International Journal of Refractory Metals & Hard Materials

Basic Information

Brief Name: INT J REFRACT MET H
Impact Factor: 4.2
ISSN: 0263-4368
Research Field: ENGINEERING TECHNOLOGY
h-index: 62
Self-citation Rate: 16.7%
Articles per Year: 372

SCI Index Status: Science Citation Index Expanded
Journal Website: https://www.sciencedirect.com/journal/international-journal-of-refractory-metals-and-hard-materials
Journal Introduction:

The International Journal of Refractory Metals and Hard Materials (IJRMHM) publishes original research articles concerned with all aspects of refractory metals and hard materials. Refractory metals are defined as metals with melting points higher than 1800 °C. These are tungsten, molybdenum, chromium, tantalum, niobium, hafnium, and rhenium, as well as many compounds and alloys based thereupon. Hard materials that are included in the scope of this journal are defined as materials with hardness values higher than 1000 kg/mm2, primarily intended for applications as manufacturing tools or wear resistant components in mechanical systems. Thus they encompass carbides, nitrides and borides of metals, and related compounds. A special focus of this journal is put on the family of hardmetals, which is also known as cemented tungsten carbide, and cermets which are based on titanium carbide and carbonitrides with or without a metal binder. Ceramics and superhard materials including diamond and cubic boron nitride may also be accepted provided the subject material is presented as hard materials as defined above. The journal seeks contributions that investigate novel alloy design concepts; studies of the relationships between chemical composition, microstructure, and properties; novel methods of characterization and testing, novel methods of synthesis and processing, especially those that result in improved or novel microstructures, leading in turn to improved properties and novel applications. Articles focus on methods and processes that reduce material and energy consumption, hence the cost of these materials will also be considered. The process technologies may include but are not limited to powder synthesis and production technologies (chemical methods, physical methods such as mechanical ball milling); powder compaction and shaping technologies including die compaction, powder injection molding, and 3D printing; and sintering and consolidation processes such as vacuum sintering, hot isostatic pressing, field assisted sintering, and other advanced hot consolidation techniques. However, manuscripts that focus on processes without a clear explanation on how the process can lead to improved microstructure and properties, or reduction of energy consumption and costs are likely discouraged. This journal also publishes articles dealing with the deposition process and the microstructure and the measurement of selected properties of coatings, provided the coating consists of a material from the groups defined above, and is applied on the surface of a refractory metal or hard material. For eligibility of such articles the material science aspect of the coatings and if applicable their interrelationship with the properties of the coatings is of prime importance. Papers lacking this focus are usually referred to other journals dedicated to surface coating or machining. IJRMHM aims to bridge the gap between pure research and the more practical aspects of production and properties. In that IJMHM will continue to provide a medium linking together material scientists, engineers, designers and manufacturers working in this field.

CiteScore

CiteScore
7
SJR
0.872
SNIP
1.387
Subject Rank Percentile
EngineeringMechanical Engineering
114 / 672 83%

Journal Statistics

Bimonthly
Issues/Year
Time to first decision: 11days Review time: 65days Submission to acceptance: 78days Acceptance to publication: 5days
Review Cycle
$3450
Article Processing Fee

Submission Information

Submission Website:

https://www.editorialmanager.com/IJRMHM

Accepted Types:

Original Paper
Short Communication
Technical Note
Critical Review
Letter to the Editor

Related Articles

On the nature of hydrogen bonds to platinum(ii) – which interaction can predict their strength?

Rocío Sánchez-de-Armas, Mårten S. G. Ahlquist

2014-11-12 Communication

DOI: 10.1039/C4CP04657A

Electronic structures at the interface between Au and CH3NH3PbI3

Xiaoliang Liu, Chenggong Wang, Lu Lyu, Congcong Wang, Zhengguo Xiao, Cheng Bi, Jinsong Huang, Yongli Gao

2014-11-07 Paper

DOI: 10.1039/C4CP03842H

Dirac fermions in silicene on Pb(111) surface

Agata Podsiadły-Paszkowska, Mariusz Krawiec

2014-12-01 Paper

DOI: 10.1039/C4CP05104A

Whirl-enhanced continuous wave laser trapping of particles‡

S. Bartkiewicz, A. Miniewicz

2014-11-13 Paper

DOI: 10.1039/C4CP04008B

Concentration effects on intrachain polaron recombination in conjugated polymers

Luiz Antonio Ribeiro Junior, Wiliam Ferreira da Cunha, Antonio Luciano de Almeida Fonseca, Ricardo Gargano, Geraldo Magela e Silva

2014-11-18 Paper

DOI: 10.1039/C4CP04514A

Modulating the phase transition between metallic and semiconducting single-layer MoS2 and WS2 through size effects

Ziyu Hu, Shengli Zhang, Da Wang, Haibo Zeng, Li-Min Liu

2014-11-04 Paper

DOI: 10.1039/C4CP04775C

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