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Structure and properties of Al–Mg alloys depending on scandium and zirconium additions and production methods
The paper examines how scandium and zirconium doping of Al–Mg alloys produced by conventional casting and powder metallurgy methods influences their structure and mechanical properties. It is shown that Al–Mg powder alloys are not recrystallized in the plastic deformation process and subsequent heat...
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Published in: | Powder metallurgy and metal ceramics 2010-12, Vol.49 (7-8), p.430-437 |
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container_end_page | 437 |
container_issue | 7-8 |
container_start_page | 430 |
container_title | Powder metallurgy and metal ceramics |
container_volume | 49 |
creator | Mil’man, Yu. V. Neikov, O. D. Sirko, A. I. Danilenko, N. I. Samelyuk, A. V. Zakharova, N. P. Sharovskii, A. I. Ivashchenko, R. K. Goncharuk, V. A. Chaikina, N. G. |
description | The paper examines how scandium and zirconium doping of Al–Mg alloys produced by conventional casting and powder metallurgy methods influences their structure and mechanical properties. It is shown that Al–Mg powder alloys are not recrystallized in the plastic deformation process and subsequent heating to 550°C. In cast alloys, recrystallization begins even in the extrusion process. Additions of scandium, zirconium, and chromium restrain the recrystallization of alloys when heated to 550°C. Doping of Al–Mg alloys with scandium and zirconium increases their strength by 80−120%. Doped powder alloys have much greater strength than cast alloys and quite high plasticity. |
doi_str_mv | 10.1007/s11106-010-9254-0 |
format | article |
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In cast alloys, recrystallization begins even in the extrusion process. Additions of scandium, zirconium, and chromium restrain the recrystallization of alloys when heated to 550°C. Doping of Al–Mg alloys with scandium and zirconium increases their strength by 80−120%. 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D.</au><au>Sirko, A. I.</au><au>Danilenko, N. I.</au><au>Samelyuk, A. V.</au><au>Zakharova, N. P.</au><au>Sharovskii, A. I.</au><au>Ivashchenko, R. K.</au><au>Goncharuk, V. A.</au><au>Chaikina, N. G.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Structure and properties of Al–Mg alloys depending on scandium and zirconium additions and production methods</atitle><jtitle>Powder metallurgy and metal ceramics</jtitle><stitle>Powder Metall Met Ceram</stitle><date>2010-12-01</date><risdate>2010</risdate><volume>49</volume><issue>7-8</issue><spage>430</spage><epage>437</epage><pages>430-437</pages><issn>1068-1302</issn><eissn>1573-9066</eissn><abstract>The paper examines how scandium and zirconium doping of Al–Mg alloys produced by conventional casting and powder metallurgy methods influences their structure and mechanical properties. It is shown that Al–Mg powder alloys are not recrystallized in the plastic deformation process and subsequent heating to 550°C. In cast alloys, recrystallization begins even in the extrusion process. Additions of scandium, zirconium, and chromium restrain the recrystallization of alloys when heated to 550°C. Doping of Al–Mg alloys with scandium and zirconium increases their strength by 80−120%. Doped powder alloys have much greater strength than cast alloys and quite high plasticity.</abstract><cop>Boston</cop><pub>Springer US</pub><doi>10.1007/s11106-010-9254-0</doi><tpages>8</tpages></addata></record> |
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subjects | Alloys Aluminum alloys Aluminum base alloys Cast alloys Ceramics Characterization and Evaluation of Materials Chemistry and Materials Science Composites Glass Materials Science Mechanical properties Metal products Metallic Materials Methods Natural Materials Powder metallurgy Powders Production management Rare earth metals Recrystallization Scandium Scandium base alloys Specialty metals industry Zirconium |
title | Structure and properties of Al–Mg alloys depending on scandium and zirconium additions and production methods |
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