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MU5040 Molybdenum Nickel Alloy Powder (Ni80Mo20)

Catalog No. MU5040
Compositions Mo, Ni
Purity 99%
Appearance Silver powder
Particle Size 40~50μm or customized

Molybdenum Nickel Alloy Powder (Ni80Mo20) is a high-quality and versatile alloy powder with a composition of 80% nickel (Ni) and 20% molybdenum (Mo). Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality Molybdenum Nickel Alloy Powder (Ni80Mo20).

Related products: Ni10Mo90, Ni50Mo50, Ni84Mo16

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Molybdenum Nickel Alloy Powder, Ni80Mo20
Molybdenum Nickel Alloy Powder, Ni80Mo20
Molybdenum Nickel Alloy Powder, Ni80Mo20
Molybdenum Nickel Alloy Powder, Ni80Mo20
Molybdenum Nickel Alloy Powder, Ni80Mo20
Molybdenum Nickel Alloy Powder, Ni80Mo20
Description
Specification

Molybdenum Nickel Alloy Powder (Ni80Mo20) Description

Molybdenum Nickel Alloy Powder (Ni80Mo20) is a refractory alloy powder with good physical and mechanical properties. The small amount of Mo slightly improves the high-temperature strength and stability of Molybdenum Nickel Alloy. A large amount of Ni gives this alloy good ductility and corrosion resistance. Ni80Mo20 is very similar to pure Ni powder but with a high working temperature.

Molybdenum Nickel Alloy Powder (Ni80Mo20) Specifications

Content

Ni 80%, Mo 20%

Particle Size

40~50μm or customized

Purity

99%

Morphology

Spherical

Melting Point ()

1560

Density (g/cm3)

9.2

 

 

Molybdenum Nickel Alloy Powder (Ni80Mo20) Applications

  • Aerospace Components: Molybdenum Nickel Alloy Powder is used in the production of aerospace components such as turbine blades, nozzles, and rocket engine parts, where its high-temperature strength and resistance to thermal fatigue are crucial.
  • Electrical and Electronic Components: With its excellent electrical conductivity and thermal properties, Ni80Mo20 is suitable for electrical contacts, connectors, and electrodes in electronic devices, power transmission systems, and electrical discharge machining (EDM).
  • Heat Sinks and Thermal Management: The high thermal conductivity and corrosion resistance make Ni80Mo20 ideal for heat sinks, heat exchangers, and thermal management components in electronics, automotive, and power generation systems.
  • Chemical Processing: The corrosion resistance and robust mechanical properties make Ni80Mo20 suitable for use in chemical processing equipment, such as reactors, catalysts, and high-temperature furnace components.
  • Medical and Dental Applications: Molybdenum Nickel Alloy Powder is suitable for certain medical and dental applications, including orthopedic implants, surgical instruments, and dental prosthetics.

Molybdenum Nickel Alloy Powder (Ni80Mo20) Packaging

Our Molybdenum Nickel Alloy Powder (Ni80Mo20) is carefully handled during storage and transportation to preserve the quality of our product in its original condition.

Molybdenum Nickel Alloy Powder (Ni80Mo20) FAQ

  1. What is Molybdenum Nickel Alloy Powder (Ni80Mo20)?

Molybdenum Nickel Alloy Powder (Ni80Mo20) is a refractory metal alloy consisting of 80% nickel and 20% molybdenum. This alloy is known for its excellent high-temperature strength, corrosion resistance, and superior mechanical properties, making it suitable for demanding industrial applications.

  1. What are the main properties of Ni80Mo20 alloy?

High strength and stability due to the high nickel content.

Good high-temperature strength for applications in extreme conditions.

Enhanced corrosion resistance thanks to the combination of nickel and molybdenum. Improved ductility and toughness, making it ideal for complex forming processes and high-performance applications.

  1. What are the typical applications of Ni80Mo20 alloy?

Ni80Mo20 is commonly used in industries requiring both high strength and corrosion resistance, including:

Aerospace and aviation for components exposed to high stresses and temperatures. Chemical processing for parts that must withstand harsh chemicals and environments. Electronics for high-temperature applications.

Energy and power generation for components exposed to heat, such as turbines, reactors, and heat exchangers.

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