I M Milyaev


Ontology type: schema:Person     


Person Info

NAME

I M

SURNAME

Milyaev

Publications in SciGraph latest 50 shown

  • 2018-10 Phase Composition of Powder Hard Magnetic Fe–30Cr–(8–24)Co Alloys Sintered under Different Temperature Conditions in DOKLADY PHYSICAL CHEMISTRY
  • 2018-08 Formation of Physical Properties in Magnetic Materials of the Rotors of Highspeed and Ultra-Highspeed Electromechanical Energy Converters in BULLETIN OF THE RUSSIAN ACADEMY OF SCIENCES: PHYSICS
  • 2018-05 Magnetic Hysteresis and Mechanical Properties of Hard Magnetic Fe–27Cr–15Co–2Mo–Si–Ti–V Alloy in INORGANIC MATERIALS: APPLIED RESEARCH
  • 2018-03 Magnetic Hysteretic and Mechanical Properties of a 31Kh20K3M Alloy with an Increased Carbon Content in RUSSIAN METALLURGY (METALLY)
  • 2018-02 Nanomagnetic Materials for the Rotors of Highspeed and Ultra-Highspeed Electromechanical Energy Converters in BULLETIN OF THE RUSSIAN ACADEMY OF SCIENCES: PHYSICS
  • 2017-10 Improvement of magnetic properties by hot rolling of sintered powder alloy in the Fe–Cr–Co system in DOKLADY PHYSICAL CHEMISTRY
  • 2017-01 Magnetic Properties of Hard Magnetic Alloy Fe – 28% Cr – 13.4% Co – 2% Mo – 0.5% Si in METAL SCIENCE AND HEAT TREATMENT
  • 2017-01 Magnetic and Mechanical Properties of Hard Magnetic Alloys 30Kh21K3M and 30Kh20K2M2V in METAL SCIENCE AND HEAT TREATMENT
  • 2014-09 The effect of surfactant admixture during milling on pressing, sintering, and magnetic properties of FeCrCoMoW alloy in INORGANIC MATERIALS: APPLIED RESEARCH
  • 2014-07 Mechanical activation of a hard magnetic Fe-Cr-Co alloy powder charge in RUSSIAN METALLURGY (METALLY)
  • 2012-01 Kinetics of σ-phase formation in a strain aging hard magnetic Fe-33% Cr-12% Co-2% Cu alloy in RUSSIAN METALLURGY (METALLY)
  • 2010-11 Kinetics of the σ-phase formation in Fe-Cr-Co hard magnetic alloys in RUSSIAN METALLURGY (METALLY)
  • 2010-05 Effect of uniaxial deformation on the structure and hysteresis magnetic characteristics of a hard magnetic alloy Fe-22% Cr-15% Co in RUSSIAN METALLURGY (METALLY)
  • 2009-06 Mechanism of formation of the high-coercivity state in nanostructured hard magnetic Fe-Cr-Co and Fe-Ni-Al-Co-Cu alloys in RUSSIAN METALLURGY (METALLY)
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