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首页> 外文期刊>Materials & design >Influence of strain path on the microstructure evolution and mechanical properties in AM31 magnesium alloy sheets processed by differential speed rolling
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Influence of strain path on the microstructure evolution and mechanical properties in AM31 magnesium alloy sheets processed by differential speed rolling

机译:应变路径对差速轧制AM31镁合金薄板组织演变及力学性能的影响

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摘要

The influence of strain path on the microstructure evolution and mechanical properties in AM31 magnesium alloys fabricated by twin roll cast (TRC) and subsequent DSR (differential speed rolling) process was investigated. The experimental results indicated that grains were significantly refined due to shear bands formed during differential speed rolling-reverse (DSR-R) process, and the microstructures of AM31 processed by DSR-R process were much more homogeneous than those of AM31 processed by differential speed rolling-normal (DSR-N) process. Compared with DSR-N process, DSR-R process produced a homogeneous microstructure with fine grains and tilted weak texture was obtained due to the formation of shear bands. Improvement of strength and ductility in AM31 magnesium alloys processed by DSR-R process was achieved by grain refinement and tilted weak basal texture. In additional to apparent advantages in energy saving, combined DSR-R and TRC process is suggested to be a potential technique of plasticity enhancement of magnesium alloys.
机译:研究了应变路径对双辊铸(TRC)和随后的DSR(差速轧制)工艺制造的AM31镁合金的组织演变和力学性能的影响。实验结果表明,由于差速回滚(DSR-R)过程中形成的剪切带,晶粒得到了显着的细化,并且通过DSR-R处理的AM31的组织比通过差速处理的AM31的组织更为均匀正常滚动(DSR-N)流程。与DSR-N工艺相比,DSR-R工艺产生了均匀的微观结构,晶粒细小,并且由于剪切带的形成而获得了倾斜的弱织构。 DSR-R工艺处理的AM31镁合金的强度和延展性的提高是通过晶粒细化和倾斜的弱基体组织实现的。除了在节能方面的明显优势外,建议将DSR-R和TRC结合使用是增强镁合金塑性的潜在技术。

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  • 来源
    《Materials & design》 |2013年第2期|144-148|共5页
  • 作者

    L.L. Chang; S.B. Kang; J.H. Cho;

  • 作者单位

    School of Materials Science and Engineering, Beijing Institute of Technology, Beijing 100081, PR China,Korea Institute of Materials Science, 66 Sangnam-dong, Changwon 641010, Republic of Korea;

    Korea Institute of Materials Science, 66 Sangnam-dong, Changwon 641010, Republic of Korea;

    Korea Institute of Materials Science, 66 Sangnam-dong, Changwon 641010, Republic of Korea;

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