SCIEQ2
High Temperature Corrosion of Materials
SPRINGER
High Temperature Corrosion of Materials is an academic journal published by SPRINGER. Identifiers: ISSN 2731-8397, eISSN 2731-8400. Indexed in SCIE. Metrics: JIF 2.0. Subject areas: METALLURGY & METALLURGICAL ENGINEERING. tlooto lists 390 papers from this journal.
CiteScore
-
Scopus citation metric
SJR
-
SCImago rank
SNIP
-
Source normalized impact
Percentage rank
-
JIF percentile rank
Journal profile
- ISSN
- 2731-8397
- eISSN
- 2731-8400
- Abbreviation
- HIGH TEMP CORR MATER
- Publisher
- SPRINGER
- Country
- -
Web of Science categories
SCIEMETALLURGY & METALLURGICAL ENGINEERING
Scopus ASJC categories
No ASJC category data available.
Keywords
Metallurgy & Metallurgical Engineering
Papers in this journal
Recent papers
- Insights into the Selective Oxidation of Cr in Fe-Cr-Ni Alloys Under Extra Low Oxygen Partial Pressure: Experimental and First-Principles Study
2026
- Effect of Hf on the Self-Healing Property of the Alumina Film on AFA Alloy in a Decoking Environment
2026
- Microstructural Characteristics and Corrosion Behavior of Laser Cladding Coatings for Aircraft Component Repair as an Alternative to Electroplated Hard Chromium Coating
2026
- Selective Corrosion of Haynes 230 in Liquid Sn at 700 ℃: Alternating Bands of Cr-rich Zones and Ni–Sn Intermetallic Compounds
2026
- Compared SIMS and NanoSIMS Analyses of Duplex Oxide Layers Growth After Sequential Oxidation Tests Using Oxygen Isotope Tracers
2026
Most cited papers
- An Overview of Mechanisms of the Degradation of Promising ATF Cladding Materials During Oxidation at High Temperatures
2024 · 31 citations
- Evaluating Wagner Oxidation Criteria for Protective Al2O3 Scale Formation in Ni-Based Superalloys
2023 · 23 citations
- Anti-corrosive Efficiency of Expired Propranolol Drug as a Corrosion Inhibitor on Mild Steel in Acid Medium
2024 · 21 citations
- High Temperature Corrosion Resistant and Anti-slagging Coatings for Boilers: A Review
2024 · 18 citations
- Comparison of Cycling High Temperature Corrosion at 650°C in the Presence of NaCl of Various Austenitic Stainless Steels
2022 · 16 citations