Nickel Alloy 201 Forgings

Aiman Metals, Kuala Lumpur, Malaysia, is a well-known manufacturer and supplier of high-quality Nickel Alloy 201 Forgings. Dedicated to precision engineering and unparalleled quality, we provide forgings engineered to satisfy the exacting requirements of industries like chemical processing, marine engineering, and power generation. Our Nickel Alloy 201 products are valued for their exceptional corrosion resistance, thermal stability, and long-term durability, even in the harshest operating environments. Meeting stringent international quality standards, these forgings ensure consistent and reliable performance, making Aiman Metals a trusted partner for innovative solutions and superior forging expertise worldwide.

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Nickel Alloy 201 Hot Forging

Nickel Alloy 201 Open Die Forging

Nickel Alloy 201 Closed Die Forging

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What is Nickel Alloy 201 Forgings?

Nickel Alloy 201 Forgings consist of nearly 99% pure nickel along with tiny amounts of iron, manganese, and carbon, providing superb chemical purity. They are characterized by superior mechanical properties, such as tensile strength, good ductility, and high thermal conductivity. They have great corrosion resistance, especially in acidic and alkaline conditions, and they are stable under both high-temperature and low-temperature conditions. Other benefits include superior weldability, resistance to stress corrosion cracking, and prolonged service life. Such properties make Nickel Alloy 201 a great choice for demanding industrial applications where mechanical integrity and chemical stability are needed.

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Forgings

Nickel Alloy 201 Forgings Specification

Specifications ASTM B564, ASME SB564
Standard BS 3072, BS 3073, BS 3074, BS 3075, BS 3076, NA11 DIN 17740, 17750, 17751, 17752, 17753, 17754, DIN, ASTM, BS and all International Standards
Flat bar blocks up to 27″ width and 15,000 lbs
Cylinders and sleeves up to 50″ maximum O.D. and 65″ maximum length
Discs and hubs up to 50″ diameter and 20,000 lbs
Rolled, hand forged or mandrel forged rings up to 84″ maximum O.D. and 40″ maximum length
Rounds, shafts and step shafts up to 144″ maximum length and 20,000 lbs
Forging Types Impression Die Forging, Open Die Forging, Seamless Rolled Forging, Hot Forging, Cold Forging, Open die hammer forging, Impression die drop forging, Closed Die Forging, Press Forging, Upset Forging, Compression Forging, Swaging, Rotary Forging, Roll forging.

Chemical Compositions of Nickel Alloy 201 Forgings

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

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Why Aiman Metals?

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Nickel Alloy 201 Forgings Mechanical Properties

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 %

Nickel Alloy 201 Forgings Equivalent Grades

STANDARD WERKSTOFF NR. UNS JIS BS GOST AFNOR EN
Nickel 201 2.4068 N02201 NW 2201 NA 12 НП-2 LC-Ni 99

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Nickel Alloy 201 Forgings Types

Nickel Alloy DIN 2.4068 Upset Forging
Nickel Alloy 201 Impression Die Drop Forging
Nickel Alloy 201 Press Forging
Nickel Alloy 201 Machined Hot Forgings
Nickel Alloy 201 Compression Forging
ASME SB564 Nickel Alloy 201 Forgings

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Frequently Asked Questions (FAQ)

Yes, Nickel Alloy 201 can be forged into custom shapes. Its excellent ductility and malleability make it ideal for creating tailored components to meet specific design and application requirements.

Post-forging operations for Nickel Alloy 201 typically include heat treatment to enhance mechanical properties, machining for precision shaping, and surface finishing to ensure corrosion resistance and optimal performance.

To determine if Nickel Alloy 201 forgings meet your needs, evaluate their chemical composition, mechanical properties, and corrosion resistance against your application requirements. Consulting with experts or suppliers can ensure the material's suitability.

Nickel Alloy 201 Forgings Uses

Nickel Alloy 201 Forgings are extensively applied in industries that demand corrosion resistance, chemical purity, and thermal stability. In the chemical processing industry, they find their use in heat exchangers, reactors, and storage tanks as a result of their compatibility with acidic and alkaline media. They find their application in seawater systems, pumps, and other parts facing saline environments in the marine sector. In power generation, they are used in turbine components, fuel cells, and other high-performance equipment. Their capacity to operate both in very high and low temperatures, as well as corrosive environments, renders them adaptable to a number of industrial and engineering uses.

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