Sergey V. Ganin
Sergey V. Ganin

Definition of rheological characteristics of mechanical/yalloy edaluminiumpow derathig temperatures

Metallurgy and Materials
  • Year: 2011
  • Issue: 4
  • 0
  • 10313
  • Pages: 168-172

MODELLING THE DEPOSITION PROCESS OF POWDER MATERIAL IN A CAPSULE

Metallurgy and Materials
  • Year: 2015
  • Issue: 3
  • 612
  • 10930
  • Pages: 30-39

STUDY OF THE CONSOLIDATION OF POWDER MATERIALS USING THE ABAQUS SOFTWARE PACKAGE

Metallurgy and Materials
  • Year: 2016
  • Issue: 1
  • 469
  • 11709
  • Pages: 100-110

DETERMINING THE RHEOLOGICAL CHARACTERISTICS AND MODELING THE EXTRUSION OF POWDER AND POROUS MATERIALS. PART 1. POWDER BODY

Metallurgy and Materials
  • Year: 2016
  • Issue: 2
  • 212
  • 10409
  • Pages: 124-133

DETERMINING THE RHEOLOGICAL CHARACTERISTICS AND MODELING THE EXTRUSION OF POWDER AND POROUS MATERIALS. PART 2. POROUS BODY

Metallurgy and Materials
  • Year: 2016
  • Issue: 2
  • 281
  • 10595
  • Pages: 134-133

DETERMINING THE RHEOLOGICAL CHARACTERISTICS AND MODELING THE EXTRUSION PROCESS OF POWDER AND POROUS MATERIALS. PART 3: THE HOT EXTRUSION PROCESS

Metallurgy and Materials
  • Year: 2016
  • Issue: 4
  • 139
  • 10014
  • Pages: 182-190

ALUMINUM — CARBON NANOFIBERS COMPOSITE COATING PRODUCED BY COLD SPRAYING

Metallurgy and Materials
  • Year: 2016
  • Issue: 3
  • 138
  • 10545
  • Pages: 81-88

MECHANICAL PROPERTIES OF BILLETS PRODUCED BY HOT EXTRUSION OF MAGNESIUM CHIPS

Metallurgy and Materials
  • Year: 2018
  • Volume: 24
  • Issue: 4
  • 27
  • 10012
  • Pages: 169-184

EFFECT OF FOAMING TECHNOLOGY ON THE POROUS STRUCTURE OF DEFORMED FOAM ALUMINUM BLANKS

Metallurgy and Materials
  • Year: 2025
  • Volume: 31
  • Issue: 4
  • 2
  • 558
  • Pages: 105-117