Nickel 201 is a commercially pure wrought nickel alloy that exhibits exceptional corrosion resistance properties, making it a popular choice for various industrial applications. In particular, Nickel 201 pipes play a crucial role in diverse industries due to their unique combination of attributes, including resistance to corrosive environments, high thermal conductivity, and excellent mechanical properties.
Chemical Composition of Nickel 201 Pipes:
Nickel 201 is a solid-solution alloy, with a nickel content of at least 99.6%. The alloy also contains small amounts of other elements, including iron, copper, manganese, carbon, silicon, and sulfur. These trace elements contribute to the alloy's mechanical and thermal properties, enhancing its overall performance in specific applications.
Corrosion Resistance of Nickel 201 Pipes:
One of the standout features of Nickel 201 pipes is their exceptional corrosion resistance. This property makes them highly suitable for applications where exposure to corrosive environments is a concern. The alloy's resistance to various corrosive agents, including acids and alkalis, makes it an ideal choice for chemical processing, petrochemical, and pharmaceutical industries.
High-Temperature Applications of Nickel 201 Pipes:
Nickel 201 pipes are well-suited for high-temperature applications due to their ability to maintain strength and stability at elevated temperatures. This makes them suitable for applications such as heat exchangers, where the pipes are subjected to challenging thermal conditions. The alloy's resistance to thermal expansion and contraction further enhances its performance in such environments.
Mechanical Properties of Nickel 201 Pipes:
Nickel 201 exhibits excellent mechanical properties, including high tensile strength, good ductility, and low hardness. These properties make Nickel 201 pipes easy to form and fabricate, allowing for the creation of complex shapes and structures. The alloy's malleability also contributes to its versatility in manufacturing processes.
Applications of Nickel 201 Pipes:
The versatility of Nickel 201 pipes makes them indispensable in various industries. They are commonly used in chemical processing plants for transporting corrosive chemicals, in power generation facilities for heat exchangers, and in aerospace applications where high temperature and corrosion resistance are critical. Additionally, Nickel 201 pipes find applications in the production of electronics, where their thermal conductivity and resistance to corrosion are highly valued.
Fabrication and Welding:
Nickel 201 pipes are known for their ease of fabrication and welding. The alloy can be readily welded using various techniques, including gas tungsten arc welding (GTAW) and gas metal arc welding (GMAW). This welding versatility contributes to the ease of manufacturing complex structures and ensures the integrity of the pipes in diverse applications.
Tricon Steel and Alloys, based in Mumbai, India, stands as a leading manufacturer and supplier of top-quality Nickel 201 Pipes. Specializing in the production of high-performance alloys, our Nickel 201 Pipes exemplify excellence in corrosion resistance, making them ideal for diverse industrial applications. With a commitment to precision engineering, we ensure that our pipes meet stringent quality standards, providing reliability in the face of corrosive environments and high temperatures. Trust Tricon Steel and Alloys for superior Nickel 201 Pipes that deliver durability and performance, meeting the evolving needs of industries such as chemical processing, power generation, and aerospace. Your satisfaction is our priority.
Pipe Specifications | ASTM B161 / ASME SB161 |
Tube Specifications | ASTM A725, B730 / ASME SA725, SB725 |
Dimensions | ANSI/ASME B36.19M, ANSI/ASME B36.10M |
Seamless Pipe & Tube Size | 1/2″ NB – 16″ NB |
Welded Pipe & Tube Size | 1/8″NB TO 30″NB IN |
EFW Pipe & Tube Size | 6″ NB – 24″ NB |
Tube Outside Diameter | 6.00 mm OD up to 914.4 mm OD, Sizes up to 24” NB available Ex-stock, OD Size Steel Tubes available Ex-stock |
Thickness | 0.35 mm – 50 mm |
Specialized in | Large Diameter Pipe Size |
Schedule | SCH5, SCH10, SCH20, SCH30, SCH40, STD, SCH80, SCH 80S, SCH60, SCH80, SCH120, SCH140, SCH160, SCH XXS, SCH XS |
Type | Seamless Pipes, ERW Pipes, Welded Pipe, Fabricated Pipes, Electro polished Pipe, Polished Pipe, Hollow Pipes |
Form | Round, Square, Hydraulic, U Shape, Rectangular, Pan Cake Coils, Coiled, Hex, Honed, Etc |
Length | Single Random, Double Random & Required Length. |
End | Plain End, Beveled End, Treaded End |
The Rolling and Welding Stage
To begin our process, we first need to go through the rolling and welding stage. The stainless steel is placed through a checking process and cut at the edges in this stage.
Cleaning and Warming Stage
The rolled stainless steel pipes thus manufactured are cut to the required lengths depending upon the industrial demand.
Cold-Drawing Stage
Sometimes, the required size isn’t obtained when the steel is brought through the mill directly. When using the cold-drawing process, the desired size is achieved when the pipes and tubing are coated with oxalic and soap solution and dragged over die plugs—the oxalic and soap solution help reduce friction when going through the cold cycle.
The Finishing Process
The final process is the finisher. Once the process of manufacturing stainless steel pipes and tubing is completed, you’ll now have to take them to a jet printer.
STANDARD | UNS | WNR. | AFNOR | EN | JIS | BS | GOST |
Nickel 201 | N02201 | 2.4068 | - | LC-Ni 99 | NW 2201 | NA 11 | НП-2 |
Grade | C | Mn | Si | S | Cu | Fe | Ni |
Nickel 201 | 0.02 max | 0.35 max | 0.35 max | 0.01 max | 0.25 max | 0.40 max | 99.0 min |
Element | Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
Nickel 201 | 8.9 g/cm3 | 1446 °C (2635 °F) | Psi – 67000 , MPa – 462 | Psi – 21500 , MPa – 148 | 45 % |
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