SCIESCOPUSQ4
Journal of the Japan Institute of Metals and Materials
JAPAN INST METALS & MATERIALS, Japan
Journal of the Japan Institute of Metals and Materials is an academic journal published by JAPAN INST METALS & MATERIALS (Japan). Identifiers: ISSN 0021-4876, eISSN 1880-6880. Indexed in SCIE, SCOPUS. Metrics: JIF 0.4, CiteScore 0.8, SJR 0.224, SNIP 0.40. Subject areas: METALLURGY & METALLURGICAL ENGINEERING. tlooto lists 381 papers from this journal.
CiteScore
0.80
Scopus citation metric
SJR
0.224
SCImago rank
SNIP
0.40
Source normalized impact
Percentage rank
-
JIF percentile rank
Journal profile
- ISSN
- 0021-4876
- eISSN
- 1880-6880
- Abbreviation
- J JPN I MET MATER
- Publisher
- JAPAN INST METALS & MATERIALS
- Country
- Japan
Web of Science categories
SCIEMETALLURGY & METALLURGICAL ENGINEERING
Scopus ASJC categories
2211 Mechanics of Materials2505 Materials Chemistry2506 Metals and Alloys3104 Condensed Matter Physics
Keywords
Metallurgy & Metallurgical Engineering
Papers in this journal
Recent papers
- Molecular Dynamics Simulation of Excessive Vacancy Formation in Rapidly Solidified Al–Cu and Fe–Cr Alloys
2026
- Volatile Separation and Recovery of Ruthenium from Chlorine Evolution Electrodes Using Neodymium Oxide
2026
- Formation Conditions and Microstructure of Structurally Colored Zn–Ni Composite Electrodeposits
2026
- Review―Smelting and Refining Methods of Calcium Metal
2026
- Effect of Layer Thickness, Grain Size, and Surface Roughness on the Color Tone of High-Temperature Oxide Layer on CP Ti
2026
Most cited papers
- Trends of Technological Development of Platinum Group Metal Recycling: Solubilization and Physical Concentration Processes
2021 · 12 citations
- Application of Grain Boundary Segregation Prediction Using a Nano-Polycrystalline Grain Boundary Model to Transition Metal Solute Elements: Prediction of Grain Boundary Segregation of Mn and Cr in bcc-Fe Polycrystals
2021 · 11 citations
- Wettability of Pure Metals with Liquid Sodium and Liquid Tin
2021 · 10 citations
- Modified Cellular Automaton Simulation of Metal Additive Manufacturing
2021 · 9 citations
- Ductility Improvement Mechanism of Pure Titanium with Excessive Oxygen Solid Solution via Rapid Cooling Process
2018 · 9 citations