The stability of solid-solution phases in FCC and BCC lattices was examined in multi-component alloys based on the CALPHAD technique using the compound energy formalism and regular solution model. From the thermodynamic calculations, it was found in ternary systems that the single solid-solution phase became stable around the equiatomic composition where the configurational entropy was the largest value. The transition temperature from the disordered phase to ordered phase(s) or miscibility gap(s) decreased with the increasing number of elements in the system. The order-disorder transition temperature on the FCC lattice was affected by the end member of the ordered phases existing at the equiatomic composition, whereas it was not significant for the order-disorder transition in the BCC lattice. The single solid-solution phase region at equiatomic compositions was affected by variations in the interaction parameters. In multi-component systems, the variations were averaged with increasing the number of elements in the system. This suggests that high-entropy alloys can afford a variety of elements. This study shows that the disordered state can be formed in multicomponent systems around the equiatomic composition and suggests clearly that due to the high-entropy effect, the solution phases are stabilized.
机构:
Kyoto Univ, Inst Integrated Radiat & Nucl Sci, Osaka 5900494, Japan
Chinese Acad Sci, Inst High Energy Phys, Positron Facil, Beijing 100049, Peoples R China
Univ Hong Kong, Dept Mech Engn, Pokfulam Rd, Hong Kong, Peoples R ChinaKyoto Univ, Inst Integrated Radiat & Nucl Sci, Osaka 5900494, Japan
Zhu, T.
Zhong, Z. H.
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Hefei Univ Technol, Sch Mat Sci & Engn, Hefei 230009, Peoples R ChinaKyoto Univ, Inst Integrated Radiat & Nucl Sci, Osaka 5900494, Japan
机构:
Chinese Acad Sci, Inst High Energy Phys, Positron Facil, Beijing 100049, Peoples R ChinaKyoto Univ, Inst Integrated Radiat & Nucl Sci, Osaka 5900494, Japan
Song, Y. M.
Ye, F. J.
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Chinese Acad Sci, Inst High Energy Phys, Positron Facil, Beijing 100049, Peoples R ChinaKyoto Univ, Inst Integrated Radiat & Nucl Sci, Osaka 5900494, Japan
Ye, F. J.
Wang, Q. Q.
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Chinese Acad Sci, Inst High Energy Phys, Positron Facil, Beijing 100049, Peoples R ChinaKyoto Univ, Inst Integrated Radiat & Nucl Sci, Osaka 5900494, Japan
Wang, Q. Q.
Ngan, Alfonso H. W.
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Univ Hong Kong, Dept Mech Engn, Pokfulam Rd, Hong Kong, Peoples R ChinaKyoto Univ, Inst Integrated Radiat & Nucl Sci, Osaka 5900494, Japan
Ngan, Alfonso H. W.
Wang, B. Y.
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Chinese Acad Sci, Inst High Energy Phys, Positron Facil, Beijing 100049, Peoples R ChinaKyoto Univ, Inst Integrated Radiat & Nucl Sci, Osaka 5900494, Japan
Wang, B. Y.
Cao, X. Z.
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Chinese Acad Sci, Inst High Energy Phys, Positron Facil, Beijing 100049, Peoples R ChinaKyoto Univ, Inst Integrated Radiat & Nucl Sci, Osaka 5900494, Japan
机构:
POSCO Tech Res Labs, Gwangyang 57807, South KoreaPOSCO Tech Res Labs, Gwangyang 57807, South Korea
Lee, Unhae
Straumal, Boris
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Russian Acad Sci, Inst Solid State Phys, Chernogolovka 142432, Russia
Russian Acad Sci, Chernogolovka Sci Ctr, Chernogolovka 142432, RussiaPOSCO Tech Res Labs, Gwangyang 57807, South Korea
Straumal, Boris
Park, Nokeun
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Yeungnam Univ, Sch Mat Sci & Engn, 280 Daehak Ro, Gyeongbuk 38541, South Korea
Yeungnam Univ, Inst Mat Technol, 280 Daehak Ro, Gyeongbuk 38541, South KoreaPOSCO Tech Res Labs, Gwangyang 57807, South Korea
Park, Nokeun
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,
2021,
804