Ajou University repository

Powder Metallurgy
ISSN
  • E1743-2901
  • P0032-5899
Publisher

Maney Publishing

Listed on
(Coverage)

JCR1997-2023

SJR1999-2020;2022-2023

CiteScore2011-2023

SCI2010-2019

SCIE2010-2024

CC2016-2024

SCOPUS2017-2024

Active
Active

based on the information

  • SCOPUS:2024-10
Country
ENGLAND
Aime & Scopes
Powder Metallurgy is an international journal publishing peer-reviewed original research on the science and practice of powder metallurgy and particulate technology. Coverage includes metallic particulate materials, PM tool materials, hard materials, composites, and novel powder based materials. In addition to structural applications, the journal welcomes submissions on biomaterials, energy materials, electronic and other functional materials, membranes and porous materials fabricated via a powder route. All aspects of the process are included, from the production and handling of powders, through compaction and consolidation, to the properties, secondary processing, and applications of components.
Article List

Showing results 1 to 6 of 6

Correlation between the nanomechanical characteristic and the phase transformation of BCC-based high entropy alloys produced via powder metallurgyoa mark
  • 2023-01-01
  • Powder Metallurgy, Vol.66 No.5, pp.669-678
  • Taylor and Francis Ltd.
Surface morphology transformation and densification behaviour of conventionally sintered AlFeCoNiSi high entropy alloysoa mark
  • Dewangan, Sheetal Kumar;
  • Nagarjuna, Cheenepalli;
  • Lee, Hansung;
  • Sharma, Ashutosh;
  • Ahn, Byungmin
  • 2023-01-01
  • Powder Metallurgy, Vol.66 No.5, pp.650-661
  • Taylor and Francis Ltd.
Mechanical and thermal expansion behaviour of TiC-reinforced CoCrFeMnNi high entropy alloy prepared by mechanical alloying and spark plasma sinteringoa mark
  • Nagarjuna, Cheenepalli;
  • Dewangan, Sheetal Kumar;
  • Lee, Kwan;
  • Ahn, Byungmin
  • 2023-01-01
  • Powder Metallurgy, Vol.66 No.5, pp.613-622
  • Taylor and Francis Ltd.
Oxidative and abrasive wear of multiphase AlSi0.75TiMnFeCux (X = 0, 0.25, 0.5) high entropy alloy under non-lubricating reciprocating motion
  • 2023-01-01
  • Powder Metallurgy, Vol.66 No.5, pp.623-634
  • Taylor and Francis Ltd.
Microstructure and properties of in-situ Al–Si/Al2O3 composites prepared by displacement reaction
  • 2021-01-01
  • Powder Metallurgy, Vol.64 No.3, pp.192-197
  • Taylor and Francis Ltd.
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