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Formation condition of solid solution type high-entropy alloy 被引量:22
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作者 任明星 李邦盛 傅恒志 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第4期991-995,共5页
Formation condition of high-entropy alloys with solid solution structure was investigated. Seventeen kinds of the high-entropy alloys with different components were prepared, the influencing factors (the comprehensiv... Formation condition of high-entropy alloys with solid solution structure was investigated. Seventeen kinds of the high-entropy alloys with different components were prepared, the influencing factors (the comprehensive atomic radius difference δ, the mixing enthalpy AH and the mixing entropy AS) of phase composition of the alloys were calculated, and the microstructure and phase compositions of alloys were analyzed by using SEM and XRD. The result shows that only the systems with δ≤2.77 and △H≥-8.8 kJ/mol will form high entropy alloy with simple solid solution. Otherwise, intermetallic compounds will exist in the alloys. So, selection of the type of element has important effects on microstructure and properties of high entropy alloys. 展开更多
关键词 high entropy alloy solid solution comprehensive atomic radius difference mixing enthalpy formation condition
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Extending the Standard Model in Hyper-Dimensional Mechanics
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作者 René Burri 《Journal of Applied Mathematics and Physics》 2023年第2期572-581,共10页
According to studies on the precursive time quantum variable, this publication presents an in-depth analysis of the chapter on the correlation between the nuclear mass and electroweak force. This research shows that t... According to studies on the precursive time quantum variable, this publication presents an in-depth analysis of the chapter on the correlation between the nuclear mass and electroweak force. This research shows that there is a close correlation between the nuclear mass and the energy of the orbitals which underlies the electroweak interaction. 展开更多
关键词 Energy Orbital Level Atomic radius Curvature Time Curvature Precursive Time CHRONOTOPE
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