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Titlebook: Magnesium Technology 2011; Wim H. Sillekens (Senior Scientist),Sean R. Agnew Book 2016 The Minerals, Metals, and Materials Society 2016 m

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楼主: AMUSE
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Global Magnesium Research: State-of-the-Art and What’s Next?o reduce fuel consumption and greenhouse gas emissions as well as to increase the performance of modern cars. Besides advantages, e.g. superior specific strength and excellent processability, applications of magnesium alloys are limited due to their inferior properties at elevated temperatures, e.g.
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Biodegradable Magnesium Implants — How do They Corrode in-Vivo?ademic and industrial interest in this novel class of biomaterials is increasing dramatically in the recent years. First biodegradable metal implants have been realized as vascular stents and bone screws. However, the knowledge of the underlying degradation mechanism of these metal implants remains
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Fracture Mechanism and Toughness in Fine- and Coarse-Grained Magnesium Alloysuctural observations. The coarse-grained alloy showed that the {10–12} type deformation twins formed at the beginning of test, and the crack was propagated into the boundaries between twins and matrix. On the other hand, the fine-grained alloy showed that the sub-grain boundaries formed instead of t
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Effect of KCl on Liquidus of LiF-MgF2 Molten Saltsmental accuracy has been measured by the determined liquidus temperature of KCl. The measured value of KCl liquidus temperature of 769.27 ° C is near and comparable to the documented value 769.5 ° C. The difference value is 0.23 ° C, and the relative error was 0.03%. The results show that effect of
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Efficiency and Stability of Solid Oxide Membrane Electrolyzers for Magnesium Productionving MgO in a fluoride based ionic flux and electrochemically pumping out the oxygen ions from the flux via an oxygen-ion-conducting SOM to the anode where they are oxidized, while reducing magnesium ions at the cathode. Understanding the long-term stability of the SOM in the flux is critical for th
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Magnesium Production by Vacuum Aluminothermic Reduction of a Mixture of Calcined Dolomite and Calcinio of MgO to CaO was 6:1 by vacuum aluminothermic reduction. The reduction process was studied by thermodynamic analysis and X-ray diffraction analysis of reduction residue. The reaction of reduction process was CaO+6MgO+4Al=CaO•2Al.O.+6Mg. The effect of briquetting pressure, reduction temperature,
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