High Temperature Materials and Processes

Basic Information

Brief Name: HIGH TEMP MAT PR
Impact Factor: 1.6
ISSN: 0334-6455
Research Field: ENGINEERING TECHNOLOGY
h-index: 19
Self-citation Rate: 6.2%
Articles per Year: 58

SCI Index Status: Science Citation Index Expanded
Journal Introduction:

High Temperature Materials and Processes (HTMP) offers an international publication forum for new ideas, insights, and results related to high-temperature materials and processes in science and technology. The journal publishes original research papers, short communications, reviews articles, Topical and Special Issues papers of high-temperature materials and processes. Aims and Scope:  The Editorial Office of HTMP puts emphasis on the multi-disciplinary nature of high-temperature materials and processes for various materials in a variety of states. Subject areas suitable for publication include, but are not limited to, the following: High-temperature applications and behavior of metals and alloys, intermetallic compounds, oxide ceramics, and non-oxide ceramics such as nitrides, carbides, borides, and graphite, Polymers, glasses, glassy metals, composite materials, Oxidation and environmental attack, High-temperature corrosion, Design with high-temperature materials, Processes for achieving high temperature, Processing of materials involving lasers, plasma, and arc sources, Materials and processes involved in using solar energy, Materials in nuclear energy applications, Thermochemistry, Kinetics of reactions, Liquid metal processing, Rapid solidification processes.

CiteScore

CiteScore
2.5
SJR
0.354
SNIP
0.677
Subject Rank Percentile
EngineeringMechanics of Materials
234 / 398 41%

Journal Statistics

1 issue per year
Issues/Year
Review Cycle
€1000 EUR
Article Processing Fee

Submission Information

Related Articles

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Ernesto Ballestero-Martínez, Terrance J. Hadlington, Tibor Szilvási, Shenglai Yao, Matthias Driess

2018-04-16 Communication

DOI: 10.1039/C8CC01928B

Water-soluble pH-switchable cobalt complexes for aqueous symmetric redox flow batteries

Yuqiao Zhou

2020-03-10 Communication

DOI: 10.1039/D0CC00383B

Contents list

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