Plasma Spheroidization of Micropowders of the Heat-Resistant Alloys Based on Nickel Monoaluminide

 
PIIS086956520003276-6-1
DOI10.31857/S086956520003276-6
Publication type Article
Status Published
Authors
Affiliation: Baikov Institute of Metallurgy and Materials Science, RAS
Address: Russian Federation
Affiliation: Baikov Institute of Metallurgy and Materials Science, RAS
Address: Russian Federation
Affiliation: Baikov Institute of Metallurgy and Materials Science, RAS
Address: Russian Federation
Affiliation: Baikov Institute of Metallurgy and Materials Science, RAS
Address: Russian Federation
Affiliation: Baikov Institute of Metallurgy and Materials Science, RAS
Address: Russian Federation
Affiliation: National University of Science and Technology MISiS
Address: Russian Federation
Journal nameDoklady Akademii nauk
EditionVolume 483 Issue 4
Pages407-412
Abstract

  

Keywords
Received21.12.2018
Publication date21.12.2018
Number of characters493
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1. Campbell F.C. Manufacturing Technology for Aerospace Structural Materials.: Elsevier, 2011. 616 p.

2. Bochenek K., Basista M. Advances in Processing of NiAl Intermetallic Alloys and Composites for High Temperature Aerospace Applications // Progress in Aerospace Sci., 2015. V. 79. P. 136–146.

3. Zajtsev A.A., Sentyurina Zh.A., Pogozhev Yu.S. i dr. Poluchenie litykh ehlektrodov iz nanomodifitsirovannogo vysokoboristogo splava na osnove alyuminida nikelya dlya izgotovleniya sfericheskikh granul metodom tsentrobezhnogo raspyleniya. // Izv. vuzov. Tsvet. metallurgiya. 2015. No 4. S. 15–24.

4. Yang, L., Hsu, K., Baughman, B., et al. Additive Manufacturing of Metals: The Technology, Materials, Design and Production. Springer Series in Advanced Manufacturing. V, Springer Intern. Publ., 2017,168 p.

5. Vert R., Pontone R., Dolbec R., Dionne L., Boulos M.I. Induction Plasma Technology Applied to Powder Manufacturing: Example of Titanium-Based Materials. 22nd International Symposium on Plasma Chemistry. July 5–10, 2015. Antwerp, 2015. P-II-7-32.

6. Boulos M. Plasma Power Can Make Better Powders // Metal Powder ReP. 2004.Vol. 59. Iss. 5, P. 16–21.

7. Zaitsev A.A., Sentyurina Zh.A., Levashov E.A., et. al. Structure and Properties of NiAl-Cr(Co,Hf) Alloys Prepared by Centrifugal SHS Casting. Part 1 – Room Temperature Investigations // Materials Sci. & Eng. A. 2017, V. 690, P. 463–472.

8. Zaitsev A.A., Sentyurina Zh.A., Levashov E.A., et. al. Structure and Properties of NiAl-Cr(Co,Hf) Alloys Prepared by Centrifugal SHS Casting Followed by Vacuum Induction Remelting. P.2. Evolution of the Structure and Mechanical Behavior at High Temperature // Materials Sci. & Eng. A, 2017, 690. P. 473–481.

9. Particle Size Analysis – Data Correlation between Analytical Methods. 2012. Horiba Particle Characterization. https://www.azonano. com/article.aspx? ArticleID=3099

10. Paul A. Webb. Interpretation of Particle Size Reported by Different Analytical Techniques. Micromeritics Instrument CorP. http://www.micromeritics.com/pdf/mas/interpretation%20of%20particle%20size%20by%20different%20techniques.pdf

11. Hogg. R. Issues in Particle Size Analysis. KONA Powder and Particle J. 2008, No 26. P. 81–93.

12. Kaplanskii Yu.Yu., Zaitsev A.A., Levashov E.A., et.al. NiAl Based Alloy Produced by HIP and SLM of Pre-Alloyed Spherical Powders. Evolution of the Structure and Mechanical Behavior at High Temperatures // Materials Sci. and Eng. A. 2018. V.717, P. 48–59.

13. Kaplanskii Yu.Yu., Korotitskiy A.V., Levashov E.A., Sentyurina Zh.A., Loginov P.A., Samokhin A.V., Logachev I.A. Microstructure and Thermomechanical Behavior of Heusler Phase Ni2AlHf- Strengthened NiAl-Cr(Co) Alloy Produced by HIP of Plasma-Spheroidized Powder. // Materials Sci. & Eng. A. 2018. V. 729, P. 398–410.

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