Home > Nickel Alloy > Nickel Alloy 200 Tubing
Nickel Alloy 200 tubing are essential components custom-built primarily from pure nickel, often alloyed with small amounts of other elements like copper. famous for their exceptional corrosion resistance, high thermal conductivity, and superb electrical conductivity, these tubes find needed utility across diverse industries such as chemical processing, electronics, and marine engineering. Their reliability in withstanding corrosive environments and extreme temperatures makes them essential in critical applications such as chemical reactors and electrical components, where durability and performance are paramount.
| ASTM B161 Alloy 200 Tubing Standards | ASTM B161/ ASME SB161, ASTM B725/ ASME SB725 |
|---|---|
| ASTM B161 Alloy 200 Seamless Tube Size | 3.35 mm OD To 101.6 mm OD |
| ASTM B161 Alloy 200 Welded Tube Size | 6.35 mm OD To 152 mm OD |
| ASTM B725 Nickel 200 Tubing Swg & Bwg | 10 Swg., 12 Swg., 14 Swg., 16 Swg., 18 Swg., 20 Swg. |
| Inconel WERKSTOFF NR. 2.4066 Tube wall thickness | 0.020″ –0.220″, (special wall thicknesses available) |
| Inconel UNS N02200 Tubing Length | Single Random, Double Random, Standard & Cut length Tube |
| Inconel WERKSTOFF NR. 2.4066 Tubing Finish | Polished, AP (Annealed & Pickled), BA (Bright & Annealed), MF |
| Form | ‘U’ bent, Hollow, Hydraulic, LSAW, Boiler, Straight Tube, Tube Coil, Round, Rectangular, Square Etc |
| Types of Nickel NW 2200 Tubing | Seamless, ERW, EFW, Welded, Fabricated Tube / Tubing |
| Nickel NW 2200 Tube End | Plain End, Beveled End, Treaded Tube |
| Marking | All ASTM B161 Nickel 200 Tubing are marked as follows: Standard, Grade, OD, Thickness, Length, Heat No. (Or according to the customer’s request.) |
| Application & uses of Nickel 200 Tube | Oil Tube, Gas Tube, Fluid Tube, Boiler Tube, Heat exchanger Tube, |
| Value Added Service | Draw & Expansion as per required Size & Length, Polish (Electro & Commercial) Annealed & Pickled Bending, Machining Etc. |
| Specialize in | ASTM B161 Nickel 200 Capillary Tube & Other Odd Size Nickel NCF 200 Heat Exchanger & Condenser Tube |
| Test Certificate | Manufacturer Test Certificate Laboratory Test Certificate from Govt. Approved Lab. Under Third Party Inspection |
| Manufacturers of Nickel 200 Tube |
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| We can also cut, thread, and groove Nickel NCF 200 Tube to meet your specifications. Nickel 200 Tube Dimension ANSI/ ASME B36.10, B36.19, B2.1 | |
| Nickel | 99.0 min |
| Iron | 0.40 max |
| Sulfur | 0.01 max |
| Carbon | 0.15 max |
| Manganese | 0.35 max |
| Silicon | 0.35 max |
| Copper | 0.25 max |
| Annealed | MPA | |
| Yield Strength (0.2% offset) psi | 15,000 | 103 |
| Tensile Strength | 55 | 379 |
| Elongation % | 40 |
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We offer These Nickel Alloy 200 Tubing as per DIN, ISO, JIS or ANSI Standard.
Corrosion Resistance: Nickel Alloy 201 is known for its excellent corrosion resistance in a variety of environments including alkaline solutions, salt water and acidic environments Consider the type of corrosion your tubing will undergo and make sure Nickel Alloy 201 is suitable for that the situation.
Temperature Resistance: Determine the temperature at which your tubing will operate. Nickel alloy 201 has excellent mechanical properties at high and low temperatures, making it suitable for a wide range of applications. However, if your application involves very high temperatures, you may need to consider other nickel alloys that are more heat resistant.
Mechanical properties: Nickel alloy 201 offers excellent mechanical properties, including high tensile strength and good ductility. Determine the equipment requirements of your application to ensure that the tubing can withstand the necessary loads and stresses.
