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Advances in High Temperature Materials

Participating journal: Discover Materials

Nowadays, high temperature materials are highly demanding for improve efficiency of heat engines. Future demands replacement of existing superalloys with ceramic intermetallics, ultra high temperature ceramics, refractory concentrated alloys and their composites. Processing, characterization and properties of these materials will be focused.

The Collection aims to cover a large number of topics, from the scientific and technical relevance of high temperature materials.

Topics including but not limited to:

• Ultra high temperature ceramics

• Refractory alloys

• Refractories

• Refractory concentrated alloys

• Intermetallics

• Super alloys

• High entropy alloys

• Oxidation

• Creep

• High temperature strength

• Additive manufacturing

• Spark plasma sintering

• Ablation resistance

• Flash sintering

Keywords:

Ceramics, High entropy alloys, Sintering, Oxidation, Ablation, Creep

This Collection supports and amplifies research related to SDG 9.

Participating journal

Submit your manuscript to this collection through the participating journal.

Discover Materials is an open access journal publishing research across all fields relevant to materials, and areas where materials are activators for innovation and disruption.

Editors

  • Manab Mallik

    Manab Mallik

    Dr. Manab Mallik completed his Bachelor's and master's degrees in Metallurgical Engineering from IIEST Shibpur and IIT BHU (Varanasi), respectively. He received a Ph.D. degree in Metallurgical and Materials Engineering in 2014 from IIT Kharagpur. Presently, he is working as an Assistant Professor in the Department of Metallurgical and Materials Engineering at NIT Durgapur. His area of expertise are High Temperature Materials and ultra-high-temperature ceramics for the last two decades. He has guided two Ph.D. theses and published over twenty research articles and several book chapters.

Articles