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Special block from the conference RoPM2017 guest edited by Ionel Chicinas, Technical University, Cluj-Napoca

Synthesis of Invar 36 type alloys from elemental and prealloyed powders by mechanical alloying

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Pages 155-161 | Received 21 Nov 2017, Accepted 25 May 2019, Published online: 06 Jun 2019

References

  • Khalefa NA. Study the magnetic properties of Invar alloys by using high pressure Mössbaur spectroscopy. Int. Journal of Engineering Research and Applications. 2015;5(12):133–136.
  • Guillaume C. Invar. Nature. 1933;131:658. doi: 10.1038/131658c0
  • Mulyukov RR, Kazantsev VA, Mulyukov KY, et al. Properties of Fe-36%Ni Invar with nanocrystalline structure. Rev Adv Mater Sci. 2006;11:116–121.
  • Qiu C, Adkins NJE, Attallah MM. Selective laser melting of Invar 36: microstructure and properties. Acta Mater. 2016;10:382–395. doi: 10.1016/j.actamat.2015.10.020
  • Al-Dabbagh JB, Al-Faluji IK, Bin Hashim Y. Thermal expansion in ferromagnetic Fe–Ni INVAR alloy. Int J Eng Sci. 2012;1:48–51.
  • Kim SH, Choi SG, Choi WK, et al. Surface characteristics of Invar alloy according to micro-pulse electrochemical machining. Mater Technol. 2017;51(5):745–749.
  • Acet M, Schneider T, Zähres H, et al. Anti-Invar in Fe–Ni. J Appl Phys. 1994;75:7015–7017. doi: 10.1063/1.356761
  • Kveglis LI, Noskov FM, Kazantseva VV, et al. Fe–Mn–C alloys with anomalous volume of crystal lattice. Bull Russ Acad Sci Phys. 2008;72:1169–1171. doi: 10.3103/S1062873808080431
  • Boudinar N, Djekoun A, Chebli A, et al. X ray diffraction and Mossbauer spectrometry investigation of Invar nanoparticles produced by mechanical alloying. Int J Nanoelectron Mater. 2010;3:143–153.
  • Gorria P, Martinez-Blanco D, Blanco JA, et al. Neutron powder thermo-diffraction in mechanically alloyed Fe64Ni36 invar alloy. J Alloy Compd. 2010;495:495–498. doi: 10.1016/j.jallcom.2009.10.112
  • Prica˘ CV, Neamţu BV, Popa F, et al. Invar-type nanocrystalline compacts obtained by spark plasma sintering from mechanically alloyed powders. J Mater Sci. 2017; doi:10.1007/s10853-017-1771-5.
  • Wu D, Wu S-P, Yang L, et al. Preparation of Cu/Invar composites by powder metallurgy. Powder Met. 2014;58:100–105. doi: 10.1179/1743290114Y.0000000098
  • Spârchez Z, Chicinaş I, Isnard O, et al. Mechanical alloying of Ni3Fe in the presence of Ni3Fe nanocrystalline germs. J Alloy Compd. 2007;434:485–488. doi: 10.1016/j.jallcom.2006.08.114
  • Prica˘ CV, Marinca TF, Popa F, et al. Synthesis of nanocrystalline Ni3Fe powder by mechanical alloying using an extreme friction mode. Adv Powder Technol. 2016;27:395–402. doi: 10.1016/j.apt.2016.01.018
  • Korotaev AD, Koneva NA, Levina VB. Some regularities of the fracture of ordered alloys based on Ni3Fe. Russ Phys J. 1971;14(6):745–750.
  • Hasegawa H, Kanamori J. Calculation of electronic structure of Ni base fcc ferromagnetic alloys in coherent potential approximation. J Phys Soc Jpn. 1972;33(6):1599–1606. doi: 10.1143/JPSJ.33.1599
  • Brown PJ, Neumann KU, Ziebeck KRA. The temperature dependence of the magnetization distribution in Fe65Ni35 invar: incompatibility of the two-state model. J. Phys. Condens. Matter. 2001;13:1563–1569. doi: 10.1088/0953-8984/13/7/317

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