Recent progress in preparation of bimodal grain structure and improvement of mechanical and corrosion properties of magnesium alloys. [PDF]
Zuo J, Nakata T, Xu C, Geng L, Kamado S.
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Deuterium Density Retained in Low-Activation Ferritic Steel under Low-Energy Deuterium-plasma Exposure [PDF]
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Research Progress and the Prospect of Damping Magnesium Alloys. [PDF]
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The liberalized Dutch green electricity market: Lessons from a policy experiment. [PDF]
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Hot deformation behavior of Mg95.21Zn1.44Y2.86Mn0.49 alloy containing LPSO phase
Materials Characterization, 2020Abstract The Mg-Zn-Y-Mn alloy containing LPSO phase is a new type of high-strength Mg alloy system, and research on its hot deformation behavior has not been carried out. The hot compression experiments (compression deformation amount is 70%) of the as-homogenized Mg95.21Zn1.44Y2.86Mn0.49 alloy were performed at a temperature range of 250–500 °C and ...
Lianhui Li +7 more
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Hydrogen storage properties of Mg98.5Gd1Zn0.5 and Mg98.5Gd0.5Y0.5Zn0.5 alloys containing LPSO phases
International Journal of Hydrogen Energy, 2021Abstract In this work, the as-cast Mg-rich Mg98.5Gd1Zn0.5 and Mg98.5Gd0.5Y0.5Zn0.5 alloys are prepared by the semi-continuous casting method, and their hydrogen storage performance and catalytic mechanisms are investigated by experimental and first-principles calculations approaches.
J.H. He +8 more
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Quench sensitivity characterization of a LPSO-phase containing Mg alloy
Materials Science and Engineering: A, 2019Abstract The quench sensitivity of a long period stacking ordered (LPSO) phase containing Mg alloy, Mg–12Gd–0.8Zn–0.4Zr (GZ1208K) (wt%), was characterized under the water cooling (WC) and air cooling (AC) conditions. GZ1208K alloy indicates significant quench sensitivity, that is, the yield strength (YS) of GZ1208K-WC alloy is 25.2% and 21.6% higher ...
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Hot compression deformation behavior of Mg–Y–Zn alloys containing LPSO phase
Materials Science and Engineering: A, 2020Abstract The effect of the volume fraction of the long periodic stacking ordered (LPSO) phase on elevated temperature compressive deformation behavior is investigated using four types of Mg–Y–Zn alloys (Mg-0.4Y-0.2Zn, Mg–2Y–1Zn, Mg–5Y-2.5Zn, Mg–9Y–6Zn, where the numbers indicate at.%) produced by casting.
Hidetoshi Somekawa +5 more
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Superplasticity in a Chip-Consolidated Mg97Zn1Y2 Alloy with LPSO Phase
2018Novel Mg97Zn1Y2 alloy of equiaxed fine grains with long-period stacking ordered (LPSO) phase was prepared by consolidation of chips machined from a twin-roll-cast alloy. The chip-consolidated Mg97Zn1Y2 alloy exhibited superplasticity at a wide initial strain-rate ranging from 1 × 10−3 to 3 × 10−1 s−1 at temperatures of 623 and 673 K.
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