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Effect of Sc and Zn Additions on Microstructure and Hot Formability of Al-Mg Sheet Alloys

机译:添加Sc和Zn对Al-Mg薄板合金组织和热成形性能的影响。

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摘要

Trace elements of Sc or Zn were added to Al-Mg sheet alloys. Microstructural examination showed that the Sc addition greatly refined the grain size, especially in the Zn-containing alloy where large amounts of subgrains and fine grains were formed. Meanwhile, a number of large primary intermetallic particles formed in the Sc-adding alloys. In order to evaluate the high-temperature formability, warm tensile tests were carried out at temperatures ranging from 275 deg C to 350 deg C and at strain rates of 0.015 to 1.5 s~(-1). The test results showed that, in the alloys with the single addition of Zn or Sc, Zn slightly increased the flow stress but decreased the ductility and Sc worsened both the flow stress and the ductility. However, in the alloy with the combined addition of Zn and Sc, the flow stress was significantly increased at almost all testing conditions and the ductility was also increased at a higher temperature of 350 deg C and lower strain rate of 0.015 s~(-1). The results of superplastic tensile tests and biaxial stretch tests demonstrated that the alloy with both Zn and Sc additions exhibited good high-temperature formability. The effect of Zn and Sc additions on the microstructure and the hot formability is discussed.
机译:Sc或Zn的痕量元素被添加到Al-Mg薄板合金中。显微组织检查表明,Sc的添加极大地细化了晶粒尺寸,特别是在形成大量亚晶粒和细晶粒的含锌合金中。同时,在添加Sc的合金中形成了许多大的初级金属间化合物颗粒。为了评估高温可成形性,在275℃至350℃的温度范围内,以0.015至1.5 s〜(-1)的应变速率进行了热拉伸试验。测试结果表明,在仅添加Zn或Sc的合金中,Zn略微增加了流动应力,但降低了延展性,而Sc恶化了流动应力和延展性。然而,在Zn和Sc的组合添加的合金中,几乎在所有测试条件下,流变应力都显着增加,并且在较高的温度350℃和较低的应变速率为0.015 s〜(-1)下,塑性也增加了。 )。超塑性拉伸试验和双轴拉伸试验的结果表明,同时添加Zn和Sc的合金具有良好的高温成形性。讨论了锌和Sc的添加对组织和热成形性的影响。

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