Evaluation of Parameters for Magnesium Fabrication by Powder Metallurgy Route
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-65007-9_1
Reference16 articles.
1. Abbott, T.: Magnesium: industrial and research developments over the last 15 years, Corrosion (2014).https://doi.org/10.5006/1474
2. Cao, F., Shi, Z., Hofstetter, J., Uggowitzer, P.J., Song, G., Liu, M., Atrens, A.: Corrosion of ultra-highpurity Mg in 3.5% NaCl solution saturated with Mg(OH)2, Corros. Sci. 75, 78–99 (2013)
3. Cao, F., Shi, Z., Song, G.-L., Liu, M., Atrens, A.: Corrosion behaviour in salt spray and in 3.5% NaCl solution saturated with Mg(OH)2 of as-cast and solution heat-treated binary Mg–X alloys: X = Mn, Sn, Ca, Zn, Al, Zr, Si, Sr, Corros. Sci. 76, 60–97 (2013)
4. Cao, F., Shi, Z., Song, G.-L., Liu, M., Dargusch, M.S., Atrens, A.: Influence of hot rolling on the corrosion behavior of several Mg–X alloys. Corros. Sci. 90, 176–191 (2015)
5. Dewidar, M.M., Yoon, H.C., Lim, J.K.: Mechanical properties of metals for biomedical applications using powder metallurgy process. A Rev. Metals Mater. Int. 12(3), 193–206
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