Fabrication Requirements: Consider the ease of fabrication and welding of nickel alloy 201 tubing for your specific application. Nickel alloy 201 can be easily welded using conventional welding techniques, making it suitable for a variety of applications.
Cost Consideration: Check the cost of nickel alloy 201 tubing compared to other materials. Although nickel alloys are generally more expensive than some other materials, the excellent corrosion resistance and durability of nickel alloy 201 can justify the investment in certain materials worth it
Availability and Supplies: Ensure that the nickel alloy 201 tubing is readily available from reliable suppliers in order to meet your specifications and requirements Consider the stability of the supply chain and the potential timing of your pipeline.
Nickel Alloy 200 Tubing applications are as diverse as the industries they serve driven primarily by the aerospace, railway, construction and automotive industries with petrochemical, nuclear, medical, Oil & Gas, Chemical, Pharmaceutical, Food & Beverage, Nuclear, Thermal Power plants, Paper and Pulp, marine and mining, etc.
Chemical applications: Nickel alloy 200 tubing is commonly used in chemical plants where resistance to corrosive chemicals such as acids and bases is important. It is used in reactors, heat exchangers, and other process equipment.
Electronics: Due to its high electrical conductivity and corrosion resistance, alloy 200 tubing is used in electronics manufacturing, especially in applications where electrical conductivity is important, such as connectors and copper rods
Heat exchangers: Nickel alloy 200 tubing is suitable for heat exchangers operating in tropical or high-temperature environments, such as refineries and gas stations.
Aerospace: For aerospace applications where components must withstand harsh conditions and environmental corrosion, nickel alloy 200 tubing can be used in fuel lines, hydraulic systems and engine components
Marine applications: The corrosion resistance of seawater makes Alloy 200 tubing suitable for marine applications, including pipeline systems, heat exchangers and desalination plants
Power applications: Alloy 200 tubing is used in power plants, including nuclear power plants, where it is used in heat exchangers, hot water boilers, and other critical applications in
Chemical compatibility: Nickel Alloy 200 is known for its resistance to various corrosive agents, including acids, alkalis and neutral salts. However, it is important to ensure the tubing material is the exact chemical it will encounter in your application matches.
Temperature and Pressure Requirements: Consider the tubing’s temperature and pressure conditions in operation. Nickel alloy 200 has excellent mechanical properties at high and low temperatures, making it suitable for a wide range of applications. Make sure the tubing can withstand your system’s heat and pressure without twisting or failing.
Size and Dimensions: Specify the tubing size, thickness and wall thickness requirements based on your application requirements. Nickel alloy 200 tubing is available in various shapes and sizes, including round, square and rectangular, so choose the one that best suits your needs.
Construction Requirements: Consider specific construction requirements such as bending, welding, or machining. Nickel Alloy 200 is easy to manufacture and weld using conventional methods. Still, ensuring that the tubing can be manufactured in the shape and configuration you desire for your application is important.
Cost Considerations: Compare the cost of nickel alloy 200 tubing to other materials and consider the cost over the entire life of the tubing, including installation, maintenance, and replacement costs.
Nickel Alloy 200 tubing is typically sized based on its outside diameter (OD) and wall thickness, commonly expressed in inches or millimeters. Standard sizes range from small diameters for precision applications to larger diameters for industrial use, offering versatility in various heat and corrosion-resistant applications.
Nickel Alloy 200 Tubes typically don’t require corrosion protection coatings due to their inherent resistance to corrosion in various environments, including acids and alkalis. However, coatings may be used for specific applications or to enhance other properties such as wear resistance or thermal insulation.
Nickel Alloy 200 Tubes exhibit excellent resistance to high temperatures and thermal expansion, making them suitable for various high-temperature applications such as chemical processing, aerospace, and power generation. They maintain mechanical properties at elevated temperatures and offer good thermal conductivity, making them ideal for demanding environments.
Yes, Nickel Alloy 200 Tubes can be welded using common welding techniques such as gas tungsten arc welding (GTAW) or gas metal arc welding (GMAW). However, proper pre- and post-weld heat treatments are recommended to minimize the risk of cracking and ensure optimum performance of the welded joints.
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