pitting, stress corrosion, and cracking, and it can tolerate temperatures as high as 1000°C, depending on the grade. These tubes are appropriate for demanding structural or load-bearing applications in a variety of high-tech industries because they maintain their mechanical integrity even in cryogenic and high-pressure settings.
Nickel Alloy Mechanical Tubing is composed primarily of nickel (up to 99%), with added elements such as chromium, iron, molybdenum, and copper for enhanced properties. It offers excellent corrosion resistance, high strength, and durability, particularly in extreme and harsh temperatures. The tubing exhibits outstanding mechanical properties, including high tensile strength, good ductility, and resistance to stress corrosion cracking. Advantages include its suitability for high-temperature applications, oxidation resistance, and long-lasting performance, making it ideal for aerospace, chemical processing, and power generation industries.
| 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. |
| Nickel Alloy Tubes | Ni | C | Mo | Mn | Si | Fe | P | S | Cu | Cr |
|---|---|---|---|---|---|---|---|---|---|---|
| Alloy 200 Tube | 99.0 min | 0.15 max | – | 0.35 max | 0.1 max | 0.4 max | – | 0.01 max | 0.25 max | – |
| Alloy 201 Tube | Balance | 0.15 max | – | 0.35 max | 0.35 max | 0.40 max | – | 0.01 max | 0.25 max | – |
| Nickel Based Alloys | Density | Melting Point | Yield Strength (0.2%Offset) | Tensile Strength | Elongation |
| Alloy 200/ 201 Tube | 8.9 g/cm3 | 1446 °C (2635 °F) | Psi – 21500 , MPa – 148 | Psi – 67000 , MPa – 462 | 45 % |
We provide products that come with both mill test certificates and third-party test certificates, ensuring the highest standards of quality and compliance.
Choosing Nickel Alloy Mechanical Tubing from Vipul Pipes and Tubes ensures high quality and durability, as this tubing offers excellent corrosion resistance and strength. Our commitment to exceptional service and reliable delivery guarantees customer satisfaction across various industrial applications. Our expertise in nickel alloy products ensures you receive a top-tier solution tailored to your needs.
Vipul Pipes and Tubes, one of the largest suppliers of Nickel Alloy Mechanical Tubing in Chennai, India, offers a comprehensive range of high-quality pipes and tubes suitable for various industrial applications. Our extensive inventory and commitment to exceptional service make us the go-to choice for nickel alloy products in the region.
Yes, we offer custom sizes for Nickel Alloy Mechanical Tubing to meet your specific requirements. Our team at Vipul Pipes and Tubes is committed to providing tailored solutions for all your Piping & tubing needs. For more details, contact us at sales@vipulpipesandtubes.co.in.
In structural applications where strength, resistance to corrosion, and temperature stability are essential, nickel alloy mechanical tubing is utilized. These tubes are essential for parts like shafts, hydraulic lines, heat exchanger shells, drive systems, high-pressure fittings, and structural supports in the aerospace, defense, nuclear, petrochemical, and marine engineering sectors. Chemical reactors and high-performance equipment subjected to harsh operating conditions also depend heavily on these tubes. Nickel alloy tubing’s exceptional machinability and workability make it perfect for complex component fabrication where dimensional accuracy, consistent strength, and resistance to aggressive media are crucial.
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