혼합엔트로피 제어에 따른 단일 FCC 고용체 합금의 물성변화 분석
In the present study, we systematically investigated the effect of entropy of mixing (ΔS mix ) on the mechanical and thermal properties of single phase FCC solid solutions with multi-principal elements. An increase in ΔS mix led to an increase in micro-hardness and a decrease in thermal conductivity...
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Published in | 대한금속·재료학회지, 55(1) Vol. 55; no. 1; pp. 1 - 9 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | Korean |
Published |
대한금속재료학회
05.01.2017
대한금속·재료학회 |
Subjects | |
Online Access | Get full text |
ISSN | 1738-8228 2288-8241 |
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Abstract | In the present study, we systematically investigated the effect of entropy of mixing (ΔS mix ) on the mechanical and thermal properties of single phase FCC solid solutions with multi-principal elements. An increase in ΔS mix led to an increase in micro-hardness and a decrease in thermal conductivity (κ) due to severe lattice distortion. Furthermore, NiCoFeCrMn high-entropy alloy (HEA) exhibited the highest κ 1 /κ e ratio of ~1.13, because with increasing ΔS mix the reduction in lattice thermal conductivity (κ 1 ) was less than that of electron thermal conductivity (κe). In particular, a crossover in the properties` variation was noticeable at a specific ΔS mix of ~8.3±0.3 J/mol·K, which means the properties of single phase FCC solid solutions can be optimized by modulating ΔS mix . The results can provide a guideline for manipulating the properties of single solid solutions using the HEA design concept, and help develop novel materials with optimal properties that are usable in extreme environments. (Received June 7, 2016; Accepted July 20, 2016) |
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AbstractList | In the present study, we systematically investigated the effect of entropy of mixing (ΔS mix ) on the mechanical and thermal properties of single phase FCC solid solutions with multi-principal elements. An increase in ΔS mix led to an increase in micro-hardness and a decrease in thermal conductivity (κ) due to severe lattice distortion. Furthermore, NiCoFeCrMn high-entropy alloy (HEA) exhibited the highest κ 1 /κ e ratio of ~1.13, because with increasing ΔS mix the reduction in lattice thermal conductivity (κ 1 ) was less than that of electron thermal conductivity (κe). In particular, a crossover in the properties` variation was noticeable at a specific ΔS mix of ~8.3±0.3 J/mol·K, which means the properties of single phase FCC solid solutions can be optimized by modulating ΔS mix . The results can provide a guideline for manipulating the properties of single solid solutions using the HEA design concept, and help develop novel materials with optimal properties that are usable in extreme environments. (Received June 7, 2016; Accepted July 20, 2016) In the present study, we systematically investigated the effect of entropy of mixing (ΔSmix) on the mechanical and thermal properties of single phase FCC solid solutions with multi-principal elements. An increase in ΔSmix led to an increase in micro-hardness and a decrease in thermal conductivity (κ) due to severe lattice distortion. Furthermore, NiCoFeCrMn high-entropy alloy (HEA) exhibited the highest κl/κe ratio of ~1.13, because with increasing ΔSmix the reduction in lattice thermal conductivity (κl) was less than that of electron thermal conductivity (κe). In particular, a crossover in the properties’ variation was noticeable at a specific ΔSmix of ~8.3±0.3 J/mol·K, which means the properties of single phase FCC solid solutions can be optimized by modulating ΔSmix. The results can provide a guideline for manipulating the properties of single solid solutions using the HEA design concept, and help develop novel materials with optimal properties that are usable in extreme environments. KCI Citation Count: 12 |
Author | Eun Soo Park Je In Lee 이제인 김준혁 박은수 Hyun Seok Oh Jun Hyuk Kim 오현석 |
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DocumentTitleAlternate | 혼합엔트로피 제어에 따른 단일 FCC 고용체 합금의 물성변화 분석 Effect of Configurational Entropy of Mixing on Thermophysical Properties in Single Phase FCC Solid Solutions with Multi-Principal Elements |
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Notes | The Korean Institute of Metals and Materials G704-000085.2017.55.1.011 |
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Title | 혼합엔트로피 제어에 따른 단일 FCC 고용체 합금의 물성변화 분석 |
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