scholarly journals Oxidation Behavior of Alx(CoCrFeNi)100-x High-Entropy Alloys Under Thermal-Cycling Conditions

Author(s):  
J. Dąbrowa ◽  
G. Cieślak ◽  
M. Stygar ◽  
M. Zajusz ◽  
M. Jawańska ◽  
...  

AbstractThe oxidation behavior of five different high-entropy alloys from the Al–Co–Cr–Fe–Ni metallic system, namely Alx(CoCrFeNi)100-x (x = 0; 3; 6; 9; 12), was studied under thermal-cycling conditions, at 1273 K in air atmosphere. The choice of selected compositions allowed for covering the chromia-to-alumina former transition, as well as the transition from the FCC single-phase solid solution structure to multiphase alloys with Al-enriched B2-structured constituent. The measurements were taken for 500 cycles (1 cycle - 1 h of heating, 20 min of cooling). The results indicate a profound influence of the thermal-cycling conditions on the oxidation products, with extremely complex scale structures and extensive internal oxidation and nitridation zones, as well as severe spallation of the oxide scale in most cases, showing the limited usefulness of these alloys for high-temperature applications at the current stage of their development.

2021 ◽  
Vol 23 (2) ◽  
pp. 116-146
Author(s):  
Zinaida Bataeva ◽  
◽  
Alexey Ruktuev ◽  
Ivan Ivanov ◽  
Aleksandr Yurgin ◽  
...  

This paper provides a review of studies on the development and characterization of high-entropy alloys (HEAs). It is structured in the following way. Alloys’ design strategy based on entropy approach. Expectations and modern perceptions. This section describes the initial principles of multicomponent alloys design which provide stable structure and mechanical properties. It is noted that the role of high mixing entropy in the formation of disordered solid solutions and the suppression of the brittle intermetallic phases formation have been significantly reconsidered over time. Currently, obtaining a single-phase solid solution structure is not the main requirement for HEAs. The composition of HEAs. This section describes some typical multicomponent alloys having different elemental compositions. It is shown, that at present time the most studied alloys are based on 3-d transition elements. Using alloys of this group the possibility of providing both high and low values of strength and ductility is shown. Fabrication methods of HEAs. This section describes the methods for the fabrication of high-entropy alloys. It is noted that the most commonly used methods are based on the melting of the initial materials and its subsequent crystallization. Such methods of HEAs fabrication as powder metallurgy, magnetron sputtering, self-propagating high-temperature synthesis, melt spinning, and diffusion welding are also discussed. Structure of HEAs. This section provides the data on HEAs possessing multiphase structure and containing fine nanosized precipitates. Besides, the studies in which HEAs have been obtained in the form of metallic glasses, carbides, oxides, and borides are reviewed. The factors that can affect the structural state of the multicomponent alloys are discussed. The ambiguity of opinions of different research groups is noted. Properties of HEAs. This section mainly concentrates on the mechanical properties of HEAs. However, some other promising properties of HEAs like high wear resistance and reduced diffusivity are also discussed. Plastic deformation of HEAs. This section describes the evolution of the structure and properties of HEAs caused by thermal and mechanical processing. Characterization methods of HEAs. This section lists the characterization techniques, which are most frequently used to study HEAs. The structure of these alloys is mainly studied by scanning electron microscopy, transmission electron microscopy, energy-dispersive X-ray spectroscopy, and optical microscopy. The methods for properties measurements are also briefly reviewed. Application of HEAs. This section describes the promising fields of HEAs application. It can be utilized in the aerospace, aircraft, and nuclear industries as well as for car manufacturing, austoelectronics, and in the design of microwave devices. Russian-language publications on HEAs. This section lists the studies, published in the Russian language as well as the thesis, done in Russian universities.


2020 ◽  
Vol 836 ◽  
pp. 155518 ◽  
Author(s):  
W. Kai ◽  
F.P. Cheng ◽  
Y.R. Lin ◽  
C.W. Chuang ◽  
R.T. Huang ◽  
...  

Metals ◽  
2020 ◽  
Vol 10 (8) ◽  
pp. 1017
Author(s):  
Yang Shao ◽  
Huan Ma ◽  
Yibing Wang

In order to reveal the effect of Mo addition on the microstructure and mechanical properties, (CoCuFeNi)100-xMox (x = 0, 10, 15, 19, and 25, x values in atomic ratio) high entropy alloys were prepared by vacuum arc-melting. The results showed that with Mo addition, the μ phase formed and serious separation occurred in the high entropy alloys. The content of μ phase increased with the increase in Mo content. The microstructure of the alloys changed from an initial single-phase face-center-cubic (FCC) solid solution structure (x = 0) to a hypoeutectic microstructure (x = 15), then to a full eutectic microstructure (x = 19), and finally to a hypereutectic microstructure (x = 25). Coherent interface between μ phase and FCC phase was observed. The (CoCuFeNi)81Mo19 alloy with fully eutectic microstructures exhibited the highest yield strength of 557 MPa and fracture strength of 767 MPa in tensile tests at room temperature. The fracture surface revealed that the formation of great amounts of the μ phase resulted in the loss of ductility of (CoCuFeNi)100-xMox alloys.


2014 ◽  
Vol 583 ◽  
pp. 162-169 ◽  
Author(s):  
C.M. Liu ◽  
H.M. Wang ◽  
S.Q. Zhang ◽  
H.B. Tang ◽  
A.L. Zhang

2020 ◽  
Vol 170 ◽  
pp. 108654 ◽  
Author(s):  
Hao Shi ◽  
Chongchong Tang ◽  
Adrian Jianu ◽  
Renate Fetzer ◽  
Alfons Weisenburger ◽  
...  

2021 ◽  
Vol 24 (6) ◽  
pp. 653-662
Author(s):  
N. A. Shaburova ◽  
A. Ostovari Moghaddam ◽  
S. N. Veselkov ◽  
M. V. Sudarikov ◽  
O. V. Samoilova ◽  
...  

2021 ◽  
pp. 2001047
Author(s):  
Bronislava Gorr ◽  
Steven Schellert ◽  
Franz Müller ◽  
Hans-Jürgen Christ ◽  
Alexander Kauffmann ◽  
...  

2021 ◽  
pp. 109633
Author(s):  
Yuantian Li ◽  
Ping Zhang ◽  
Jinyong Zhang ◽  
Zheng Chen ◽  
Baolong Shen

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