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VDM® Powder X

VDM® Powder X

VDM® Powder X

Product catalog summary
Introduction
VDM® Powder X is a nickel-chromium-molybdenum-iron alloy powder with cobalt and tungsten additions, known for its spherical particles, high purity, and low oxygen content. It offers excellent oxidation resistance up to 1,200 °C (2,190 °F), high-temperature strength, and good resistance to stress corrosion cracking.

Designations and Standards
VDM® Powder X is designated under several standards, including EN 2.4665, ISO NiCr21Fe18Mo9, UNS N06002, and AFNOR NC22FeD.

Chemical Composition
The chemical composition includes Nickel (balance), Chromium (20.5-23.0%), Iron (17.0-20.0%), Molybdenum (8.0-10.0%), Cobalt (0.5-2.5%), Tungsten (0.2-1.0%), Carbon (0.5-1.0%), Silicon (up to 1.0%), Magnesium (up to 0.04%), Phosphorus (up to 0.03%), and low oxygen content (up to 0.03%).

Physical Properties
Density is 8.3 g/cm3 at 20 °C, with a melting range of 1,260 – 1,355 °C. The microstructure is face-centered cubic.

Corrosion Resistance
Corrosion resistance is influenced by processing and heat treatment. VDM® Alloy X shows excellent oxidation resistance up to 1,200 °C and is resistant in carburizing and nitriding atmospheres.

Applications
VDM® Powder X is used in high-temperature applications such as industrial and aircraft gas turbines, industrial furnace parts, petrochemical furnace pigtails, and high-temperature gas-cooled nuclear reactors.

Availability
Available in particle fractions from 15 to 250 µm, with standard fractions of 15-53 µm and 53-150 µm. Additional fractions are available upon request.

Legal Notice
The information is based on research by VDM Metals International GmbH and is subject to change. It does not guarantee specific properties and is provided without liability.
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Catalog excerpts

VDM® Powder X-1

Material Data Sheet No. 2003 July 2019

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VDM® Powder X-2

July 2019 VDM® Powder X 2 VDM® Powder X is the powder variant of a nickel-chromium-molybdenum-iron alloy with cobalt and tungsten additions. • Spherical particles • High purity • Low oxygen content VDM® Powder X is characterized by: • Excellent oxidation resistance up to 1,200 °C (2,190 °F) • High-temperature strength • Good resistance to stress corrosion cracking Designations and standards (based on VDM® Alloy X) Table 1 - Designations and standards Table 2 - Chemical composition (%) VDM® Powder X contains low amounts of oxygen of up to 0.03%.

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VDM® Powder X-3

July 2019 VDM® Powder X 3 Density Melting range Microstructural properties VDM® Powder X has a face-centered cubic structure. The corrosion resistance depends on the processing and heat treatment of the material. The conventionally produced VDM® Alloy X usually shows excellent oxidation resistance up to 1,200 °C (2,190 °F) and can be used in neutral as well as in reducing atmospheres. VDM® Alloy X is resistant in carburizing and nitriding atmospheres. Due to its corrosion resistance in various atmospheres up to very high temperatures, and excellent high-temperature strength, VDM® Powder X finds...

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VDM® Powder X-4

Availability According to the AM process requirements of our customers, VDM® Powder X is available in a wide range of particle fractions from 15 to 250 µm. Standard particle fractions Particle size distribution µm Oxygen content % Porosity < 10µ (pore area) % Additional particle fractions are available on request. Please contact us. The picture shows a typical micrograph of VDM® Powder X as an examp

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VDM® Powder X-5

Legal notice July 31, 2019 Publisher VDM Metals International GmbH Plettenberger Straße 2 58791 Werdohl Germany Disclaimer All information contained in this data sheet is based on the results of research and development work carried out by VDM Metals International GmbH and the data contained in the specifications and standards listed available at the time of printing. The information does not represent a guarantee of specific properties. VDM Metals reserves the right to change information without notice. All information contained in this data sheet is compiled to the best of our knowledge and...

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