Zobrazeno 1 - 10
of 92
pro vyhledávání: '"C. Feltrin"'
Publikováno v:
Journal of Advanced Ceramics, Vol 13, Iss 8, Pp 1268-1281 (2024)
An entropy-stabilized multicomponent ultrahigh-temperature ceramic (UHTC) coating, (Ti0.25V0.25Zr0.25Hf0.25)B2, on a graphite substrate was in-situ sintered by spark plasma sintering (SPS) from constituent transition metal diboride powders. The (Ti0.
Externí odkaz:
https://doaj.org/article/581981abbbad4c5d9a12f9c61b5ae0ca
Publikováno v:
Entropy, Vol 25, Iss 1, p 73 (2022)
By their unique compositions and microstructures, recently developed high-entropy materials (HEMs) exhibit outstanding properties and performance above the threshold of traditional materials. Wear- and erosion-resistant materials are of significant i
Externí odkaz:
https://doaj.org/article/c65b652cc6d64e69b958868dec8adcaa
Publikováno v:
Journal of Materials Science. 57:422-443
High-entropy materials have attracted considerable interest due to their unique, improved properties and large configurational entropy. Out of these, high-entropy ceramics (HECs) are of particular interest since the independent solubility of cations
Akademický článek
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Autor:
A. Barbieri, I.B. Rico, C. Silveira, C. Feltrin, B. Dall´agnol, A. Schrank, L. Lozina, G.M. Klafke, J. Reck
Publikováno v:
Ticks and Tick-borne Diseases. 14:102147
Publikováno v:
Wear. :204497
Publikováno v:
European Journal of Cardiovascular Nursing. 20
Funding Acknowledgements Type of funding sources: None. INTRODUCTION Education represents Fundamental Nursing Care that responds to a psycho-social need of the patient. Acute Coronary Syndrome and cardiac surgery have a strong impact from a psycho-em
Akademický článek
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Publikováno v:
Applied Physics Letters. 119:161905
Transition metal borides have a unique combination of high melting point and high chemical stability and are suitable for high temperature applications (>2000 °C). A metastable dual-phase boride (Ti0.25V0.25Zr0.25Hf0.25)B2 with distinct two hexagona
Publikováno v:
Materials Today Communications. 28:102657
High-entropy materials are promising for high-temperature applications. In order to achieve high-temperature wear resistance, a novel high-entropy alloy based composite, (CrMnFeHf)7.14(TiTaV)23.81, was designed and consolidated by spark plasma sinter