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首页> 外文期刊>Materials & design >Influences of solid solution parameters on the microstrucuture and hardness of Mg-9Li-6Al and Mg-9Li-6Al-2Y
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Influences of solid solution parameters on the microstrucuture and hardness of Mg-9Li-6Al and Mg-9Li-6Al-2Y

机译:固溶参数对Mg-9Li-6Al和Mg-9Li-6Al-2Y的显微组织和硬度的影响

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摘要

The microstructure evolution of Mg-9Li-6Al and Mg-9Li-6Al-2Y with the variation of solid solution parameters was investigated. Results show that, in Mg-9Li-6Al, under the condition of 340 ℃ × 0.5 h, the MgLi_2Al phase is dissolved in the phase of p-Li, and the AlLi phase precipitates from a-Mg phase. With the holding time being prolonged to 1 h, the precipitated AlLi distributes in the whole phase of a-Mg. Under the condition of 440 ℃ × 0.5 h, the AlLi phase is dissolved in the matrix, and MgLi2Al phase precipitates from p-Li. The addition of 2 wt.!K Y in Mg-9Li-6Al can promote the precipitation of MgLi2Al phase and restrain the precipitation of AlLi phase, causing the increase of hardness of the alloy.
机译:研究了Mg-9Li-6Al和Mg-9Li-6Al-2Y随固溶参数变化的组织演变。结果表明,在Mg-9Li-6Al中,在340℃×0.5 h的条件下,MgLi_2Al相溶解在p-Li相中,而AlLi相从a-Mg相中析出。随着保持时间延长至1 h,沉淀的AlLi分布在a-Mg的整个相中。在440℃×0.5h的条件下,AlLi相溶解在基体中,MgLi2Al相从p-Li中析出。在Mg-9Li-6Al中添加2wt.KY可以促进MgLi2Al相的析出并抑制AlLi相的析出,导致合金硬度的增加。

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  • 来源
    《Materials & design》 |2014年第1期|528-533|共6页
  • 作者单位

    Key Laboratory of Superlight Materials & Surface Technology, Harbin Engineering University, Ministry of Education, Harbin 150001, PR China;

    Key Laboratory of Superlight Materials & Surface Technology, Harbin Engineering University, Ministry of Education, Harbin 150001, PR China College of Materials Science & Chemical Engineering, Harbin Engineering University, 145 Nantong Str., Harbin, 150001, PR China;

    Key Laboratory of Superlight Materials & Surface Technology, Harbin Engineering University, Ministry of Education, Harbin 150001, PR China;

    Key Laboratory of Superlight Materials & Surface Technology, Harbin Engineering University, Ministry of Education, Harbin 150001, PR China;

    Key Laboratory of Superlight Materials & Surface Technology, Harbin Engineering University, Ministry of Education, Harbin 150001, PR China;

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