首页> 外文会议>International Symposium on Eco-Materials Processing amp; Design; 20060108-11; Chengdu(CN) >Recrystallization Behaviors and High Temperature Tensile Properties of Mg-Al-Sn-(Zn) Wrought Alloys
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Recrystallization Behaviors and High Temperature Tensile Properties of Mg-Al-Sn-(Zn) Wrought Alloys

机译:Mg-Al-Sn-(Zn)锻造合金的再结晶行为和高温拉伸性能

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Al or Zn content of AZ31 alloy was reduced and small amounts of Sn were added to improve the formability of alloys. And the recystallization behaviors and mechanical properties of Sn added alloys were investigated. In all the investigated alloys, of which Al content was less than 3%, virtually no Mg_(17)Al_(12) phase was found. Nor any Sn-containing phase was observed in either AZ21 or AM30 base alloys up to 0.75%Sn. The elongation of alloys at both room temperature and 300℃ was significantly improved by the Sn additions possibly owing to increased uniformity of grain size (size difference between fine and coarse grains). Hindered recrystallization and reduced growth rate of recrystallized grains by the Sn additions are postulated to be the main reason for the enhanced grain size uniformity.
机译:减少了AZ31合金的Al或Zn含量,并添加了少量Sn以改善合金的可成形性。并研究了添加锡合金的再结晶行为和力学性能。在所有研究的合金中,Al含量小于3%,实际上没有发现Mg_(17)Al_(12)相。在AZ21或AM30基体合金中,最高含量达到0.75%的锡均未观察到任何含锡相。锡的添加可以显着改善室温和300℃时合金的伸长率,这可能是由于晶粒尺寸均匀性(细晶粒和粗晶粒之间的尺寸差异)增加所致。推测由于添加锡而阻碍了再结晶并降低了再结晶晶粒的生长速率,这是提高晶粒尺寸均匀性的主要原因。

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